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tumor stasis

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

1

Inhibitory Antibodies

1

Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P990688

    AMG-509

    CD3 Cancer
    Xaluritamig (AMG-509) is a bispecific T cell engager and cytolytic agent with a Kd of 27.6 nM for human CD3ε. Xaluritamig binds to CD3ε via an anti-CD3 single-chain variable fragment (scFv) domain, and to STEAP1 via a bispecific anti-STEAP1 antigen-binding fragment (Fab) domain, thereby recruiting and activating T cells and forming a bridge between T cells and STEAP1-expressing cancer cells. Xaluritamig induces T cell-mediated redirected cytotoxicity, tumor cell lysis, cytokine release, CD8 + T cell activation and expansion, as well as tumor stasis or regression. Xaluritamig contains an Fc domain with no effector function, which prolongs serum half-life, exhibits only minimal activity against cells with low STEAP1 expression and normal cells, and shows extremely low target-related off-tumor toxicity in cynomolgus monkeys. Xaluritamig is used in STEAP1×CD3 XmAb 2+1 immunotherapy and in research on metastatic castration-resistant prostate cancer and Ewing sarcoma .
    Xaluritamig
  • HY-139399
    Safimaltib
    2 Publications Verification

    JNJ-67856633

    MALT1 Cancer
    Safimaltib (JNJ-67856633) is an orally active, first-in-class, potent, selective and allosteric MALT1 protease inhibitor. Safimaltib in some cases lead to tumor stasis .
    Safimaltib
  • HY-175842

    CDK Cancer
    CDK2 degrader 7 is an orally active CDK2 degrader, with DC50 values of 13 nM (MKN1cells) and 17 nM (TOV21G cells). CDK2 degrader 7 induces G1 phase arrest in MKN1 cells. CDK2 degrader 7 achieves tumor stasis in HCC1569 (CCNE1-amplified) xenograft models. CDK2 degrader 7 can be used for the study of CCNE1-amplified cancers .
    CDK2 degrader 7
  • HY-177512

    FLAP Cancer
    MSC778 is an effective and orally active flap endonuclease 1 (FEN1) inhibitor with an IC50 of 3 nM and a KD of 2.9 nM. MSC778 exhibits 145-fold, 516-fold, and 65-fold selectivity over EXO1, GEN1, and XPG, respectively. MSC778 selectively kills BRCA2-deficient cells and potentiates the activity of Niraparib (HY-10619) to induce tumor stasis in a BRCA2 KO DLD-1 mouse xenograft. MSC778 can be used in the research of colorectal cancer .
    MSC778
  • HY-156715

    MASTL Cancer
    MASTL-IN-1 is a selective and orally active MASTL inhibitor with a Ki <0.03 nM. MASTL-IN-1 inhibits phosphorylation of ENSA and inhibits proliferation in cancer cells. MASTL-IN-1 induces tumor growth inhibition and stasis in pancreatic cancer xenograft models .
    MASTL-IN-1
  • HY-179403

    Ras Cancer
    KRASG12C IN-17 is an orally active covalent KRAS G12C inhibitor, showing strong inhibitory activity in KRAS G12C-mutant cancer cells (NCI-H23 IC50 = 0.7 nM; NCI-H358 IC50 = 0.5 nM). KRASG12C IN-17 covalently and irreversibly binds to KRAS G12C with > 96% modification efficiency in both GDP-bound and GMPPNP-bound conformations. KRASG12C IN-17 can be used for studies of KRAS-driven cancers, including colorectal cancer .
    KRASG12C IN-17
  • HY-170919

    FGFR Cancer
    FGFR2/3-IN-2 (compound 10) is an orally active FGFR2 and FGFR3 inhibitor. FGFR2/3-IN-2 inhibits FGFR2 and FGFR3 with IC50s of 3.7 nM and 31.2 nM (preincubation time 1 h), respectively. FGFR2/3-IN-2 spares FGFR1/4 and other kinases without causing diarrhea and serum phosphate elevation in vivo. FGFR2/3-IN-2 induces tumor stasis or regression in the SNU-16 gastric cancer model .
    FGFR2/3-IN-2
  • HY-186132

    PROTACs CDK Cancer
    PROTAC CDK2-pRb degrader-1 is an orally active PROTAC-class degrader of CDK2. PROTAC CDK2-pRb degrader-1 effectively inhibits the phosphorylation of retinoblastoma protein (Rb) at serine residues 807/811 by inducing ubiquitination and proteasomal degradation of CDK2. PROTAC CDK2-pRb degrader-1 exhibits significant activity against human cells (with EC50 values of 12 nM and 125 nM, respectively). In xenograft models, PROTAC CDK2-pRb degrader-1 effectively inhibits tumor growth and induces tumor stasis, making it suitable for research related to CCNE1-amplified cancers (such as ovarian cancer, gastric cancer, and breast cancer) .
    PROTAC CDK2-pRb degrader-1

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