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antisense applications

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

1

Biochemical Assay Reagents

3

Peptides

1

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W048513

    DNA/RNA Synthesis Cancer
    7-Deaza-2'-deoxyadenosine is an isosteric dATP analog of 2'-deoxyadenosine. 7-Deaza-2'-deoxyadenosine is recognized by various DNA polymerases and incorporated into DNA strands as a substrate. 7-Deaza-2'-deoxyadenosine undergoes a bioorthogonal inverse electron demand Diels-Alder reaction with tetrazine-modified molecules, enabling site-specific labeling of DNA, surface antibody immobilization and intracellular fluorescent labeling. 7-Deaza-2'-deoxyadenosine reduces the DNA curvature of d(A6)·d(T6) fragments and the stability of DNA/RNA double helices, and leads to decreased antisense activity against SV40 T Antigen. 7-Deaza-2'-deoxyadenosine finds application in the research field of SV40 T Antigen-related cancers .
    7-Deaza-2'-deoxyadenosine
  • HY-P11690

    Biochemical Assay Reagents Cancer
    Fmoc-Aeg-OBn is a benzyl-protected N-(2-aminoethyl)-glycine PNA backbone derivative. Fmoc-Aeg-OBn serves as a key intermediate for the synthesis of Fmoc-protected PNA monomers with modified nucleobases. Fmoc-Aeg-OBn can be used to prepare PNA with unique physicochemical properties, which is suitable for antisense and gene diagnostic applications. Fmoc-Aeg-OBn is applicable to cancer-related research .
    Fmoc-Aeg-OBn
  • HY-P11679

    DNA/RNA Synthesis Others
    Boc-PNA-U-OH is a protected peptide nucleic acid (PNA) monomer containing a uracil base, designed for solid-phase peptide synthesis (SPPS) using the Boc/Z protection strategy. Boc-PNA-U-OH acts as a building block in creating PNA oligomers that are neutral, stable, and used for antisense/antigene applications.
    Boc-PNA-U-OH
  • HY-P11680

    DNA/RNA Synthesis Others
    BOC-PNA-thioU(PMB)-OH is a peptide nucleic acid (PNA) monomer characterized by a PMB protecting group on its thiouracil, which enhances its binding affinity to adenine. BOC-PNA-thioU(PMB)-OH exhibits excellent resistance to enzymatic degradation and strong hybridization properties, making it valuable for applications in gene diagnosis, antisense therapy, and other molecular biology fields requiring higher binding strength and greater functionalization.
    Boc-PNA-thioU(PMB)-OH

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