Next-gen Sequencing

Next-gen Sequencing

Next-gen Sequencing
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  1. ThruPLEX DNA-Seq Kit

    Generate DNA libraries from as little as 50 pg of DNA, whilst providing up to 384 indexes for multiplexing

  2. ThruPLEX Plasma-Seq Kit

    Optimised for cell-free DNA to maximise library complexity and to preserve the GC representation of the input sample

  3. ThruPLEX Tag-seq Kit

    Combines molecular tags with ThruPLEX chemistry to construct molecularly tagged and sample-indexed Illumina NGS libraries

  4. SMARTer Stranded Total RNA-Seq Kit v2 - Pico Input Mammalian

    Strand-specific Illumina sequencing libraries from picogram RNA inputs of any quality

  5. SMARTer Stranded RNA-Seq Kit

    Generate indexed cDNA libraries suitable for next-generation sequencing (NGS) on any Illumina platform, starting from as little as 100 pg of polyA-purified or ribosomal RNA-depleted RNA

  6. SMARTer Stranded Total RNA Sample Prep Kit - Low Input Mammalian

    Strand-specific Illumina sequencing libraries from low RNA inputs of any quality

  7. SMARTer Stranded Total RNA Sample Prep Kit - HI Mammalian

    Strand-specific RNA-seq libraries for Illumina platforms from high-input total RNA

  8. SMARTer Universal Low Input RNA Kit for Sequencing

    Synthesise high-quality cDNA from as little as 200 pg of RNA, and includes the Advantage 2 PCR Kit for PCR amplification and validation

  9. SMARTer Target RNA Capture for Illumina

    Generates high-quality, full-length cDNA from the enriched transcripts. Designed to work with inputs >10 ng total RNA as starting material

  10. SMART-Seq Stranded Kit

    Generate strand-specific RNA-seq libraries for Illumina sequencing from 1–1,000 sorted cells or 10 pg–10 ng of purified total RNA

  11. SMART-Seq v4 Ultra Low Input RNA Kit for Sequencing

    Generates high-quality cDNA from ultra-low amounts of total RNA, or directly from 1–1,000 intact cells

  12. SMART-Seq v4 3’ DE Kit

    End-capture method that focuses the majority of sequencing data on the 3' ends of mRNA transcripts from single cells

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