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Kinovate Life Sciences, Inc. and Nitto Denko Corporation Announce Launch of NittoPhase®HL – High Loaded Solid Support for Oligonucleotide S
NittoPhase® HL Loaded up to 400umol/g delivers Market Leading Economies to Reduce Synthesis Costs and Increase Yields

Wyss Institute Launches "Molecular Origami" Interactive Feature
Molecular Origami is a process that allows researchers to build nano-sized structures out of DNA (or RNA). To help illustrate the basics of DNA origami, Harvard’s Wyss Institute has created a Flash-based interactive feature that allows users to build virtual nanostructures by sequencing a simple, abstract representation of a DNA molecule and then allowing it to self assemble.

Soul Orders
People understand an order In ancient China, when the emperor gave an order, every subject had to obey

DNA Software, Inc. Awarded $2.5 M in NIH Funding to Develop Pioneering Nucleic Acid-based Technologies
DNA Software, Inc. has been awarded three Fast Track SBIR grants from the National Institutes of Health to develop original in silico technologies to predict 3D structures of RNA-based molecules, improve diagnostics via modified nucleotides, and model the reaction rates of DNA and RNA experiments.

Kinovate Life Sciences, Inc. and Nitto Denko Corporation Announce Successful Development of NittoPhase™ HL High Loading Solid Support for Oligon
NittoPhase™ HL Loaded up to 400umol/g delivers Market Leading Economies to Reduce Synthesis Costs and Increase Yields

LC Sciences' Versatile Microfluidics Chip Technology Extended to Target Selection Applications
LC Sciences has announced the availability of a custom target enrichment service for next-generation sequencing applications. LC Sciences now provides a service for Target-Specific Selection of a defined genomic region (such as Mbp region at a specific location, suspected cancer regions, SNP regions, regions for genomic comparisons) or RNA sequences (such as sets of transcriptome sequences known from previous screening experiments, mRNAs, and miRNAs). This new service enables researchers to take full advantage of new "next-generation" high throughput sequencing technologies.



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