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Results for "

single-stranded nucleotides

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

2

Fluorescent Dye

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D1098

    Fluorescent Dye Others
    SYBR Green II is a fluorescent nucleic acid dye that mainly binds single-stranded nucleotides. SYBR Green II is sensitive to oligonucleotides or larger nucleic acid polymers in a variety of cells and gels. SYBR Green II can be used to study cell structure, membrane integrity or function, and cell cycle distribution. Wavelength 484/515 nm .
    SYBR Green II
  • HY-D1098A

    Fluorescent Dye Others
    SYBR Green II (Ionic form) is a fluorescent nucleic acid dye that mainly binds single-stranded nucleotides. SYBR Green II is sensitive to oligonucleotides or larger nucleic acid polymers in a variety of cells and gels. SYBR Green II can be used to study cell structure, membrane integrity or function, and cell cycle distribution. Wavelength 484/515 nm .
    SYBR Green II (Ionic form)
  • HY-E70091

    DNA/RNA Synthesis Others
    T4 RNA ligase is an ATP-dependent RNA ligase that can catalyze the formation of phosphodiester bonds between the 5'-P end and the 3'-OH end of single-stranded RNA, single-stranded DNA or single nucleotides between molecules or within molecules. T4 RNA ligase is used for enzymatic low ribonucleotide synthesis and 3′ end labeling of RNA. It is mainly used for RNA and RNA, but can also be used for RNA and single nucleotides .
    T4 RNA ligase
  • HY-160230

    Toll-like Receptor (TLR) Infection
    ssRNA41 sodium is a 20-mer phosphothioate protected single-stranded RNA oligonucleotide. It derives from ssRNA40 by replacement of all U nucleotides with adenosine. ssRNA41 sodium is unable to induce the production of type IFNs, and therefore can be used as a negative control for ssRNA40 .
    ssRNA41 sodium
  • HY-160231

    Toll-like Receptor (TLR) Inflammation/Immunology
    ssRNA42 (sodium) is a 20-mer phosphothioate protected single-stranded RNA oligonucleotide. ssRNA42 (sodium) derives from ssRNA40 by replacement of all G nucleotides with adenosine. ssRNA42 activated human PBMCs to secrete IFN-α, TNF-a, IL- 12p40, and IL-6, but ssRNA42 failed to stimulated murine pDCs and PBMCs.
    ssRNA42 sodium

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