Celemics, Inc.

Optimization

Assay and Reagent optimization technology for reliable sequencing result

Optimization

  • Post category:Technology

About

Assay Optimization Technology

Celemics provides robust NGS solution by custom-fit assay development and exclusive technology for chemistry optimization.

This includes not only the control of enzymes and buffers, but we also introduce our proprietary technology for designing special blocker technology.

Celemics has proprietary approach for design species-specific and sequencer-specific blockers; we can provide different blockers pertaining to your sample type, whether it is human or animal-derived, or sequencer-specific blockers for the NGS instrument of your choice.

Along with these exclusive blockers, Celemics has the ability to fine-tune the chemistry to control the binding specificity and affinity of our in-house designed probes and kit, which would lead to stabilized sequencing reaction and thus provide market-leading quality of on-target ratio and uniformity.

Overview of Celemics Rebalancing Technology

Optimization

Resources

Technical Resources

[Product Sheet] Whole Exome Sequencing Panel

[Product Overview] Celemics Target Enrichment Panel Overview

[Catalogue] Celemics Products & Service Catalogue_All Products & Service

Safety Data Sheets

MSDS_Whole Exome Sequencing Panel_Illumina

MSDS_Whole Exome Sequencing Panel_MGI

MSDS_Whole Exome Sequencing Panel_Thermo Fisher

References

vererinary sciences

Single-Nucleotide Polymorphisms in Calpastatin (CAST) and Micro-Calpain (CAPN1) Genes Influencing Meat Tenderness in Crossbred Beef Cattle in Thailand

Thaloengsakdadech, T., Triwutanon, S., Lertwatcharasarakul, P., Homwong, N., & Rukkwamsuk, T. (2026). Single-Nucleotide Polymorphisms in Calpastatin (CAST) and Micro-Calpain (CAPN1) Genes Influencing Meat Tenderness in Crossbred Beef Cattle in Thailand. Veterinary Sciences13(1), 99.

 

10.3390/vetsci13010099


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International Journal of Horticultural Science and Technology

DMR6 Gene Editing in Bananas: Protocol Development using CRISPR/Cas9 and Multiple Bud Clump Transformation

Kawicha, P., Sangdee, A., Rattanapolsan, L., Boonruangrod, R., Theanhom, A. A., Tongyoo, P., … & Thanyasiriwat, T. (2025). DMR6 Gene Editing in Bananas: Protocol Development using CRISPR/Cas9 and Multiple Bud Clump Transformation. International Journal of Horticultural Science and Technology, 609-624.

 

10.22059/ijhst.2025.392412.1050


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Industrial Crops and Products

Harnessing culturable endophytic bacteria to enhance cultivation and Δ9-tetrahydrocannabinol (THC) production in drug-type Cannabis sativa

Greetatorn, T., Wongdee, J., Boonchuen, P., Sibponkrung, S., Sarapat, S., Piromyou, P., … & Tittabutr, P. (2025). Harnessing culturable endophytic bacteria to enhance cultivation and Δ9-tetrahydrocannabinol (THC) production in drug-type Cannabis sativa. Industrial Crops and Products228, 120949.

 

10.1016/j.indcrop.2025.120949


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Biology

CRISPR/Cas9-Mediated Development of Potato Varieties with Long-Term Cold Storage and Bruising Resistance

Massa, G. A., Décima Oneto, C. A., González, M. N., Poulsen Hornum, A., Arizmendi, A., Sucar, S., … & Feingold, S. E. (2025). CRISPR/Cas9-mediated development of potato varieties with long-term cold storage and bruising resistance. Biology14(4), 445.

 

10.3390/biology14040445


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