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A549 xenograft model

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21

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Peptides

4

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-156110

    Insulin Receptor Cancer
    IGF2BP1-IN-1 (Compound A11) is a IGF2BP1 inhibitor and inhibits downstream signaling. IGF2BP1-IN-1 binds to IGF2BP1 protein with a KD value of 2.88 nM. IGF2BP1-IN-1 inhibits cancer cells proliferation (IC50: 9 nM for A549 cell, 34 nM for HCT116). IGF2BP1-IN-1 induces cancer cell apoptosis. GF2BP1-IN-1 inhibits tumor growth in A549 xenograft mouse model .
    IGF2BP1-IN-1
  • HY-12757
    YHO-13177
    2 Publications Verification

    BCRP Cancer
    YHO-13177, a acrylonitrile derivative, is an orally active, potent and specific inhibitor of breast cancer resistance protein (BCRP) and ABCG2 with an IC50 value of 10 nM. YHO-13177 potentiates the cytotoxicity of SN-38 in HCT116 and A549 cells that express BCRP. YHO-13177 combined with Irinotecan (HY-16562) significantly suppresses the tumor growth in an HCT116/BCRP xenograft model .
    YHO-13177
  • HY-146462

    Apoptosis ROS Kinase Cancer
    Anticancer agent 59 (compound 11) has inhibitory activity against kinds of cancer cell lines, especially in A549 with IC50 of 0.2 μM. Anticancer agent 59 induces apoptosis and an increase of Ca 2+ and ROS in cancer cells. Anticancer agent 59 significantly decreases mitochondrial membrane potential. Anticancer agent 59 can suppress tumor growth in A549 mouse xenograft model .
    Anticancer agent 59
  • HY-168300

    Reactive Oxygen Species Apoptosis Inflammation/Immunology Cancer
    Antiangiogenic agent 7 (Compound 1) can induce cell apoptosis, increase Reactive Oxygen Species, and inhibit the intracellular enzyme thioredoxin reductase. Antiangiogenic agent 7 has anti-cancer activity, with an IC50 of 0.08-3.5 μM against cervical cancer cells HeLa, prostate cancer cells PC-3, and non-small cell lung cancer A549. Antiangiogenic agent 7 inhibits tumor growth in mouse xenograft models .
    Antiangiogenic agent 7
  • HY-146461

    Apoptosis Caspase ROS Kinase Cancer
    Anticancer agent 58 (compound 16) has inhibitory activity against kinds of cancer cell lines, especially in A549 and T24 with IC50s of 0.6 μM and 0.7 μM, respectively. Anticancer agent 58 induces apoptosis by activating caspase 3/8/9 activity, and induces an increase of Ca 2+ and ROS in cancer cells. Anticancer agent 58 significantly decreases mitochondrial membrane potential. Anticancer agent 58 can suppress tumor growth in T24 mouse xenograft model .
    Anticancer agent 58
  • HY-149352

    Thymidylate Synthase Cancer
    DG1 (Compound 8Nc) is a Thymidylate Synthase (TS) inhibitor that affects cancer angiogenesis and metabolic reprogramming in NSCLC cells. DG1 can effectively inhibit the expression of CD26, ET-1, FGF-1 and EGF. DG1 also effectively inhibits the proliferation of cancer tissue in the A549 xenograft mouse model .
    DG1
  • HY-158156

    NF-κB Apoptosis Cancer
    NF-κB-IN-16 (compound 9) is a complex (Pt(IV) complex) of NF-κB inhibitor and Cisplatin (HY-17394), which has high efficacy and low toxicity in anti-tumor activity. active. NF-κB-IN-16 can cause DNA damage, induce mitochondrial dysfunction, produce reactive oxygen species, and induce apoptosis through the mitochondrial pathway and endoplasmic reticulum stress. NF-κB-IN-16 potently inhibits the NF-κB/MAPK signaling pathway and disrupts PI3K/AKT signaling. NF-κB-IN-16 also exhibits excellent in vivo antitumor efficiency and low toxicity in A549 or A549/CDDP xenograft models .
    NF-κB-IN-16
  • HY-161628

    Topoisomerase Cancer
    Tapcin is a dual inhibitor for topoisomerase I and topoisomerase II, with IC50 of 203 and 71 nM. Tapcin inhibits proliferations of cancer cells A-375, HeLa, Huh7.5, U2-OS, A549, Caco-2 and HT29, with IC50s of 441, 1.04, 40.5, 0.002, 0.006, 0.287 and 0.842 nM, respectively. Tapcin exhibits antitumor activity in HT29 xenograft model .
    Tapcin
  • HY-146432

    Apoptosis Raf Ras ROS Kinase MDM-2/p53 Cancer
    Antitumor agent-60 (compound 20) is a potent antitumor agent, targeting RAS-RAF signaling pathway and binding to CRAF with a Kd value of 3.93 μM. Antitumor agent-60 induces apoptosis by blocking cell cycle at G2/M phase. Antitumor agent-60 enhances the level of p53 and ROS. Antitumor agent-60 causes oval and irregular nucleus in cancer cells. Antitumor agent-60 can suppress the growth of tumor to some extent in A549 xenograft model .
    Antitumor agent-60
  • HY-P10819

    Histone Demethylase Apoptosis Cancer
    S9-CMC1 TFA is a covalent peptide lysine-specific demethylase 1 (LSD1) inhibitor with an IC50 value of 2.53 μM. S9-CMC1 TFA specifically recognizes Cys360 in the enzyme-active region. S9-CMC1 TFA inhibits LSD1 activity, increasing H3K4me1 and H3K4me2 levels, leading to G1 cell cycle arrest and apoptosis and inhibiting cell proliferation. S9-CMC1 TFA significantly inhibits tumor growth in A549 xenograft animal models .
    S9-CMC1 TFA
  • HY-170968

    EGFR Apoptosis Cancer
    EGFR-IN-150 is an EGFR inhibitor that effectively suppresses the phosphorylation of mutant epidermal growth factor receptor (EGFR) and its downstream AKT signaling pathway, thereby exerting antitumor effects and inducing HMOX1 expression to trigger ferroptosis. EGFR-IN-150 exhibits an IC50 of 0.386 μM against the non-small cell lung cancer (NSCLC) cell line H1975, and significantly inhibits colony formation and migration of both H1975 and A549 cells while inducing apoptosis. In addition, EGFR-IN-150 markedly suppresses tumor growth in the H1975 cell-derived xenograft (CDX) mouse model. EGFR-IN-150 holds promise for research related to non-small cell lung cancer .
    EGFR-IN-150
  • HY-145828

    Microtubule/Tubulin Ferroptosis Cancer
    Microtubule inhibitor 2 is a potent and selective, orally active microtubule inhibitor. Microtubule inhibitor 2 triggers cell death through ferroptosis . Microtubule inhibitor 2 shows antitumor activity .
    Microtubule inhibitor 2
  • HY-156568

    PROTACs Epigenetic Reader Domain Cancer
    SMD-3040 is a potent and selective SMARCA2 PROTAC degrader (DC50: 12 nM; Dmax: 91%). SMD-3040 can inhibit tumor cell proliferation and exhibits antitumor activity. SMD-3040 can be used in the study of tumors such as melanoma . (SMARCA2/4-ligand (HY-171765); HY-112078 VHL ligand (HY-112078))
    SMD-3040
  • HY-156568A

    PROTACs Epigenetic Reader Domain Cancer
    SMD-3040 TFA is a potent and selective SMARCA2 PROTAC degrader (DC50: 12 nM; Dmax: 91%). SMD-3040 TFA can inhibit tumor cell proliferation and exhibits antitumor activity. SMD-3040 TFA can be used in the study of tumors such as melanoma . (SMARCA2/4-ligand (HY-171765); HY-112078 VHL ligand (HY-112078))
    SMD-3040 TFA
  • HY-156568B

    PROTACs Epigenetic Reader Domain Cancer
    SMD-3040 formate is a potent and selective SMARCA2 PROTAC degrader (DC50: 12 nM; Dmax: 91%). SMD-3040 formate can inhibit tumor cell proliferation and exhibits antitumor activity. SMD-3040 formate can be used in the study of tumors such as melanoma . (SMARCA2/4-ligand (HY-171765); HY-112078 VHL ligand (HY-112078))
    SMD-3040 formate
  • HY-149410

    Topoisomerase Cancer
    MSN8C, an analog of mansonone E, is a novel catalytic inhibitor of human DNA topoisomerase II. MSN8C induces cancer cell apoptosis. MSN8C shows significant anti-tumor cell proliferation activity in vitro .
    MSN8C
  • HY-N2150

    HDAC DNA Methyltransferase DNA/RNA Synthesis Bacterial Aminopeptidase Farnesyl Transferase PPAR Apoptosis Infection Inflammation/Immunology Cancer
    Psammaplin A is a marine metabolite. Psammaplin A is a selective HDAC1 (IC50: 45 nM), DNA methyltransferases (IC50: 18.6 nM) and aminopeptidase N (APN) (IC50: 18 μM) inhibitor. Psammaplin A also inhibits DNA topoisomerase and farnesyl protein transferase. Psammaplin A is a PPARγ activator and induces apoptosis. Psammaplin A has antitumor and anti-inflammatory activities. Psammaplin A has antibacterial activity against Gram-positive bacteria and inhibits DNA synthesis and DNA gyrase activity. Psammaplin A inhibits angiogenesis .
    Psammaplin A
  • HY-115941

    HDAC Microtubule/Tubulin Apoptosis Cancer
    HDAC-IN-9 is a potent and selective tubulin and HDAC dual inhibitor. HDAC-IN-9 inhibits the invasion and migration of A549 cells. HDAC-IN-9 shows potent antitumor and antiangiogenic effect in vitro and in vivo .
    HDAC-IN-9
  • HY-N3980R

    Autophagy RAD51 Infection Cardiovascular Disease Inflammation/Immunology Cancer
    Guaiol (Standard) is the analytical standard of Guaiol. This product is intended for research and analytical applications. Guaiol is a sesquiterpenoid alcohol with oral activity found in various traditional Chinese medicines, exhibiting biological activities such as anti-proliferative, autophagy-promoting, insecticidal, anti-anxiety, anti-inflammatory, diuretic, and blood pressure-lowering effects. Guaiol induces apoptosis in non-small cell lung cancer cells by regulating the stability of RAD51 through autophagy modulation. Guaiol can also act directly on parasites, inhibiting their growth by affecting the kinetoplast, mitochondrial matrix and plasma membrane of the promastigotes. Guaiol kills amastigotes at an IC50 of 0.01 µg/mL. Guaiol can be used in research related to cancer, infections, cardiovascular diseases, and inflammatory conditions [4]
    Guaiol (Standard)
  • HY-N10447

    Apoptosis Cancer
    Kurzipene D (compound 4) is a potent anticancer agent. Kurzipene D induces the apoptosis and arrested the HepG2 cell cycle at S stage. Kurzipene D shows anti-tumor effects using in vivo zebrafish model. Kurzipene D has the property of inhibiting tumor proliferation and migration .
    Kurzipene D
  • HY-N3980

    Champacol; Guaiac alcohol

    Autophagy RAD51 Infection Cardiovascular Disease Inflammation/Immunology Cancer
    Guaiol is a sesquiterpenoid alcohol with oral activity found in various traditional Chinese medicines, exhibiting biological activities such as anti-proliferative, autophagy-promoting, insecticidal, anti-anxiety, anti-inflammatory, diuretic, and blood pressure-lowering effects. Guaiol induces apoptosis in non-small cell lung cancer cells by regulating the stability of RAD51 through autophagy modulation. Guaiol can also act directly on parasites, inhibiting their growth by affecting the kinetoplast, mitochondrial matrix and plasma membrane of the promastigotes. Guaiol kills amastigotes at an IC50 of 0.01 µg/mL. Guaiol can be used in research related to cancer, infections, cardiovascular diseases, and inflammatory conditions [4]
    Guaiol

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