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Results for "

oncogenic mRNAs

" in MedChemExpress (MCE) Product Catalog:

8

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Peptides

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Natural
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2

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-124447

    IGF-1R c-Myc Apoptosis TGF-beta/Smad Cancer
    BTYNB is a structure-specific nucleic acid binder and IGF2BP1 inhibitor (with an IC50 of 5 μM against hBTYNB). BTYNB disrupts the IGF2BP1-RNA interaction and blocks its binding to oncogenic mRNAs such as c-Myc, MDM2, PD-L1. BTYNB completely blocks the INHBA-Smad2/3 pathway, disrupts the MYCN/IGF2BP1 loop, and thereby induces apoptosis and cell cycle arrest, effectively inhibiting the proliferation and survival of cancer cells. In addition, BTYNB acts as an immune activator and tumor microenvironment modulator, enhances T cell-mediated tumor killing, and produces significant synergistic effects with inhibitors of PD-1, BRD and BIRC5. BTYNB can be used in relevant research on various malignant tumors including ovarian cancer, neuroblastoma, leukemia and melanoma .
    BTYNB
  • HY-N3415
    Kumatakenin
    1 Publications Verification

    Apoptosis Autophagy Caspase Ferroptosis SARS-CoV Neurological Disease Inflammation/Immunology Cancer
    Kumatakenin is an orally active apoptosis inducer and autophagy inhibitor, with a Kd value of 2.94 μM for mouse ATG5. Kumatakenin increases the activities of caspase-3, caspase-8 and caspase-9, thereby inducing caspase-dependent apoptosis in ovarian cancer cells. Kumatakenin reduces the expression of chemokines and pro-oncogenic factors in ovarian cancer cells, and inhibits M2 macrophage polarization. Kumatakenin inactivates TRIM65 function, reduces the expression and stability of FASN, and thus inhibits the proliferation, migration, invasion and tumor progression of esophageal cancer cells. Kumatakenin interacts with ATG5 to reduce its protein level, decrease LC3 level, and reduce the number of autophagosomes in the hippocampus. Kumatakenin binds to Eno3 to upregulate its expression, reduce the stability and expression level of IRP1 mRNA, inhibit ferroptosis, alleviate intestinal inflammation, and restore epithelial barrier function. Kumatakenin enhances the efficacy of antibiotics against pathogenic bacteria, inhibits SARS-CoV-2 replication, and reduces cytokine production. Kumatakenin is applicable to research related to ovarian cancer, esophageal cancer, depression and colitis .
    Kumatakenin
  • HY-147426

    ADS-007; ARO HIF2

    Small Interfering RNA (siRNA) HIF/HIF Prolyl-Hydroxylase Cancer
    Zifcasiran (ADS-007; ARO HIF2) is an siRNA synthetic double-stranded RNAi trigger. Zifcasiran sodium selectively target hypoxia-inducible factor-2α (HIF2α) interrupting downstream pro-oncogenic signaling in clear cell renal cell carcinoma (ccRCC). Zifcasiran sodium engages the cell's RNAi machinery to target HIF2α (EPAS1) mRNA for degradation, thereby reducing the amount of free HIF2α mRNA available for translation .
    Zifcasiran
  • HY-124844

    AZA-9

    HuR Cancer
    Azaphilone-9 (AZA-9) is an inhibitor of HuR-ARE RNA interaction (IC50=1.2 μM) by binding RNA-binding protein Hu antigen R (HuR). The HuR-RNA interactions stabilize many oncogenic mRNAs in tumors. Thus Azaphilone-9 potentially inhibit cancer cell growth and progression .
    Azaphilone-9
  • HY-147426A

    ADS-007 sodium; ARO HIF2 sodium

    Small Interfering RNA (siRNA) HIF/HIF Prolyl-Hydroxylase Cancer
    Zifcasiran (ADS-007) sodium is an siRNA synthetic double-stranded RNAi trigger. Zifcasiran sodium selectively target hypoxia-inducible factor-2α (HIF2α) interrupting downstream pro-oncogenic signaling in clear cell renal cell carcinoma (ccRCC). Zifcasiran sodium engages the cell's RNAi machinery to target HIF2α (EPAS1) mRNA for degradation, thereby reducing the amount of free HIF2α mRNA available for translation .
    Zifcasiran sodium
  • HY-181963

    DNA Methyltransferase PI3K Akt p38 MAPK ERK Cancer
    ZINC-1000507824 is a non-covalent reversible RNA cytosine-5 methyltransferase NSUN2 inhibitor. ZINC-1000507824 targets the SAM cofactor binding pocket of NSUN2 and forms stable NSUN2-ligand complexes. ZINC-1000507824 destabilizes oncogenic mRNAs encoding PI3K/AKT and MAPK/ERK pathway components, attenuates growth signals, reduces proliferative drive, and restores therapy sensitivity in cancer cells. ZINC-1000507824 can be used for the research of NSUN2-driven malignancies .
    ZINC-1000507824
  • HY-181962

    RNA MTase Cancer
    ZINC-1000507789 is a non-covalent and reversible RNA cytosine-5 methyltransferase NSUN2 inhibitor. ZINC-1000507789 is applicable to the research of NSUN2-driven malignancies .
    ZINC-1000507789
  • HY-P11698

    DNA Alkylator/Crosslinker Transthyretin (TTR) Cancer
    Guanidino-G-Clamp-PNA is a highly efficient sequence-specific RNA binder and gene silencer. Guanidino-G-Clamp-PNA precisely targets such targets as miR-155 or transthyretin (TTR) mRNA through base pairing: the former regulates tumor-related signaling pathways by reducing microRNA activity, while the latter inhibits the translation of harmful proteins via steric hindrance. Guanidino-G-Clamp-PNA effectively stabilizes DNA/RNA duplexes, induces cancer cell apoptosis, and suppresses tumor growth. In addition, Guanidino-G-Clamp-PNA can be conjugated with targeting ligands to improve tissue-specific delivery and reduce in vivo adverse reactions, and it can also enhance the splicing regulation efficacy of other oligonucleotide platforms (such as PMO) when integrated into them. Guanidino-G-Clamp-PNA is applicable to the research of various diseases including diffuse large B-cell lymphoma and hereditary transthyretin-related amyloidosis .
    Guanidino-G-Clamp-PNA

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