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Extraction and Sequencing

Clean DNA and RNA, from sample to sequence

KreatBio develops KodaPure magnetic-bead DNA and RNA extraction kits and offers a complete workflow of services — extraction, both short- and long-read sequencing, and bioinformatics analysis. Explore our wider range of molecular products for research laboratories, or contact us to discuss your project.

KreatBio extraction kit and laboratory workflow
One chemistryevery kit and service

Our approach

One magnetic-bead chemistry, every product

Every KodaPure kit and KreatBio service runs on the same silica-coated magnetic beads — bind, wash, elute.

  • Documented handling and storage for each kit
  • No spin columns — no clogging on dirty samples
  • Scales from single tubes to 96-well plates
See KodaPure kits

One path, five steps

From the tube on your bench to a report you can read — each step is a KreatBio product or service.

Our community

Built for Malaysia’s research community

We build KodaPure for the labs closest to home — universities, institutes, and companies across Malaysia.

What we promise you

On-time delivery

We commit to clear turnaround times and keep you updated at every step, so your project stays on schedule.

Publishable-quality data

Clean extractions and quality-checked sequencing you can take straight into analysis and publication.

Built around you

We tailor kits, protocols, and workflows to your sample types and study — not a one-size-fits-all box.

KodaPure

Magnetic-bead extraction kits

Total nucleic-acid extraction kits for microbial, animal, soil, and plant samples. Choose the kit by sample type, then download the matching protocol from Protocols & SDS.

KodaPure magnetic-bead extraction kit

How it works

Kit specifications

Method
Magnetic-bead capture using silica-coated paramagnetic beads
DNA purity
A260/280 ≈ 1.8–2.0; A260/230 ≈ 1.8–2.2
Elution
EB elution buffer
Equipment required
Magnetic rack, vortexer/homogenizer, centrifuger, heat block/water bath
Downstream use
PCR, qPCR, Sequencing library preparation
Processing time
1 to 2 hours per run
Storage
Room temperature
Safety
For research use only. SDS available on request.

Validated performance

Magnetic-bead capture delivers spectrophotometrically clean nucleic acid ready for PCR, qPCR, and library preparation — without a cold chain.

1.8–2.0
A260/280 — protein-clean DNA across sample types
1.8–2.2
A260/230 — low salt and organic carryover
RT  stable
Reagents ship and store at room temperature — no dry ice

Input and yield for each kit

KitCat. no.Sample typeInput, mgTypical yield, ng/µLElution volume, µL
MicrobeKBTNA-M-26Pure culture, milk, internal organs, bacteria and fungi10–2550–25050
50
AnimalKBTNA-A-26Animal tissue, internal organs, cultured cells10–2530–20050
SoilKBTNA-S-26Soil and fertilizer25010–6050
PlantKBTNA-P-26Leaves, seed, fibrous tissue50–10020–15050

Plant samples were crushed using homogenising stick and bead-beating; liquid-nitrogen grinding typically raises yield.

Laboratory

Extraction, quantification, and PCR screening

Send samples to KreatBio for nucleic-acid extraction, DNA/RNA quantification, or targeted PCR screening support before sequencing or downstream analysis.

KreatBio laboratory workflow

KodaAmp PCR

PCR screening

Targeted PCR screening for pathogen detection, pre-sequencing checks, or confirmation of specific genetic markers.

  • Aquaculture farms: Screen shrimp, fish, and other aquatic organisms for pathogens. Routine monthly testing supports early detection and helps reduce disease-related losses.
  • Poultry farms: Screen chickens and other poultry for pathogens to support early intervention and control disease transmission.
  • Free consultation is provided.
KodaAmp PCR screening service

How do we process your sample?

01Lab receives your sampleWe log and prepare the submitted material.
02Extract DNA/RNAFrom the affected organ or tissue.
03Amplify your samplePCR targets the requested pathogen or marker.
04Run gel electrophoresisWe visualize the amplified product on gel.
05Read the resultBand presence = Positive. Band absence = Negative.
PCR screening method workflow

Nucleic-acid extraction

DNA extraction

Sample intake, workflow selection, and DNA/RNA extraction using magnetic-bead chemistry for downstream PCR, sequencing, or other research analysis.

  • Sample-specific extraction workflow selection
  • Magnetic-bead DNA/RNA extraction
  • Eluate returned or moved into sequencing when requested
DNA extraction service

What happen during the sample extraction?

01Sample arrives at our labWe log and prepare the submitted material.
02Digest the tissueIn a lysis buffer containing salt/detergent.
03Release and bind DNA/RNADNA/RNA is released from the tissue and binds to magnetic beads.
04Remove contaminantsContaminants are removed by washing.
05Return cleaned DNA/RNACleaned DNA/RNA is returned to you.
DNA extraction method workflow

Sample QC

DNA quantification

DNA/RNA concentration checks and sample QC before PCR, sequencing, or other downstream workflows, with clear reporting of concentration and sample notes.

  • DNA/RNA concentration checks
  • QC before sequencing or PCR
  • Clear concentration report and sample notes
DNA quantification service
DNA quantification additional workflow

KodaSeq Illumina

Illumina sequencing

Targeted or whole-genome DNA sequencing, from samples or purified DNA, delivered as quality-controlled data in standard formats — the short-read (Illumina) option in the KodaSeq family.

From MYR 250 per sample · final price in your quote

KodaSeq Illumina sequencing workflow

Whole Genome Sequencing

  • QC data
  • Species ID
  • Antimicrobial Resistance (AMR) ID
  • Plasmid
  • Gene/protein annotation

Amplicon Sequencing

  • Bacterial 16S V4 region (typically up to genus)
  • Bacterial 16S V4–V5 region
  • Fungal ITS1 region
  • Plant ITS2 region
  • Animal barcoding COXI

How it works

01

Sample received

Laboratory receives sample.

02

Library prep and sequencing

Library preparation, sequencing, and bioinformatics analysis are carried out.

03

Report delivered

Formal report is released to you. Optional report consultation.

Also available

Bioinformatics

Beyond standard reports, we provide customised bioinformatics analysis tailored to your study, together with a guided data walkthrough so you can interpret and act on your results with confidence.

Common outputs, explained

These terms often appear in sequencing and microbiome reports. The goal is to show what changed, how diverse the sample is, and what the organisms may be able to do.

OutputWhat it meansWhy we do it
SNPA single nucleotide polymorphism is a one-letter DNA difference at a specific position in the genome.It helps compare isolates, track relatedness, detect strain differences, and identify mutations linked to traits such as resistance.
SNP IDThe exact position and base change for a SNP.It gives a precise marker that can be reported, compared across samples, or checked against known mutation databases.
Abundance bar chartA stacked chart showing the relative amount of each taxon in each sample.It quickly shows which bacteria, archaea, or fungi dominate and how community composition differs between samples.
Alpha diversity: Observed ASVs/OTUsThe number of unique sequence groups detected in one sample.It estimates richness: how many different microbes are present.
Alpha diversity: Chao1A richness estimate that gives extra weight to rare microbes.It helps estimate how many microbes may be present but were only lightly sampled.
Alpha diversity: ShannonA diversity score that considers both richness and evenness.It shows whether a sample has many microbes and whether they are balanced rather than dominated by one group.
Alpha diversity: SimpsonA diversity score focused on dominance.It helps show whether a few microbes dominate the sample.
Alpha diversity: Faith PDA diversity score that uses the evolutionary tree of the detected microbes.It shows how phylogenetically broad the community is, not just how many names are present.
Beta diversity: Bray-CurtisA distance measure based on abundance differences between samples.It shows whether two samples have different dominant community profiles.
Beta diversity: JaccardA distance measure based on presence or absence.It shows whether two samples contain the same kinds of microbes, regardless of abundance.
Beta diversity: Unweighted UniFracA phylogenetic distance using presence or absence.It shows whether samples contain different evolutionary groups of microbes.
Beta diversity: Weighted UniFracA phylogenetic distance that also includes abundance.It shows whether samples differ in both evolutionary groups and how much of each group is present.
Beta diversity: PCoA plotA 2D or 3D plot that places samples based on their beta diversity distances.It makes sample clustering easy to see, such as whether treatment groups, sites, or time points have different microbial communities.
Functional prediction via PICRUSt2A prediction of likely gene functions from 16S profiles.It provides an estimate of possible pathways, but it is not direct gene measurement like shotgun metagenomics.
Raw read QCSummary of read quality, read count, base quality, and trimming results.It confirms whether the sequencing data is clean enough for reliable analysis.
Sequencing depthHow many times, on average, each genome position is covered by reads.Higher depth improves confidence in assembly, SNPs, and mutation calls.
Genome coverageThe percentage of the genome represented by sequencing reads or assembled contigs.It shows whether the genome is mostly captured or has large missing regions.
Assembly statisticsGenome size, contig count, N50, GC content, and total assembled bases.It gives a quick quality check of how complete and fragmented the assembly is.
Contamination checkA screen for mixed organisms or unexpected DNA in the sample.It helps prevent wrong species ID, false gene calls, and misleading results.
MLST sequence typeA strain typing result based on standard housekeeping genes.It helps compare isolates using a common public typing system.
Serotype or lineageA predicted subtype or lineage, when supported by the organism and database.It helps classify strains for epidemiology, surveillance, or outbreak context.
AMR genes and mutationsDetected antimicrobial resistance genes and known resistance-associated mutations.It helps predict possible resistance traits and supports screening decisions.
Virulence genesGenes associated with pathogenicity, toxins, adhesion, invasion, or host interaction.It helps estimate potential risk factors carried by the isolate.
Plasmid repliconsMarkers showing likely plasmid types in the genome.It helps identify mobile DNA that can carry AMR or virulence genes.
Mobile genetic elementsProphages, insertion sequences, transposons, integrons, or related mobile regions.It shows how genes may move between bacteria or change genome structure.
CRISPR arraysRepeated immune-memory regions found in some bacterial genomes.They can support strain comparison and provide clues about past phage exposure.
Phylogenetic treeA tree showing how closely samples or isolates are related.It helps visualise clusters, likely related isolates, and evolutionary distance.
Genome completenessAn estimate of how much expected single-copy marker content is present.It helps judge whether a genome is complete enough for downstream interpretation.

Amplicon or whole-genome sequencing

Amplicon sequencing

Amplify and sequence one marker region — 16S for bacteria, ITS for fungi, or COXI for animals. The economical way to profile who is present across many samples.

Best for: community composition, large sample sets, tight budgets.

Whole-genome sequencing

Sequence the full genome of an isolate for assembly, variant calling, and annotation — down to strain-level detail.

Best for: bacterial isolates, resistance and virulence genes, strain typing.

Shotgun metagenomics

Sequence all the DNA in a sample for gene-level and functional information, covering bacteria, fungi, and viruses together.

Best for: function and pathways, AMR gene detection, non-bacterial members.

Common questions

What do I need to send?

Raw samples or DNA. We confirm sample concentration for your application before you ship.

What data do I receive?

FASTQ raw reads, FASTA reads, and the respective bioinformatics analysis report, with QC results and charts.

How long does it take?

On average, 4 to 8 weeks.

I would like to learn soil microbes. Should I do shotgun metagenomics or 16S metagenomics?

It depends on your budget and target. Shotgun metagenomics is more expensive and can produce many non-target or low-value DNA sequences, but it can support deeper questions such as metabolic pathways, antibiotic resistance, and broader gene-level profiling. 16S metagenomics is targeted, so it focuses on bacteria and archaea that the primers can amplify. If you mainly want to know which bacteria or archaea are present, 16S is usually the more practical choice.

I would like to understand my analysis report. Can I request for a data walkthrough?

Yes.

How much DNA do you need?

We confirm the amount and concentration for your specific application before you ship.

What if my DNA is low or degraded?

We will advise you. Sometimes re-extracting or changing approach gives much better libraries and a cleaner result.

16S, ITS, or COXI — which marker do I pick?

16S for bacteria, ITS for fungi, and COXI for animal barcoding.

What quality checks do you run?

Read quality checks throughout, and for whole genomes also coverage, assembly stats, and a contamination screen.

Can I get the raw reads?

Yes. You receive FASTQ raw reads and FASTA, plus the analysis report.

Is this service for diagnostic use?

No. It is for research use only.

Not sure this is the right fit? ask a scientist.

KodaSeq · Long-read

Oxford Nanopore long-read sequencing

Sequence DNA in long, continuous reads — from complete bacterial genomes and plasmids to full-length 16S at species level.

From RM 500 per sample· final price in your quote

KodaSeq Nanopore sequencing workflow

Complete genomes & assembly

  • Closed bacterial genomes from long reads alone
  • Plasmids and repeats resolved
  • AMR, virulence & mobile-element detection
  • Structural-variant detection

Full-length amplicons & metagenomics

  • Full-length 16S rRNA (species-level)
  • Full-length ITS for fungi

How it works

A single strand of DNA (or RNA) is threaded through a tiny protein pore. As each base passes, it changes an electrical current in a way we can read and translate straight back into sequence — live, as it happens, with no limit on how long each read can be.

KodaSeq Nanopore sequencing workflow
01

Sample received

You send raw sample or purified DNA/RNA. We confirm amount and quality before you ship.

02

Library prep & real-time sequencing

We prepare the library and load it onto the nanopore flow cell; reads stream in real time while analysis runs alongside.

03

Report delivered

You receive quality-controlled reads and a clear report. Optional data walkthrough.

What long reads add

Any read length

From short fragments to ultra-long reads — long enough to span repeats and close a genome in one piece.

Real-time data

Reads appear as they are generated, so results can begin within hours of loading rather than only at the end of a run.

Species-level 16S

Reading the whole 16S gene, not one short region, resolves many organisms to species rather than stopping at genus.

Long-read approaches

Whole-genome & assembly

Sequence a full genome in long reads for a complete, closed assembly — plasmids, repeats, and structural changes included.

Best for: complete bacterial genomes, plasmids, structural variants.

Full-length 16S / ITS

Read the entire marker gene instead of one short region, for finer, species-level community profiling.

Best for: microbiome studies needing species resolution.

Shotgun metagenomics

Sequence all the DNA in a sample and recover near-complete genomes directly from mixed communities.

Best for: function, AMR genes, and non-bacterial members.

Accurate enough, and getting sharper

Current chemistry reads at over 99% per read, and consensus reads go higher — close to short-read for many uses.

>99%
Single-read accuracy — current chemistry, higher on consensus
Any  length
From short fragments to ultra-long reads
KodaSeq Nanopore accuracy and long-read performance

What you can get back

Common long-read outputs, in plain language.

OutputWhat it meansWhy we do it
Closed / complete genomeA genome assembled into whole circular chromosomes and plasmids rather than many fragments.Long reads span repeats, so the genome can be finished without gaps.
Structural variants (SVs)Large insertions, deletions, inversions, or rearrangements (typically >50 bp).Long reads see across big changes that short reads miss.
Plasmid reconstructionFull, closed plasmid sequences.Shows which mobile elements — and any AMR they carry — are present and intact.
Full-length 16S species callTaxonomy from the whole 16S gene.Resolves many organisms to species, not just genus.
AMR genes & mutationsDetected resistance genes and known resistance mutations.Predicts possible resistance traits and supports screening.
Virulence genesGenes linked to pathogenicity, toxins, or host interaction.Estimates risk factors carried by the isolate.
Raw read QCRead quality, read count, and length summary.Confirms the data is clean enough for reliable analysis.
Genome coverage & depthHow much of the genome is covered, and how deeply.Shows confidence in assembly and variant calls.
Phylogenetic treeA tree of how closely isolates are related.Shows clusters and likely related isolates.

At a glance

Platform
Oxford Nanopore (current R10.4.1 chemistry)
Read length
No fixed limit — short fragments to ultra-long reads
Read accuracy
>99% single-read; higher on consensus / duplex
Devices
Oxford Nanopore platform selected for project scope
Input
High-quality DNA preferred; exact input confirmed by application
Turnaround
Sequencing starts in real time; final turnaround confirmed in quote
Data delivered
FASTQ reads, FASTA, and a bioinformatics report
Safety
For Research Use Only. SDS/quality documents on request.

Which sequencing platform?

Three ways to sequence, one team. Short reads for scale and low cost; long reads for complete genomes and full genes; HiFi for long reads at high accuracy. Not sure? Ask a scientist.

What mattersKodaSeq (Illumina)KodaSeq NanoporeKodaSeq HiFi (PacBio)
Read lengthShort (up to ~2×300 bp)Long — any length, up to ultra-longLong (~15–25 kb HiFi)
Per-read accuracyVery highHigh (>99%), higher on consensusVery high (~99.9% / Q30)
Cost per sampleLowestModerateHighest
Many samples / throughputBestGoodGood
Complete genomes & plasmidsOften fragmentedYes — closes genomesYes — reference-grade
Structural variantsLimitedYesYes
16S resolutionRegion — usually genusFull gene — speciesFull gene — species (ASVs)
Best forCounting, big sample sets, SNPs, RNA-seqComplete genomes, field/real-time, species 16S, methylationReference assembly, SVs, exact 16S, full-length transcripts

Common questions

What can I send?

Raw sample or purified DNA/RNA. For long reads, gently handled, high-molecular-weight DNA gives the best results — we confirm requirements before you ship, and can extract for you if needed.

Why choose long reads over Illumina?

Long reads span repeats and whole genes, so they can close a genome, resolve plasmids and structural changes, and read the full 16S for species-level ID. For high-throughput counting of many samples, short-read KodaSeq is often the better fit.

Is the accuracy good enough now?

Yes for most applications. Current chemistry reads at over 99% per read, and consensus reads go higher — close to short-read for many uses.

Nanopore or PacBio HiFi?

Both give long reads. Nanopore adds portability, real-time data, direct RNA, and any read length; PacBio HiFi gives the highest per-read accuracy. We help you pick — ask a scientist.

What data do I receive?

FASTQ raw reads, FASTA, and a bioinformatics report with QC, assembly or profiling, and charts.

Is this for diagnostic use?

No. For research use only.

Not sure this is the right fit?ask a scientist.

KodaSeq · Long-read

PacBio HiFi long-read sequencing

Long reads with high accuracy — the detail of long-read sequencing without giving up precision. Ideal for complete genome assembly, structural variants, species-level 16S, and full-length transcripts, delivered as quality-controlled reads with a report.

From RM 600 per sample· final price in your quote

KodaSeq HiFi sequencing workflow

De novo assembly & variants

  • High-quality, near-complete genome assembly
  • Structural-variant detection
  • Phased haplotypes
  • AMR, virulence & plasmid detection

Full-length 16S / rRNA

  • Full-length 16S to species level
  • High-accuracy reads for exact sequence variants (ASVs)
  • Low-abundance taxa detection
  • Fungal and other marker genes

How it works

The DNA is joined into a small circle and a polymerase reads around it again and again. Each molecule is read many times, then those passes are merged into one high-accuracy consensus — a “HiFi” read that is both long and precise.

KodaSeq HiFi sequencing workflow
01

Sample received

You send high-quality DNA (or raw sample). We confirm amount and quality — HiFi likes intact, high-molecular-weight DNA.

02

Library prep & HiFi sequencing

We build the circular library and run it; the instrument produces high-accuracy HiFi reads on board.

03

Report delivered

You receive HiFi reads and a clear report. Optional data walkthrough.

Why HiFi

Long and accurate

Reads tens of kilobases long at around 99.9% accuracy — long-read detail without the usual accuracy trade-off.

Complete assemblies

Long, accurate reads span repeats, so genomes assemble into near-complete, gap-free sequences.

Even, low-bias coverage

Little GC bias means more uniform coverage and fewer blind spots across the genome.

Exact 16S variants

Accuracy high enough to resolve exact sequence variants (ASVs) from the full-length 16S gene, to species level.

HiFi approaches

Whole-genome / de novo

Assemble a full genome from long, accurate reads — complete, phased, and annotated.

Best for: reference-grade genomes, structural variants, phasing.

Full-length 16S / rRNA

Read the whole marker gene at high accuracy for species-level, ASV-based community profiling.

Best for: high-resolution microbiome studies.

HiFi metagenomics

Recover high-quality genomes from complex communities using accurate long reads.

Best for: strain resolution, function, AMR.

What you can get back

Common HiFi outputs, in plain language.

OutputWhat it meansWhy we do it
HiFi readA long read (typically ~15–25 kb) made from many passes of the same molecule.Combines length and precision in one read.
De novo assemblyA genome built from the reads themselves, not mapped to a reference.Produces near-complete, reference-grade genomes.
Structural variants (SVs)Large insertions, deletions, inversions, or rearrangements.Long reads reveal big changes short reads miss.
Full-length 16S (ASVs)Exact sequence variants from the whole 16S gene.Species-level community profiling with high confidence.
Assembly statisticsGenome size, contig count, N50, GC content.A quick quality check of how complete the assembly is.
AMR & virulence genesDetected resistance and pathogenicity genes.Supports screening and risk assessment.
Raw read QCRead quality, count, and length summary.Confirms the data is clean enough for reliable analysis.

At a glance

Platform
PacBio HiFi (SMRT / Circular Consensus Sequencing)
Read length
HiFi reads typically ~15–25 kb
Read accuracy
Around 99.9% (Q30) median; low systematic error
Input
Intact, high-quality DNA; exact input confirmed by application
Turnaround
Turnaround confirmed in quote
Data delivered
HiFi reads (BAM), FASTA/FASTQ on request, and a report
Safety
For Research Use Only. SDS/quality documents on request.

Which sequencing platform?

Three ways to sequence, one team. Short reads for scale and low cost; long reads for complete genomes and full genes; HiFi for long reads at high accuracy. Not sure? Ask a scientist.

What mattersKodaSeq (Illumina)KodaSeq NanoporeKodaSeq HiFi (PacBio)
Read lengthShort (up to ~2×300 bp)Long — any length, up to ultra-longLong (~15–25 kb HiFi)
Per-read accuracyVery highHigh (>99%), higher on consensusVery high (~99.9% / Q30)
Cost per sampleLowestModerateHighest
Many samples / throughputBestGoodGood
Complete genomes & plasmidsOften fragmentedYes — closes genomesYes — reference-grade
Structural variantsLimitedYesYes
16S resolutionRegion — usually genusFull gene — speciesFull gene — species (ASVs)
Best forCounting, big sample sets, SNPs, RNA-seqComplete genomes, field/real-time, species 16S, methylationReference assembly, SVs, exact 16S, full-length transcripts

Common questions

What is a HiFi read?

A long read built from many passes of the same DNA molecule, merged into one high-accuracy sequence — long and precise.

Why HiFi over Nanopore?

Both give long reads. HiFi’s strength is very high per-read accuracy, which suits reference-grade assembly and exact 16S variants. Nanopore adds portability, real-time data, and direct RNA. We help you choose.

Why HiFi over Illumina?

Long, accurate reads span repeats and whole genes — so they assemble complete genomes, resolve structural variants, and read the full 16S. For high-throughput counting, short-read KodaSeq can be more economical.

How much / what quality DNA do you need?

HiFi prefers intact, high-molecular-weight DNA and a higher input than short-read. We confirm the exact amount for your application before you ship — and can extract for you if needed.

Can I resolve species in a microbiome?

Yes. Full-length 16S at HiFi accuracy resolves many organisms to species, well beyond short-region genus-level.

What data do I receive?

Raw reads and a bioinformatics report with QC, assembly or profiling, and charts.

Is this for diagnostic use?

No. For research use only.

Not sure this is the right fit?ask a scientist.

Reagents & consumables

Everyday molecular-biology reagents

DNA ladders, loading dye, RNase A, and Proteinase K for routine research workflows in the molecular laboratory.

KreatBio reagents and consumables

Insights

Notes from our team

Short pieces on how we think about molecular science — timing, access, responsibility, and precision, from sample to decision.

All insights

Diagnostics

Molecular information should arrive before the crisis

Healthcare and life-science decisions are often made too late. A patient has already deteriorated, an outbreak has already widened, a crop disease has already spread, or a research program has already consumed months before the most important question is asked: what is actually present in the sample?

Molecular analysis changes that timing. It allows teams to move from assumption to evidence. Instead of waiting for visible symptoms, culture results, field losses, or repeated experimental failure, scientists and clinicians can read biological signals earlier and act with more confidence.

The central lesson from recent global health emergencies is not simply that the world needs more emergency testing. The better lesson is that sample-to-data capability should be available before emergencies begin. Laboratories, hospitals, universities, food producers, environmental agencies and biotechnology companies all benefit when they can generate reliable molecular evidence quickly.

For KreatBio, this means treating diagnostics and sequencing as everyday infrastructure. A good laboratory network should not sit idle until a crisis. It should support routine surveillance, research validation, product development, quality control and faster decision-making across health, agriculture, aquaculture, biodiversity and environmental work.

Better information also reduces waste. It can prevent unnecessary treatment, avoid repeating failed experiments, help identify contamination, narrow the search for pathogens and guide researchers toward the right next step. The value is not only scientific. It is operational: fewer delays, fewer blind decisions and better use of limited budgets.

The future of testing should therefore be judged by usability as much as by technical performance. Speed and accuracy matter, but so do access, sample logistics, interpretation, cost, and clear reporting. A result that arrives too late or cannot be understood by the decision-maker has only partial value.

Molecular tools will continue to improve, but the bigger shift is cultural. Organizations need to ask biological questions earlier, build testing into planning, and use data before problems become expensive. That is how molecular information becomes a practical asset rather than a last-minute response.

All insightsNext: Sustainable science starts with small design choices
All insights

Sustainability

Sustainable science starts with small design choices

Modern laboratories create knowledge, but they also consume materials, energy and logistics capacity. Every extraction, sequencing run, freezer cycle, shipment, reagent box and disposable tube leaves a footprint. The question is not whether science should continue. It must. The question is how laboratories can reduce avoidable waste without compromising reliability.

Sustainability in life sciences is often discussed at a corporate level: targets, reporting, disclosures and procurement policies. Those are necessary. But practical progress usually begins much closer to the bench. A researcher chooses the right sample volume. A lab manager consolidates orders. A team validates a workflow that reduces repeat runs. A company designs packaging that uses less material. A facility reviews cold-chain energy use. Each change looks small until it is repeated thousands of times.

KreatBio’s view is that sustainable science should be integrated into workflow design, not added afterward as a communication exercise. If a process produces unnecessary plastic waste, excess transport, repeated failures or avoidable energy use, the process itself needs improvement.

This is not only an environmental issue. Waste is also a cost issue and a quality issue. Failed experiments consume reagents. Poor sample handling forces reruns. Unclear instructions increase errors. Better design can reduce waste and improve scientific output at the same time.

The industry should also be realistic. Laboratories depend on sterility, traceability and contamination control. Many materials cannot simply be replaced without validation. Sustainability efforts should therefore be evidence-based: measure the impact, test the alternative, protect quality and then scale the change.

A more sustainable laboratory sector will not be built through slogans. It will come from better planning, smarter procurement, validated low-waste workflows, training, and collaboration among researchers, suppliers, institutions and service providers. Responsible science is not separate from good science. It is one way good science proves its discipline.

All insightsNext: Computation must serve the biology
All insights

Bioinformatics

Computation must serve the biology

Modern sequencing produces more information than most teams can review manually. The challenge is no longer only to generate reads. It is to convert raw output into a defensible answer that matches the scientific question.

This is where computational support becomes valuable. Automated checks can flag weak samples, summarise run quality, compare organisms, organise annotations and prepare draft tables for expert review. These tools are useful because they reduce repetitive work and help teams focus on interpretation.

They are not a substitute for experimental judgment. A poor sampling plan, contaminated input, insufficient controls or the wrong analysis method cannot be rescued simply by adding software. The best digital workflow begins with good biology and ends with a scientist who understands the limits of the result.

KreatBio’s view is that automation should be introduced where it improves consistency. Repeated quality-control steps, standard reporting formats, literature triage and routine classification tasks are good candidates. High-impact conclusions, unusual findings and customer-specific interpretations still require human review.

Governance is also essential. Project data must be stored securely, analysis parameters should be traceable, and customers should know which parts of the workflow are automated and which parts are reviewed by specialists. Without that transparency, speed can weaken confidence.

The strongest laboratories will be those that combine wet-lab discipline with informatics capability. Instruments create files; people create meaning. Digital tools should help the team move faster from sample to decision, while preserving scientific accountability at every step.

All insightsNext: Biological data needs security by design
All insights

Data & security

Biological data needs security by design

Laboratories now generate more than physical results. They create datasets, sample records, sequence files, customer information, research findings and intellectual property. As more workflows move into cloud platforms, connected instruments and shared analysis environments, biological data becomes a security asset.

This creates a simple responsibility: protect the data before there is a problem. Cybersecurity in life sciences should not be treated as an IT add-on or a final compliance step. It should be built into how samples are received, how files are transferred, how results are stored, how access is granted and how reports are delivered.

The risk is broader than targeted attacks. A laboratory can be affected by weak passwords, misdirected files, outdated software, unsecured devices, third-party platform failures, phishing, accidental sharing or poor permission controls. In many cases, the practical risk begins with ordinary workflow gaps rather than sophisticated attackers.

Good protection starts with reducing exposure. Teams should know what systems are connected, who can access them, what data is stored, where backups sit and which third parties touch the workflow. Access should be limited to the people who need it. Sensitive files should move through controlled channels. Staff should be trained to recognise common threats.

For a molecular services company, trust depends on more than generating accurate data. Customers need confidence that their samples, projects and results are handled responsibly. This is especially important when work involves unpublished research, commercial development, biodiversity data, institutional collaborations or potentially sensitive biological information.

Security will never be finished. New tools, customers, partners and analysis methods create new exposure points. The right mindset is continuous review: map the risk, close the obvious gaps, test procedures, train people and make secure behavior easy to follow. In modern science, data protection is part of scientific quality.

All insightsNext: Neglected biological threats do not stay neglected forever
All insights

Surveillance

Neglected biological threats do not stay neglected forever

Some biological threats attract attention only after they have become difficult to control. Slow-moving infections, environmental pathogens, antimicrobial resistance, animal disease, crop disease and contaminated supply chains can remain under-monitored for years because they do not always create immediate headlines.

That is a dangerous habit. Biology does not wait for funding cycles, institutional boundaries or public attention. A pathogen can move through people, animals, water, food systems or trade networks long before decision-makers recognise the pattern.

The problem is rarely a complete lack of scientific tools. In many cases, the tools exist: molecular detection, sequencing, resistance profiling, metagenomics, environmental sampling and data analysis. The larger weakness is deployment. Testing may be too limited, sample logistics may be poor, surveillance may be fragmented, and budgets may arrive only after damage is visible.

A better approach is to monitor earlier and more consistently. This does not mean testing everything all the time. It means identifying high-risk settings, choosing practical sampling strategies, using appropriate molecular methods and connecting the results to action. Surveillance has value only when someone is prepared to respond.

KreatBio sees this as a shared responsibility across public health, universities, industry, agriculture, aquaculture and environmental management. The same molecular capabilities that support research can also support preparedness. They can help detect unusual signals, understand transmission, identify resistance markers and guide containment.

The lesson is direct: underinvestment in detection creates larger costs later. Early molecular evidence is more affordable than late crisis management. Organizations that build surveillance capacity before they need it will be better positioned when the next biological risk becomes visible.

All insightsNext: Careers in science should move sideways as well as upward
All insights

People & careers

Careers in science should move sideways as well as upward

Scientific organizations often talk about talent as if careers move in one straight line. In reality, strong teams are built by people who cross boundaries: a wet-lab scientist who learns bioinformatics, a quality specialist who moves into operations, a field application colleague who becomes a product lead, or a researcher who develops customer-facing skills.

These moves are not detours. They create people who understand more than one part of the value chain. In a molecular services business, that matters. A sample does not pass through one function only. It moves through collection, extraction, sequencing, data processing, interpretation, reporting and customer communication. Teams work better when people understand the handoffs.

Organizations should therefore make internal mobility easier. Managers should ask what employees want to learn, not only what role they currently fill. Employees should be encouraged to signal interest early, take on cross-functional projects and build skills before a formal opening appears.

For individuals, the main requirement is preparation. A career change inside science still requires proof of capability. That may mean taking a short course, joining a project outside one’s usual scope, learning a new platform, documenting process improvements or shadowing another team.

For employers, the benefit is retention and resilience. Internal candidates already understand the culture, customers and operating constraints. They may need technical training, but they often bring institutional memory that external hires do not have.

A good science career is less like a ladder and more like a network. Progress can mean broader judgment, deeper expertise, wider exposure or greater ownership. The best organizations help people move where their skills can create the next layer of value.

All insightsNext: Trust in testing depends on clear evidence standards
All insights

Quality

Trust in testing depends on clear evidence standards

A test result can influence major decisions: whether to start treatment, repeat an experiment, release a batch, investigate contamination, change a breeding program or continue a research direction. Because the result carries weight, the evidence behind it must be clear.

This is why standards matter. A method should not be judged only by whether it produces a signal. Users need to know what the method detects, what it does not detect, what controls were used, what the limit of detection is, how reproducible the workflow is and how results should be interpreted.

In fast-moving fields, new assays and analysis methods can appear quickly. Innovation is valuable, but speed without transparency can weaken trust. Customers and stakeholders should be able to distinguish between exploratory research, internally validated workflows, clinically validated methods and regulated diagnostic claims.

KreatBio’s position is practical: evidence standards should fit the intended use. A research-use workflow may not require the same documentation as a clinical diagnostic test, but it still needs clear methodology and quality controls. A commercial test used for high-impact decisions should meet a higher bar. Claims should match the validation.

Good governance also supports innovation. When users understand performance, limitations and proper use, they are more likely to adopt new methods responsibly. Clear standards reduce confusion, protect end users and help serious providers differentiate themselves from weak claims.

The future of molecular testing will include more complex panels, faster sequencing, lower-cost analysis and wider deployment outside traditional laboratories. As access expands, trust must expand with it. That requires transparency, documentation, appropriate validation and communication that does not overstate what the data can prove.

All insightsNext: Genomic surveillance should look beyond the obvious sample
All insights

Surveillance

Genomic surveillance should look beyond the obvious sample

Outbreak detection is often framed around patients, but biological signals appear in many places before they become obvious. Wastewater, livestock, aquaculture systems, soil, food-processing environments, wildlife, hospital surfaces and research facilities can all contain early clues.

Genomic surveillance helps turn those clues into intelligence. By sequencing and comparing biological material over time, teams can see whether a known organism is changing, whether an unexpected species is present, whether resistance markers are emerging, or whether contamination has entered a process.

The most useful surveillance systems are designed before the emergency. They define where to sample, how often to sample, which methods to use, what quality thresholds matter, who reviews the data and what action should follow. Without those decisions, sequencing can become a data-generation exercise rather than a decision tool.

Surveillance also needs local capacity. Sending every sample far away creates delays and weakens learning. Regional laboratories, universities and service providers can play an important role by building routine competence in extraction, sequencing, analysis and reporting.

This is especially relevant in Southeast Asia, where biodiversity, urban density, food production, trade, climate exposure and cross-border movement create complex biological monitoring needs. A stronger regional genomics ecosystem would support public health, environmental management, agriculture, aquaculture and academic research at the same time.

The goal is not to predict every threat. That is impossible. The goal is to shorten the time between biological change and human response. Genomic surveillance is valuable because it gives decision-makers an earlier signal — and earlier signals create more options.

All insightsNext: Access to molecular science is a business issue, not only a social issue
All insights

Access

Access to molecular science is a business issue, not only a social issue

Advanced molecular tools are often concentrated in well-funded institutions. Smaller laboratories, emerging biotech companies, regional universities and applied research teams may have strong scientific questions but limited access to instruments, trained personnel or bioinformatics support.

Closing that gap is not charity. It is market development. When more organizations can use molecular tools effectively, more research is completed, more products are validated, more ecosystems are monitored and more local expertise is created. The scientific market becomes broader and more capable.

Service models can help. Not every organization needs to own every instrument or hire every specialist immediately. A reliable partner can provide extraction, sequencing, quantification, analysis and reporting while customers build their own internal capability over time. This lowers the barrier to entry and helps projects move forward sooner.

Affordability matters, but price is not the only access issue. Turnaround time, sample requirements, report clarity, training, consultation and practical troubleshooting all shape whether customers can actually use the data. A low-cost result that is difficult to interpret may not create value.

KreatBio’s role is to support a healthier molecular ecosystem in the region: researchers who can test ideas faster, companies that can validate products more confidently, and institutions that can generate local data rather than relying entirely on distant infrastructure.

Sustainable access also requires a viable business model. Service providers must be able to invest in quality, people, maintenance and new methods. Customers must receive dependable outputs. The strongest model is a virtuous cycle: better access creates more demand, demand supports better capability, and better capability helps the scientific community do more ambitious work.

All insightsNext: Precision starts with asking a better biological question
All insights

Precision

Precision starts with asking a better biological question

Precision is often associated with advanced technology, but it begins earlier than that. Before choosing a sequencing platform or analysis pipeline, a team needs to define the biological question clearly. Are we identifying a species? Comparing microbial communities? Detecting variants? Confirming contamination? Studying genetic diversity? Monitoring resistance? Validating a product claim?

The answer determines the workflow. A poorly framed question can lead to the wrong sample type, insufficient replication, unsuitable sequencing depth, weak controls or an analysis that does not support the decision. More data does not automatically create more clarity.

This is why molecular projects need both technical execution and experimental thinking. DNA extraction quality affects downstream results. Library preparation choices shape what can be detected. Sequencing depth affects confidence. Bioinformatics parameters influence interpretation. Reporting determines whether the result can be acted on.

Precision also depends on context. A result may be technically correct but incomplete if the sampling plan is weak. A variant may be real but irrelevant to the user’s decision. A microbial profile may be interesting but not actionable. Good molecular science connects the result back to the original purpose.

For KreatBio, precision means helping customers choose the right path before work begins. Sometimes that means sequencing. Sometimes it means improving extraction. Sometimes it means quantification, pilot testing, controls, or a custom analysis plan. The best solution is not always the most complex one.

As molecular tools become more accessible, the differentiator will be judgment. Organizations that ask sharper questions, design better workflows and interpret data carefully will gain more value from the same technologies. Precision is not just a technical destination. It is a disciplined way of thinking from sample to decision.

All insights

Resources

Resource

Protocols, safety data, articles, and a curated set of public databases and tools — everything you need to plan a run, cite a method, and interpret your data.

Research papers

Published studies and papers, read in your browser.

Open research papers

Protocols & safety data

Every KodaPure protocol and safety data sheet, searchable and read in your browser.

Open the protocol library

Databases & tools

Curated public resources for submission, retrieval, annotation, phylogenetics, and learning.

CategoryResourceWhat it is for
Sequence archivesNCBI SRASubmit your raw reads, or download others’ — the main public archive for sequencing data.
Sequence archivesNCBI GenBankResearcher-submitted DNA and RNA sequences.
Sequence archivesNCBI RefSeqCurated, high-quality reference sequences.
Sequence archivesNCBI NucleotideFetch FASTA sequences, reference or submitted.
Sequence archivesEMBL-EBIEurope’s hub for sequence and bioinformatics data.
Genomes & annotationEnsemblReference genomes with gene annotation.
Function & pathwaysKEGGMap genes to functions and metabolic pathways (KO orthology).
Function & pathwaysUniProtProtein sequences and functional information.
PhylogeneticsiTOLDisplay and annotate phylogenetic trees.
PhylogeneticsphyloT v2Build trees from NCBI taxonomy, then visualise them.
LiteratureNCBI PubMedSearch the biomedical literature.
LearningKodaGenoLearn bioinformatics through story-based coding tutorials.

Request a quote

Get a quote

Tell us what you need and we will send an itemised quote, usually within 1–2 working days. No obligation.

Opens your email app addressed to our team. Prefer email? team@kreatbio.com.

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Not sure exactly what to request? ask a scientist and we will help you scope it.

Contact & support

Request a quote or ask a question

Tell us your sample type and what you need — kits, an extraction or sequencing project, or a method question. A scientist replies, not a form.

Our laboratory

Shah Alam, Selangor — shipping kits direct across Malaysia and Southeast Asia.

Quick answers

What should I include?

Your sample type, a rough number of samples, what you want to find out, and any deadline. That is enough for us to point you the right way.

How fast do you reply?

Method questions and quotes get an answer within 1–2 working days — from a scientist, not a form.

Do you ship outside Malaysia?

We ship kits direct across Malaysia and Southeast Asia. Other destinations by arrangement — just ask.

Can you help me choose a workflow?

Yes. Tell us the sample and the question and we will suggest the kit or service that fits — sometimes that means a smaller pilot first.

Company

Precision nucleic-acid tools, built for the region

KreatBio builds magnetic-bead extraction kits, laboratory reagents, and sample-to-answer services for laboratories across Southeast Asia.

Our purpose

We help laboratories answer one question earlier: what is actually in the sample?

KreatBio builds the kits, reagents, services, and analysis support that turn difficult biological material into reliable molecular evidence without overcomplicating lab infrastructure.

Our science

We work across the whole molecular-biology workflow, from a raw sample to a clean answer. That means the kits and reagents that pull DNA and RNA out of hard, real-world samples; the laboratory that runs extraction, quantification, sequencing, and analysis; and the bioinformatics that turns raw reads into something you can act on.

Who we serve

We support laboratories and teams that need reliable molecular evidence from real samples across Southeast Asia.

Human & animal healthAgricultureAquacultureFood safetyEnvironmentAcademic researchIndustry

Our approach to molecular science

We keep the work practical: get good material from real samples, choose the right test, and explain what the result can and cannot say.

Start with the sample

Reliable molecular work begins before sequencing or analysis. We focus on clean extraction, sensible controls, and workflows that hold up in routine lab conditions.

Match the method to the question

We do not add complexity for its own sake. The biological question should decide the extraction, sequencing, analysis, and reporting path.

Be clear about limits

Good science is useful because it is honest. We explain what each method detects, where uncertainty remains, and how results should be interpreted.

Our team

A focused team of molecular biologists and bioinformaticians.

AB

Adriana Batrisyia

Co-founder & CEO

Adriana leads KreatBio’s scientific direction, shaping the KodaPure kit platform and the company’s sample-to-answer services. Her focus is practical molecular biology: workflows that are robust in real lab conditions and clear enough for customers to trust.

GS

Goh Si Jing

Co-founder & CFO

Si Jing leads KreatBio’s business, finance, and operations. He builds the partnerships, supply discipline, and commercial structure that help the company bring dependable molecular tools to more laboratories across the region.

Talk to the team

Ask about kits, sequencing, or a project you want to plan.

Contact us

Application

Microbiome & microbial genomics

For microbial samples, isolates, swabs, stool, biofilms, water, surfaces, and low-biomass material.

Microbial testing helps show which organisms are present and how they differ between samples. The extraction method matters because tough cells, inhibitors, and low-biomass samples can change the result before sequencing even starts.

What this application is for

Community profilingCompare bacterial or fungal communities across treatments, sites, time points, or sample groups.
Isolate identificationConfirm the identity of cultured bacteria or fungi and compare closely related isolates.
Resistance and virulence screeningLook for antimicrobial-resistance markers or genes linked to pathogenicity in isolates or communities.
Contamination investigationTrace unexpected microbial signals in lab, production, food, or environmental workflows.

Services to explore

You do not need to choose a platform first. Pick the service that matches what you need to learn, then we can connect the extraction, sequencing, and analysis steps.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Plant & soil genomics

For farms, crop studies, nurseries, soil projects, and labs working with leaves, seeds, roots, fertilizer, rhizosphere, or inhibitor-rich soil.

Plant and soil testing can help answer practical questions: what plant material is this, what microbes are in the soil, and whether the sample is clean enough for sequencing. These samples can be difficult because soil, leaves, and roots often carry compounds that block PCR, so the extraction step has to be planned properly.

What this application is for

Plant identification and barcodingConfirm species, variety, or source material using targeted marker sequencing.
Crop and breeding researchGenerate DNA for genotyping, pathogen studies, or sequencing-led trait work.
Soil and rhizosphere profilingStudy microbes linked to soil health, fertilizer use, roots, and land management.
Inhibitor-heavy sample supportPlan extraction and dilution strategies for samples that commonly suppress PCR.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Animal & tissue genomics

For tissue, organs, cultured cells, swabs, biopsies, livestock samples, and animal research material.

Animal and tissue projects may need a simple identity check, host genetics, pathogen research, or sequencing-ready DNA. The sample may be small or uneven, so the workflow should match the tissue type and the question.

What this application is for

Tissue DNA extractionRecover DNA from tissue, organs, cultured cells, and similar sample types.
Species and sample confirmationUse barcoding or sequencing to verify identity and avoid sample mix-ups.
Host genetics and genotypingPrepare DNA for genotyping, targeted sequencing, or whole-genome work.
Pathogen research supportExtract host or pathogen nucleic acid for research-use screening and sequencing.

Services to explore

You do not need to choose a platform first. Pick the service that matches what you need to learn, then we can connect the extraction, sequencing, and analysis steps.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Food & environmental testing

For food material, water, surfaces, swabs, production areas, and environmental samples that need a clear molecular check.

Food and environmental testing helps teams check what is really in a sample and whether unwanted biological signals are present. It is useful for farms, processors, labs, and monitoring teams that need clearer evidence than visual inspection alone can provide.

What this application is for

Authenticity and species IDCheck whether biological material matches the expected species or source.
Contamination investigationLook for microbial signals in products, surfaces, water, or production areas.
Environmental monitoringTrack organisms across sites, seasons, facilities, or intervention points.
Surveillance workflowsGenerate repeatable molecular evidence for routine monitoring programs.

Services to explore

You do not need to choose a platform first. Pick the service that matches what you need to learn, then we can connect the extraction, sequencing, and analysis steps.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Insects & vectors

For mosquitoes, ticks, crop pests, small insects, pooled samples, and vector or pest-monitoring projects.

Insect and vector projects often start with small samples and field questions: what species is this, where is it spreading, and what biological material is it carrying? Molecular work can support pest control, vector research, and routine monitoring.

What this application is for

Species identificationUse DNA barcoding to identify insects when morphology is slow or uncertain.
Vector and pathogen researchStudy biological signals associated with mosquitoes, ticks, and other vectors.
Pest monitoringSupport crop and stored-product pest studies with molecular confirmation.
Population comparisonCompare samples across locations, seasons, or intervention programs.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Wildlife & conservation genomics

Information for hair, dung, feather, tissue, environmental DNA, and non-invasive conservation samples.

Wildlife samples are often limited, degraded, or collected far from a laboratory. A good workflow protects scarce material and turns it into evidence for biodiversity, conservation, and population questions.

What this application is for

Non-invasive samplingWork with hair, dung, feathers, or environmental DNA where direct sampling is not practical.
Biodiversity surveysDetect species presence and compare biological signals across habitats or time points.
Population and conservation studiesGenerate DNA for population genetics, relatedness, and monitoring programs.
Forensic and trace questionsSupport research-use identification when the sample is small or uncertain.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Aquaculture & fisheries genomics

Information for fish, shrimp, hatchery samples, pond water, biofilters, tissue, and environmental DNA.

Aquaculture decisions depend on knowing what is present in animals, water, and production systems. Molecular workflows can support health monitoring, stock improvement, microbial profiling, and environmental surveillance.

What this application is for

Animal health researchStudy fish, shrimp, or associated pathogen signals in research-use workflows.
Water and pond monitoringProfile microbial communities or biological signals in water, filters, and sediments.
Species and stock confirmationUse DNA methods to confirm species, source, or breeding material.
Routine surveillance planningBuild repeatable sampling and sequencing workflows for farms or hatcheries.

Services to explore

You do not need to choose a platform first. Pick the service that matches what you need to learn, then we can connect the extraction, sequencing, and analysis steps.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Application

Wastewater & pathogen surveillance

For wastewater, influent, effluent, sludge, filters, and community or site-monitoring programs.

Wastewater can show biological signals across a site or community. The challenge is that the material is dirty, diluted, and inhibitor-rich, so the workflow must turn it into evidence that can be compared over time.

What this application is for

Community pathogen surveillanceTrack research-use biological signals across collection points or time series.
Antimicrobial-resistance monitoringScreen for resistance markers and compare trends between sites.
Environmental public-health researchGenerate evidence for studies of community-level biological change.
Process and site comparisonCompare influent, effluent, sludge, filters, or intervention points.

Services to explore

You do not need to choose a platform first. Pick the service that matches what you need to learn, then we can connect the extraction, sequencing, and analysis steps.

How to plan the work

Tell us what sample you have, how many samples there are, what you need to find out, and whether this is a one-off check or a monitoring project. We will suggest the practical next step and whether a small pilot should come first.

Ask about this application

Quality & compliance

Made to a standard you can cite

Documented lots, release testing, and end-to-end traceability — so the kit you buy and the result we return both stand up in review.

What quality means at KreatBio

QC on every batch

Reagent lots are checked for binding performance and purity before they ship. Results are recorded and available on request.

Traceable end to end

Catalogue numbers, lot codes, and protocol versions are tracked through each service run, giving you a clean audit trail for publication.

What our QC involves

Quality here is a test on the real chemistry, not a line on a form. Each reagent lot is made to a fixed recipe, run on a control sample, and released only if it meets spec.

Binding & yield
Each lot must pull down DNA from a control sample within a set range.
Elution purity
A260/280 and A260/230 ratios confirm the DNA is protein- and salt-clean.
Contamination
Lots are checked for obvious contamination before they are cleared.
On the record
Lot number, test results, and expiry are written to the lot record.

Compliance summary

For Research Use OnlyNot for diagnostic proceduresSDS on requestFull safety data sheet
Intended use
For Research Use Only (RUO). Not for diagnostic or therapeutic procedures.
Manufacturing
Reagents made under a documented quality process, with lot records and release testing before shipping.
Documentation
Full Safety Data Sheet on request.
Traceability
Catalogue number, lot code, and protocol version recorded for every kit and service run.
Storage
Store and handle each product according to its protocol and safety documentation.

Research Use Only

“For Research Use Only” means these products are made and sold for research, method development, and quality control — not to diagnose, treat, or make clinical decisions about a person or animal.

That is an honest label, not a limit of the chemistry. It means we validate our kits for research performance and do not make clinical claims we cannot back. If you plan to use a workflow in a regulated or clinical setting, that validation is your responsibility — and we are glad to share what we know to support it.

How we handle your samples and data

For service work, your material and results are treated as confidential from the moment they arrive.

Traceable

Every sample gets a job code, and the catalogue number, lot, and protocol version are recorded through the run.

Confidential

Your samples, projects, and results are yours. We do not share them, and unpublished work stays unpublished.

Handled with care

Files move through controlled channels and results are returned to you; we keep only what we need to support the work.

Quality questions

Are your products ISO certified?

Our reagents are made under a documented quality process with lot records and release testing. We are not currently ISO-certified; formal certification is on our roadmap. If your institution needs specific documentation to onboard us as a supplier, contact us and we will do our best to support your process.

Are these products for diagnostic use?

No. All KodaPure products and KreatBio services are for Research Use Only and are not intended for diagnostic or therapeutic procedures.

How do I get a Safety Data Sheet?

You can review the current KodaPure SDS in Protocols & SDS, or email us if your institution needs a copy sent directly.

Other services · Data analysis

Bioinformatics

Data analysis and learning support for sequencing projects. KodaAly turns raw data into clear outputs; KodaGeno helps students and bench scientists learn the workflow.

Data analysis and bioinformatics service

KodaAly

Sequencing data analysis

KodaAly turns sequencing reads into QC summaries, tables, figures, and biological interpretation that can go straight into reports, manuscripts, or project decisions.

Send raw reads and sample metadata; we match the analysis to the biological question and return readable outputs instead of a folder of unexplained files.

What comes back

  • Quality control: read counts, quality, trimming, filtering, and contamination checks.
  • Analysis outputs: clean tables, figures, and method notes matched to your study design.
  • Readable summary: plain-language interpretation of the major findings and limitations.

Possible analyses

Common analysis modules we can combine into a project-specific workflow.

Analysis typePossible analysesTypical outputs
Whole-genome sequencingRead QC, genome assembly, reference mapping, variant calling, genome annotation, AMR and virulence gene screening, plasmid detection.Assembly FASTA, annotated genes, variant tables, AMR/virulence tables, QC figures, summary report.
Amplicon sequencing16S, ITS, COXI or marker-gene processing, ASV/OTU table generation, taxonomy assignment, diversity analysis, differential abundance screening.Taxonomy tables, abundance plots, alpha/beta diversity figures, ordination plots, community summary.
TranscriptomicsRNA-seq QC, read alignment or pseudoalignment, expression quantification, differential expression, pathway or functional enrichment.Count matrix, DEG table, volcano/heatmap figures, pathway summaries, interpretation report.
Phylogenetic treeSequence alignment, model-aware tree building, bootstrap/support analysis, clade annotation, sample or isolate comparison.Tree figure, alignment file, support values, annotated clade summary.
MetagenomicsTaxonomic profiling, functional profiling, MAG recovery, AMR screening, diversity analysis, pathway-level summaries.Community composition, functional tables, MAG summaries, AMR profile, figures and report.
Custom bioinformaticsPipeline adaptation, custom figures, database matching, reproducible scripts, exploratory analysis.Project-specific tables, figures, scripts, and method notes.
Bioinformatics analysis workflow illustration
KodaGeno bioinformatics learning

KodaGeno

Learn bioinformatics by doing

KodaGeno is the learning side of Bioinfo: practical lessons for students and bench scientists who want to understand what happens after sequencing.

Use it to build enough confidence to read reports, understand figures, and start running beginner-friendly workflows yourself.

Good for

  • Students: learn analysis logic with realistic sequencing examples.
  • Bench scientists: connect wet-lab choices to downstream data quality.
  • Project teams: understand the figures and terms used in bioinformatics reports.

Start a data analysis request

Send the sequencing platform, number of samples, analysis goal, and any deadline.

Request a quote

Careers

Better molecular tools for Southeast Asia’s labs

KreatBio builds magnetic-bead DNA extraction kits and runs sequencing services for research labs across the region.

Growing
Team across science and operations
MY
Malaysia-based team
SEA
Serving research labs region-wide
5
Products & services

No opening roles available

We do not have open roles at the moment. Would like to be a part of our Team? Email Us.

Email us

Working at KreatBio

We are a small team in Selangor. Scientists here run projects directly, work close to customers, and follow a kit from the bench to shipping.

Talk to customers directly

Scientists here answer the technical questions themselves, so you hear how labs actually use what you build.

Cross-train across the lab

Move between the wet lab and bioinformatics. People here learn the step on either side of their own.

Own a product line

You take a kit or service from the bench protocol through to how it ships — the whole thing, not a slice.

All roles

KodaPure Chemistry R&D

R&D Scientist — Extraction Chemistry

Selangor, MalaysiaFull-timeSenior

About the role

Own and improve the magnetic-bead extraction chemistry behind every KodaPure kit and KreatBio service. You will take a formulation from a bench idea to a validated kit that pulls clean, amplifiable DNA out of tough samples like soil, stool, and plant tissue.

What you will do

  • Design and optimise bead-based total nucleic-acid (DNA and RNA) extraction chemistry — bind, wash, elute — across different sample types.
  • Run structured experiments to define robust formulations with appropriate storage stability.
  • Check performance carefully: yield, purity (A260/280 and A260/230), DNA integrity, and how well the DNA amplifies by qPCR.
  • Troubleshoot difficult, inhibitor-rich samples down to the real cause and fix them.
  • Write clear protocols, batch records, and validation reports.
  • Support hand-off of locked formulations to manufacturing and QC.
  • Work with the sequencing team so extracted DNA performs well downstream.
  • Guide junior scientists and review their experiments and notebooks.

What you will bring

  • Degree in a life-science or chemistry field with practical nucleic-acid extraction experience.
  • Strong molecular-biology skills: extraction, PCR/qPCR, and purity and integrity checks.
  • Experience developing or improving extraction methods (bead-based a plus).
  • Careful experimental design and clear data analysis.
  • Clear scientific writing.
  • Comfort working methodically and safely in a lab.

Desirable

  • Experience with magnetic-bead or silica chemistry.
  • Work on difficult samples (soil, stool, plant, environmental).
  • Reagent formulation and stability testing.
  • Familiarity with Research-Use-Only product development and QC.
  • Automation or liquid handling (e.g. 96-well).

Tools & technologies

Magnetic beadsDNA and RNA extractionqPCRDNA purity/integrityFormulationMethod validationProtocolsDifficult samplesTech transferRUO

Working conditions

  • Lab-based role in Selangor, Malaysia; PPE and standard lab safety.
  • Handling of biological and chemical reagents.
  • Occasional longer hours around validation timelines.
  • Research-Use-Only work — not for diagnostic use.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

KodaSeq Sequencing Lab

NGS Laboratory Scientist — Sequencing

Selangor, MalaysiaFull-timeMid-level

About the role

Run the sequencing bench for the KodaSeq service — from library prep through sequencing. You turn customers' DNA into clean, quality-controlled reads for amplicon (16S, ITS, COXI) and whole-genome projects.

What you will do

  • Prepare sequencing libraries (amplicon and whole-genome) following SOPs.
  • Operate and maintain sequencers and other lab instruments.
  • Run QC at each step: sample input, library, and run metrics.
  • Track samples and record results accurately in the lab system.
  • Troubleshoot failed libraries and runs down to the real cause.
  • Keep the lab clean, stocked, and audit-ready.
  • Work with bioinformatics so data hands off smoothly.
  • Help set up new methods and improve existing ones.

What you will bring

  • Practical molecular-biology lab experience.
  • Experience with NGS library prep and/or running sequencers.
  • Careful, accurate documentation and attention to detail.
  • Comfort following SOPs and troubleshooting.
  • Good communication and teamwork.
  • Comfort with lab safety and PPE.

Desirable

  • Experience with amplicon (16S/ITS) or whole-genome workflows.
  • Illumina and/or Oxford Nanopore platforms.
  • qPCR and library QC (e.g. fragment sizing).
  • LIMS and good documentation practice.
  • Work in a service or high-throughput lab.

Tools & technologies

NGS library prep16S/ITS/WGSSequencing platformsLibrary QCqPCRLIMSSOPsSample trackingTroubleshootingLab safety

Working conditions

  • On-site sequencing lab in Selangor, Malaysia; PPE and lab safety.
  • Handling of biological samples.
  • Some shift or extended coverage around run schedules.
  • Research-Use-Only work.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

KodaAly Bioinformatics

Bioinformatics Scientist

Selangor, MalaysiaFull-timeMid-levelRemote-friendly

About the role

Turn our sequencing data into clear answers. You build and run the KodaAly analysis pipelines — taxonomy, antimicrobial-resistance (AMR) calling, and whole-genome analysis — and deliver reports research customers can actually use.

What you will do

  • Run and maintain analysis pipelines for amplicon and whole-genome data.
  • Do taxonomic profiling, AMR calling, and variant or assembly analysis.
  • QC sequencing data and flag issues before anything is reported.
  • Produce clear figures and plain-language reports for customers.
  • Document workflows so results can be reproduced.
  • Work with the sequencing lab to agree requirements and read out results.
  • Improve pipelines for speed, accuracy, and cost.
  • Keep up with tools and methods in the field.

What you will bring

  • Experience analysing NGS data (amplicon and/or whole-genome).
  • Comfort with the command line and Python or R.
  • Understanding of common tools and formats (FASTQ, BAM, VCF; e.g. QIIME2, BWA, samtools).
  • Ability to QC data and interpret results.
  • Clear communication and report writing.
  • Reproducible, well-documented work.

Desirable

  • Microbiome, metagenomics, or AMR experience.
  • Workflow tools (Nextflow/Snakemake) and containers (Docker).
  • Cloud or HPC compute.
  • Building small tools or dashboards.
  • Publications or open-source contributions.

Tools & technologies

NGS analysisTaxonomyAMRPython/RQIIME2NextflowReproducibilityReportingCommand lineMetagenomics

Working conditions

  • Based in Selangor, Malaysia; remote-friendly within the region.
  • Standard remote or office setup; equipment provided.
  • Occasional lab collaboration days.
  • Research-Use-Only work.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

Platform & Tools

Bioinformatics Software Engineer

SingaporeFull-timeMid-levelRemote-friendly

About the role

Build the software that runs our genomics analysis at scale — the pipelines, the tooling, and the customer reports. You turn one-off scripts into reliable, repeatable systems the whole team depends on.

What you will do

  • Build and maintain reproducible analysis pipelines (Nextflow/Snakemake) with containers.
  • Develop internal tools and services (Python) for running analyses and generating reports.
  • Automate QC, run tracking, and report delivery.
  • Set up cloud compute (AWS or similar), balancing cost and speed.
  • Write clean, tested, reviewed code and improve CI/CD.
  • Make results traceable and reproducible.
  • Work with bioinformatics scientists to turn methods into software.
  • Document architecture and runbooks.

What you will bring

  • Solid software engineering with strong Python.
  • Experience building or running data pipelines in production.
  • Comfort with Linux, Git, and the command line.
  • Cloud experience (AWS preferred; others fine).
  • Containers (Docker).
  • Tested, maintainable code and good teamwork.

Desirable

  • Genomics data experience (FASTQ/BAM/VCF, tools like BWA/samtools).
  • Infrastructure-as-code and workflow orchestration.
  • Building internal web tools or dashboards.
  • SQL and data stores.
  • Genuine interest in the science.

Tools & technologies

PythonNextflowDockerAWSCI/CDPipelinesLinux/GitAutomationObservabilityReproducibility

Working conditions

  • Based in Singapore; remote-friendly within the region.
  • Occasional travel to the Malaysia lab for planning.
  • Standard setup; equipment provided.
  • Research-Use-Only work.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

Quality & Compliance

Quality & Compliance Specialist

Selangor, MalaysiaFull-timeMid-level

About the role

Keep our products and services trustworthy. You run QC on every reagent lot and keep records traceable from start to finish.

What you will do

  • Run and oversee QC testing on incoming materials and finished reagent lots against specifications.
  • Keep lot traceability records accurate and complete.
  • Maintain SOPs, batch records, and quality documentation.
  • Investigate out-of-spec results and drive corrective actions.
  • Support the quality-management system and continuous improvement.
  • Keep safety data sheets (SDS) and Research-Use-Only documentation current.
  • Help make services traceable from end to end.
  • Support internal audits and supplier checks.

What you will bring

  • Degree in a life-science field.
  • QC or quality experience in a lab or manufacturing setting.
  • Careful, accurate documentation and attention to detail.
  • Understanding of specifications, QC methods, and good documentation practice.
  • Ability to follow and improve procedures.
  • Clear communication.

Desirable

  • Experience in an ISO 13485 or ISO 9001 quality system.
  • Reagent or consumables QC.
  • Lot release and quality records.
  • qPCR or basic analytical methods.
  • Research-Use-Only product experience.

Tools & technologies

QC testingLot traceabilitySOPsGood documentationCAPASDS / RUOSpecificationsAuditsContinuous improvement

Working conditions

  • On-site in Selangor, Malaysia; PPE and lab safety.
  • Handling of reagents and materials.
  • Research-Use-Only products — not for diagnostic use.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

Laboratory Operations

Laboratory Operations Coordinator

Selangor, MalaysiaFull-timeJunior

About the role

Keep the lab and services running smoothly. You handle sample logistics, lot-release paperwork, and scheduling so extraction and sequencing jobs move on time and nothing gets lost.

What you will do

  • Receive, log, and track incoming samples and orders.
  • Coordinate sample logistics and cold-shipping where needed.
  • Keep stock of reagents and consumables and reorder in good time.
  • Support lot-release paperwork and documentation.
  • Schedule extraction and sequencing jobs with the lab teams.
  • Keep records accurate and services on time.
  • Be a clear point of contact for customers on status.
  • Help with continuous-improvement projects.

What you will bring

  • Strong organisation and attention to detail.
  • Comfort with spreadsheets and simple systems.
  • Good communication in English.
  • Reliable and proactive.
  • Able to juggle several tasks at once.
  • Interest in a science or lab environment.

Desirable

  • Experience in a lab, logistics, or operations role.
  • Inventory or order-management systems.
  • Exposure to shipping or cold-chain.
  • Good documentation habits.
  • Bahasa Malaysia a plus.

Tools & technologies

Sample logisticsInventorySchedulingDocumentationOrder trackingSpreadsheetsCustomer updatesLot releaseOrganisationCoordination

Working conditions

  • On-site in Selangor, Malaysia; a mix of lab and office work.
  • Some lifting and practical handling.
  • Research-Use-Only work.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

Southeast Asia Commercial

Field Application Scientist — Southeast Asia

SingaporeFull-timeMid-level

About the role

Be the scientific face of KreatBio for research customers across Southeast Asia. You help labs get the most from KodaPure kits and the KodaSeq and KodaAly services — from first demo to a workflow they trust.

What you will do

  • Support customers with onboarding, training, and troubleshooting on kits and services.
  • Run demos and answer technical questions in the field.
  • Help labs design experiments and read out their results.
  • Gather feedback from customers and bring it back to R&D and product.
  • Support evaluations and help win and keep accounts.
  • Represent KreatBio at conferences and customer events across the region.
  • Work with distributors to support their technical needs.
  • Build trusted relationships with researchers.

What you will bring

  • Degree in a life-science field.
  • Practical molecular-biology or genomics lab experience.
  • Confident presenter who enjoys working with people.
  • Able to explain science clearly to different audiences.
  • Willing to travel across Southeast Asia.
  • Self-driven and organised.

Desirable

  • Experience with extraction, PCR, or NGS workflows.
  • Prior field-application, technical-sales, or support role.
  • Network in Southeast Asian research labs.
  • Another regional language a plus.
  • Comfort working with distributors.

Tools & technologies

Customer supportDemosMolecular biologyNGS workflowsTrainingTroubleshootingSEA travelRelationship buildingTechnical sellingDistributors

Working conditions

  • Based in Singapore, covering Southeast Asia with regular regional travel.
  • Customer-facing across research labs.
  • Research-Use-Only products.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.
All roles

Southeast Asia Commercial

Business Development Manager — Southeast Asia

SingaporeFull-timeSenior

About the role

Grow KreatBio across Southeast Asia. You build the partnerships, distributor network, and customer relationships that get our extraction kits and sequencing services into more labs across the region.

What you will do

  • Own and grow revenue for a set of markets across Southeast Asia.
  • Find, sign, and manage distributors and channel partners.
  • Build relationships with research labs, institutes, and procurement teams.
  • Run consultative sales cycles from first contact to close.
  • Forecast accurately and keep a healthy pipeline in the CRM.
  • Work with marketing and product on regional campaigns and launches.
  • Negotiate pricing and agreements with commercial and legal.
  • Gather market and competitor insight and feed it into strategy.

What you will bring

  • B2B sales or business-development experience, ideally in life-science tools, reagents, or lab services.
  • Proven record of hitting revenue targets.
  • Ability to sell to scientific and technical buyers.
  • Strong negotiation, forecasting, and CRM discipline.
  • Experience with distributors or channel partners.
  • Willing to travel across Southeast Asia.

Desirable

  • Network in Southeast Asian research or diagnostics labs.
  • Scientific degree or lab background.
  • Experience selling extraction, PCR, or NGS products.
  • Another regional language a plus.
  • Early-stage or scale-up experience.

Tools & technologies

Business developmentDistributorsConsultative sellingNegotiationCRM / ForecastingSEA marketsPartnershipsPipelinePricingAccount growth

Working conditions

  • Based in Singapore with frequent travel across Southeast Asia.
  • Customer- and partner-facing.
  • Research-Use-Only products.
Equal opportunity. KreatBio is an equal-opportunity employer. We welcome applicants of every background and make decisions on merit. We are glad to provide reasonable adjustments during the process — just ask.

Legal

Privacy policy

How KreatBio collects, uses, and protects personal data for enquiries, quotes, orders, support, and job applications.

Last updated: 23 July 2026

The short version KreatBio Sdn. Bhd. is based in Malaysia. We collect only the information you send to us or that is needed to respond, quote, supply products or services, support customers, or consider job applications. We do not sell personal data, run advertising cookies, or operate online user accounts on this website.

1. Who we are

This website is operated by KreatBio Sdn. Bhd. (Reg. No. 202501046385), a Malaysian company with its laboratory in Shah Alam, Selangor. For privacy questions, email team@kreatbio.com.

This policy is written for our website visitors, customers, suppliers, distributors, collaborators, and job applicants. It is intended to reflect Malaysia's Personal Data Protection Act 2010 (PDPA), as applicable to commercial transactions in Malaysia.

2. What we collect

We collect personal data only where it is relevant to your interaction with us.

  • Enquiries and quotes: name, email address, organisation, role, sample type, product or service interest, project details, deadlines, and your message.
  • Orders and support: billing, delivery, order, product, service, support, and communication records.
  • Job applications: name, email address, CV, portfolio links, role interests, and any information you include in your application.
  • Website operation: basic technical information that may be logged by our hosting provider, such as IP address, browser type, pages requested, and timestamps.

Please do not send patient-identifiable, clinical, or unnecessary sensitive personal data through our website forms or email. Our products and services are for research use only unless we agree otherwise in writing.

3. How we use it

We use personal data for practical business purposes connected to KreatBio.

  • To reply to enquiries and technical questions.
  • To prepare quotes and recommend suitable products or services.
  • To process orders, arrange shipping, issue invoices, and keep business records.
  • To provide laboratory, sequencing, analysis, and support services.
  • To manage distributor, supplier, collaborator, or customer relationships.
  • To assess job applications and communicate with applicants.
  • To protect our website, products, services, legal rights, and records.

4. Consent and notice

Where the PDPA requires consent, we rely on the consent you give when you submit a form, email us, request a quote, place an order, or apply for a role. We may also process personal data where it is needed to take steps requested by you, perform a contract, keep required business records, comply with legal duties, or protect our rights, where permitted by Malaysian law.

You may withdraw consent where consent is the basis for processing, but this may affect our ability to respond, quote, supply, support, or consider your application.

5. Sharing

We do not sell personal data. We share it only when needed for the purposes above.

  • Service providers such as email, website hosting, accounting, payment, courier, storage, and IT support providers.
  • Professional advisers, auditors, insurers, regulators, or authorities where required or appropriate.
  • Business partners or distributors only where needed to answer your request, fulfil an order, or support a project.

Where we use service providers, we expect them to handle personal data only for the agreed purpose and to protect it appropriately.

6. Cookies, maps, and fonts

Our website does not use advertising or analytics cookies. We use a small browser local-storage item called kb-region to remember the region selected in the header. It stays in your browser until you clear it.

Some pages load Google Fonts or an embedded Google Map. When those services load, Google may receive technical information such as your IP address and may process it under Google's own policies.

7. Keeping data

We keep personal data only for as long as it is needed for the purpose collected, including customer support, order fulfilment, business records, accounting, tax, legal, and dispute purposes.

  • Enquiry and quote emails are kept while we handle the request and for a reasonable business-record period.
  • Order, invoice, tax, shipping, and service records may be kept for the period required by Malaysian business, accounting, and tax practice.
  • Job application records are kept for the hiring process and a reasonable period after, unless a longer period is agreed or required.
  • The kb-region local-storage item remains in your browser until you clear it.

8. Security

We use reasonable organisational and technical measures to protect personal data from loss, misuse, unauthorised access, alteration, or disclosure. No website, email system, or storage method is completely secure, so please avoid sending unnecessary confidential or sensitive information by email.

If a data breach occurs and notification is required under Malaysian law or guidance, we will take appropriate steps.

9. Your rights

Under the PDPA, you may ask to access or correct personal data we hold about you. You may also ask questions, withdraw consent where applicable, or raise a concern about how your personal data is handled.

To exercise these rights, email team@kreatbio.com. We may need to verify your identity before acting on a request.

10. External links

Our website may link to external websites and services, including LinkedIn, Google Maps, Google Fonts, and KodaGeno. Their privacy practices are controlled by those third parties, not KreatBio.

11. Updates

We may update this policy when our website, business processes, or legal requirements change. The date at the top shows the current version.

Documents

KodaPure TNA protocol versions

Current protocol versions for KodaPure total nucleic-acid extraction kits, with dedicated protocol pages and direct PDF downloads.

Current documents

Open each kit to see the current available version.

KodaPure MicrobeKBTNA-M-26

Pure culture and other samples targeting bacteria and fungi.

KodaPure Microbe - Dirty samplesKBTNA-MD-26

Faeces and other inhibitor-rich samples.

KodaPure AnimalKBTNA-A-26

Animal tissue, internal organs, and cultured cells.

KodaPure SoilKBTNA-S-26

Soil and fertilizer samples.

KodaPure PlantKBTNA-P-26

Leaves, seed, root, stem, and fibrous plant tissue.

KodaPure safety data sheetSDS

Safety and handling document for KodaPure reagents.

Events

Learn, ask, and work through it together

Upcoming KreatBio webinars and workshops for researchers, students, and laboratory teams.

What’s next

Upcoming events

Join us for focused, practical learning through free and paid workshops, each designed to build your understanding.

New events are coming soon

We are preparing the next webinar and workshop schedule. Check back here, or contact us if there is a topic you would like us to cover.

Suggest a topic

Register your interest

Event registration

Your details will be emailed securely to KreatBio for this registration enquiry.