13 Results for "

zebrafish xenograft models

" in MedChemExpress (MCE) Product Catalog:
Products (13)

13 Results for "zebrafish xenograft models" in MCE Product Catalog:

Cat. No.: HY-115941
Research Areas:  

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 .
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Cat. No.: HY-W504391
CAS No.: 804-36-4
Synonyms: Difurazon
Nitrovin (Difurazon) is a thioredoxin reductase 1 (TrxR1) inhibitor with both antibacterial and anticancer activities. Nitrovin interacts with TrxR1 to generate reactive oxygen species (ROS), which in turn induces cytoplasmic vacuolization, activates MAPK and inhibits Alix. Nitrovin induces paraptosis-like non-apoptotic cell death, thereby exerting significant cytotoxicity against cancer cells. Nitrovin can be used in the research of heart disease and glioblastoma multiforme .
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Cat. No.: HY-175828
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

DHPS-IN-2 is an allosteric deoxyhypusine synthase (DHPS) inhibitor with an IC50 of 70 nM and a Kd of 26.4 μM. DHPS-IN-2 significantly suppresses melanoma cell migration and invasiveness in vitro and exhibits potent anti-tumor efficacy in an A375 cell zebrafish xenograft model. DHPS-IN-2 can be used for the study of melanoma .
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Cat. No.: HY-161301
CAS No.: 3030012-25-7
Target:  

PI3K

Research Areas:  

Cancer

PI3K-IN-52 (compound cis 6g) is a potent inhibitor of PI3K, with IC50 of 0.23 μM in HGC-27 cells. PI3K-IN-52 plays an important role in cancer research[1].
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Cat. No.: HY-174321
CAS No.: 2834742-70-8
Target:  

p38 MAPK PI3K Akt NF-κB

Research Areas:  

Cancer

A2073 is a flavagline derivative that potently inhibits the proliferation of erythroleukemia cells by causing cell cycle arrest and suppressing the MAPK, NF-κB, and PI3K signaling pathways. A2073 formes stable interactions with cell cycle-related proteins (CDK1, CCNA2, PRIM1). A2073 exhibits significant anti-proliferative activity against tumor cells while maintaining a favorable toxicity profile in a zebrafish xenograft tumor model. A2073 can be used for the study of acute erythroleukemia.
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Cat. No.: HY-N10447
CAS No.: 2522596-01-4
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 .
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Cat. No.: HY-181491
Research Areas:  

Cancer

Tubulin-IN-64 is a sulfonated styrylquinazoline derivative with high selectivity antitumor activity. Tubulin-IN-64 targets tubulin, inhibits the EGFR/Akt/mTOR and EGFR/Ras signaling pathways, induces cell cycle arrest, apoptosis and autophagy. Tubulin-IN-64 exhibits significant antitumor efficacy in the zebrafish GBM xenograft model. Tubulin-IN-64 can be used for the research on glioblastoma and leukemia .
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Cat. No.: HY-181076
Target:  

FOXM1 PI3K CDK Apoptosis

Research Areas:  

Cancer

FOXM1-IN-3 is a potent FOXM1 inhibitor. FOXM1-IN-3 downregulates FOXM1 expression at protein and mRNA levels, suppressing downstream effectors CCNB1 and CDC25. FOXM1-IN-3 induces G2/M cell cycle arrest and apoptosis in colorectal cancer cells. FOXM1-IN-3 inhibits colony formation and cell migration in colorectal cancer cells. FOXM1-IN-3 targets the cancer stem cell phenotype in colorectal cancer cells, reducing cancer stem cell marker expression. FOXM1-IN-3 reduces tumor growth in a zebrafish xenograft model. FOXM1-IN-3 can be used for the research of colorectal cancer .
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Cat. No.: HY-187191
Autophagy-IN/Ferroptosis inducer-modulator-1 is a dual-functional molecule that acts as an Autophagy inhibitor and a Ferroptosis inducer. Autophagy-IN/Ferroptosis inducer-modulator-1 downregulates GPX4 expression, elevates ROS levels and reduces mitochondrial membrane potential. Autophagy-IN/Ferroptosis inducer-modulator-1 arrests the cell cycle of non-small cell lung cancer (NSCLC) cells, induces mild apoptosis and inhibits autophagy. Autophagy inhibition induced by Autophagy-IN/Ferroptosis inducer-modulator-1 acts upstream of ferroptosis to produce a synergistic effect. Autophagy-IN/Ferroptosis inducer-modulator-1 exhibits anti-tumor activity against both human tumor cells and zebrafish xenograft models. Autophagy-IN/Ferroptosis inducer-modulator-1 can be used for research related to non-small cell lung cancer .
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Cat. No.: HY-182672
CAS No.: 65194-64-1
Target:  

YAP

Research Areas:  

Cancer

VT101 is a TEAD inhibitor with an IC50 of 454 nM. VT101 is applicable for cancer research .
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Cat. No.: HY-181071
Research Areas:  

Cancer

POLRMT-IN-3 is a photosensitive inhibitor of mitochondrial RNA polymerase (POLRMT). POLRMT-IN-3 is biologically inactive in the dark but rapidly releases the active parent compound LJ03 upon illumination with 405 nm light, enabling spatiotemporally precise inhibition of POLRMT. POLRMT-IN-3 exhibits antitumor activity and can be used in research on tumors such as pancreatic cancer and ovarian cancer .
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Cat. No.: HY-184737
TPP-C8-CO-DSG bromide is a derivative of Diosgenin (HY-N0177) and an anticancer agent. TPP-C8-CO-DSG bromide downregulates Bcl-2 expression and upregulates Bax expression. TPP-C8-CO-DSG bromide promotes the cleavage of Caspase 9, Caspase 3 and PARP-1. TPP-C8-CO-DSG bromide depolarizes mitochondrial membrane potential, reduces intracellular ATP production, and induces intracellular ROS accumulation. TPP-C8-CO-DSG bromide promotes Apoptosis. TPP-C8-CO-DSG bromide exhibits anticancer activity against prostate cancer, breast cancer, lung adenocarcinoma, cervical cancer and colorectal cancer. TPP-C8-CO-DSG bromide can be used in the research of cervical cancer .
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Cat. No.: HY-N17406
CAS No.: 244303-77-3
Dankasterone A is a secondary metabolite. Dankasterone A can be derived from the Fungus Talaromyces purpurogenu. Dankasterone A upregulates HO-1 protein expression, induces Apoptosis, induces excessive ROS production. Dankasterone A has anti-cancer activity against prostate cancer .
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