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Results for "

tumor stroma

" in MedChemExpress (MCE) Product Catalog:

6

Inhibitors & Agonists

3

Peptides

1

Inhibitory Antibodies

1

Recombinant Proteins

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P4111A

    CXCR Cancer
    Peptide R (TFA) is a synthetic and specific CXCR4 antagonist. Peptide R (TFA) shows outstanding capacities to remodel the tumor stroma. Peptide R (TFA) can be used for solid tumor (glioblastoma, etc.) research .
    Peptide R TFA
  • HY-P9974

    OMP-18R5

    Wnt Cancer
    Vantictumab (OMP-18R5) is a fully human IgG2 monoclonal antibody. Vantictumab inhibits Wnt pathway signaling by binding to FZD1/2/5/7/8 receptors. Vantictumab can be studied against cancers through direct actions on tumor cells, including CSCs, and effects on the stroma, such as metastatic HER2-negative breast cancer and metastatic pancreatic adenocarcinoma .
    Vantictumab
  • HY-P4111

    CXCR Cancer
    Peptide R, a cyclic peptide, is a specific CXCR4 antagonist. Peptide R shows outstanding capacities to profoundly remodel the tumor stroma. Peptide R has the potential for tumor research .
    Peptide R
  • HY-120499

    Hedgehog Smo Cancer
    AZD8542 is an antagonist of Smoothened (SMO), playing an important role in oncology. AZD8542 is a? Hedgehog (Hh) pathway antagonist on tumor progression with an emphasis on the role of the stroma compartment .
    AZD8542
  • HY-P10869

    Natriuretic Peptide Receptor (NPR) Inflammation/Immunology Cancer
    dCNP binds to NPR-B/C receptor, activates cGMP signaling pathway, and regulates vascular function. dCNP exhibits anti-hypoxia property through downregulation of hypoxia-related genes expressions like HIF1α and HIF2α. dCNP inhibits the induction of tumor stroma and exhibits anti-fibrosis activity. dCNP upregulates CTLs, NK cells, and conventional type 1 dendritic cells in tumors, and activates immune responses .
    dCNP
  • HY-170779

    FAP Cancer
    DOTA-NI-FAPI-04 is a FAP inhibitor (IC50 = 7.44 nM). By integrating FAP targeting with hypoxia-sensitive groups (nitroimidazole), DOTA-NI-FAPI-04 significantly enhances tumor uptake and retention capabilities. DOTA-NI-FAPI-04 chelates metallic isotopes (such as 68Ga and 177Lu) through DOTA to produce radioactive probes ([ 68Ga]Ga/DOTA-NI-FAPI-04 and [ 177Lu]Lu/DOTA-NI-FAPI-04), which can be used for research in tumor diagnostics and therapeutic agents. DOTA-NI-FAPI-04 holds dual targeting potential in the fields of cancer imaging, tumor microenvironment analysis, and radionuclide therapy, particularly suitable for scenarios where the tumor stroma and hypoxic regions synergistically interact .
    DOTA-NI-FAPI-04

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