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Results for "

editing

" in MedChemExpress (MCE) Product Catalog:

18

Inhibitors & Agonists

3

Biochemical Assay Reagents

2

Peptides

3

MCE Kits

2

Recombinant Proteins

5

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-150279
    PolQi2
    1 Publications Verification

    DNA/RNA Synthesis Others
    PolQi2 is a PolΘ inhibitor that targets and inhibits alt-EJ (alternative end-joining) repair by inhibiting the helicase domain at the N-terminus of PolΘ. PolQi2 enhances the precision and integration efficiency of gene editing at different loci and in various cell lines. Furthermore, the combined use of PolQi2 with DNA-PK inhibitors reduces the off-target effects of Cas9. PolQi2 can be used in gene editing research .
    PolQi2
  • HY-115686
    8-Azaadenosine
    3 Publications Verification

    Adenosine Deaminase Inflammation/Immunology Cancer
    8-Azaadenosine is a potent ADAR1 inhibitor and an A-to-I editing inhibitor. 8-Azaadenosine blocks RNA editing and inhibits proliferation, 3D growth, invasion, and migration in thyroid cancer cells .
    8-Azaadenosine
  • HY-159078

    DNA/RNA Synthesis Cancer
    PolQi1 is a selective inhibitor targeting the Polθ domain of DNA polymerase. PolQi1 inhibits the Polθ-mediated microhomology end joining (TMEJ/alt-EJ) pathway, reducing insertion/deletion (Indels) and imprecise editing events during DNA repair. PolQi1 can enhance the efficiency and accuracy of homology-directed repair (HDR) or Prime editing, and reduce off-target effects; and in combination with DNA-PK inhibitor AZD-7648 (HY-111783), exert efficient genome editing capabilities with dual pathway regulation. PolQi1 can be mainly used in gene editing research (such as CRISPR-Cas9 or Prime editing system optimization) to improve the precision editing efficiency of difficult-to-edit cells (such as primary hepatocytes and mouse embryos) .
    PolQi1
  • HY-139306

    Liposome Inflammation/Immunology
    BAMEAO16B is a lipid nanoparticle. BAMEAO16B integrated with disulfide bonds, can efficiently deliver Cas9 mRNA and sgRNA into cells while releasing RNA in response to the reductive intracellular environment for genome editing. BAMEAO16B can be used for the research of gene editing .
    BAMEA-O16B
  • HY-19334
    L755507
    1 Publications Verification

    Adrenergic Receptor Endocrinology Cancer
    L755507 is a potent, selective agonist of β3-AR with an IC50 of 35 nM. L755507 enhances the homology-directed repair (HDR)-mediated genome editing .
    L755507
  • HY-156257

    DNA/RNA Synthesis Cancer
    UNC9512 is a potent methyl-lysine reader p53 binding protein 1 (53BP1) antagonist. UNC9512 can be used to study the role of 53BP1 in DNA repair, gene editing and tumorigenesis .
    UNC9512
  • HY-145692

    Bacterial Others
    Cas9-IN-3 is a potent Cas9 inhibitor (IC50=28 μM) .
    Cas9-IN-3
  • HY-153138

    Biochemical Assay Reagents Others
    FTT5 LLNs are functionalized lipid-like nanoparticles for in vivo mRNA delivery and base editing .
    FTT5 LLNs
  • HY-E70220

    Biochemical Assay Reagents Others
    AsCas12a Nuclease is a nuclease, and can specifically cutting double-stranded DNA. AsCas12a Nuclease can be used for gene edited study .
    AsCas12a Nuclease
  • HY-165604

    Liposome Others
    C14-490, an ionizable cationic lipid (pKa = 5.94), is used for the synthesis of lipid nanoparticles (LNPs). C14-490 LNPs is used as the basis for subsequent study of in utero gene editing in HSCs. C14-490 LNPs are used to encapsulate SpCas9 mRNA and TTR sgRNA using optimized B5 formulation parameters and surface conjugation to CD45 antibody F(ab’)2 fragments-Systematically optimized Targeted Editing Machinery LNPs (STEM LNPs) .
    C14-490
  • HY-W010744

    5'-O-DMT-dI; 2'-Deoxy-5'-O-DMT-inosine

    Nucleoside Antimetabolite/Analog Others
    DMT-dI (5'-O-DMT-dI) is a deoxyribonucleoside containing a hypoxanthine base. DMT-dI can be used to prepare convertible nucleoside derivatives to prepare modified oligonucleotides complementary to target genes for gene editing. DMT-dI can be used to study various conditions, disorders or diseases modified by adenosine .
    DMT-dI
  • HY-145442

    Adenosine Deaminase Others
    8-Azanebularine, a compound with hydrogen in place of the C6 amino group, inhibits the ADAR2 reaction at high concentrations (IC50=15 mM). 8-Azanebularine is incorporated into an RNA structure recognized by human ADAR2 results in high-affinity binding (KD=2 nM). 8-Azanebularine can be used for the research of ADAR-catalyzed RNA-editing reaction .
    8-Azanebularine
  • HY-136251

    Bacterial Infection
    BRD0539 is a Streptococcus pyogenes Cas9 (SpCas9) inhibitor with an IC50 of 22 μM in an in vitro DNA cleavage assay .
    BRD0539
  • HY-P5307

    INF7-A5K-TAT

    Biochemical Assay Reagents Others
    Peptide A5K (INF7-A5K-TAT) is an amphiphilic peptide derived from the HA2-TAT fusion scaffold. Peptide A5K can non-covalently bind to CRISPR ribonucleoproteins and efficiently deliver them to cells, such as primary human T cells, B cells, and NK cells. Peptide A5K enables low-toxicity, precise, and multiplex genome editing, holding great application potential in the field of cell therapy .
    Peptide A5K
  • HY-P5307A

    INF7-A5K-TAT acetate

    Biochemical Assay Reagents Others
    Peptide A5K (INF7-A5K-TAT) acetate is an amphiphilic peptide derived from the HA2-TAT fusion scaffold. Peptide A5K acetate can non-covalently bind to CRISPR ribonucleoproteins and efficiently deliver them to cells, such as primary human T cells, B cells, and NK cells. Peptide A5K acetate enables low-toxicity, precise, and multiplex genome editing, holding great application potential in the field of cell therapy .
    Peptide A5K acetate
  • HY-145795

    Liposome Others
    OF-02 is an ionizable lipid for mRNA delivery and a key component of lipid nanoparticles (LNPs). OF-02 is protonated in the acidic endosomal environment to promote endosomal escape of mRNA and efficiently induce protein expression in target cells. OF-02 relies on the pH-responsive membrane fusion properties to form a complex with mRNA and destroy the endosomal membrane structure to achieve mRNA release in the cytoplasm. OF-02 is mainly used in the development of mRNA vaccines, gene editing, and protein replacement therapy[1][2][3].
    OF-02
  • HY-150229

    Liposome Cancer
    306-N16B is a selective lung-targeted lipid nanoparticle that reversibly targets lung endothelial cells and specific immune cells through selective adsorption of a protein corona mediated by differences in tail structure (such as fibrinogen β/γ chain). 306-N16B binds to specific plasma proteins in the blood to form a protein corona, which guides the particles to be enriched in the lungs, releases mRNA and promotes target cell gene expression, exerts efficient lung cell transfection activity, and can precisely regulate gene delivery of different cell types in the lungs (such as endothelial cells and macrophages). 306-N16B can be used in gene therapy technologies for hereditary lung diseases including pulmonary lymphangioleiomyomatosis (LAM), restoring tumor suppressor function by delivering Tsc2 mRNA, and can also be used for lung-specific mRNA vaccines and gene editing therapies .
    306-N16B
  • HY-165603

    Liposome VEGFR FGFR Cardiovascular Disease Inflammation/Immunology Cancer
    Si5-N14 is a key component of siloxane-incorporated lipid nanoparticles (SiLNP), possessing pro-vascular repair and anti-tumor activities. In the transgenic GFP mouse model, Si5-N14 can mediate CRISPR-Cas9 editing. In the Lewis lung carcinoma (LLC) tumor-bearing mouse model, Si5-N14 can knock out the expression of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2) to exert an anti-tumor effect. In a mouse model of lung injury induced by viral infection, the delivery of Fibroblast Growth Factor-2 (FGF-2) mRNA via Si5-N14 can promote vascular repair, increase blood oxygen levels, and improve lung function. Si5-N14 shows promise for research in the fields of oncology, pneumonia, and cardiovascular diseases .
    Si5-N14

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