42 Results for "

microtubule depolymerization

" in MedChemExpress (MCE) Product Catalog:
Products (42)

42 Results for "microtubule depolymerization" in MCE Product Catalog:

172
172 Publications Verification
Art. -Nr.: HY-B0011
CAS. Nr.: 114977-28-5
Synonyms: RP-56976
Docetaxel (RP-56976) is a microtubule depolymerization inhibitor, with an IC50 of 0.2 μM. Docetaxel attenuates the effects of bcl-2 and bcl-xL gene expression. Docetaxel arrests the cell cycle at G2/M and leads to cell apoptosis. Docetaxel has anti-cancer activity .
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172
172 Publications Verification
Art. -Nr.: HY-B0011A
CAS. Nr.: 148408-66-6
Synonyms: RP-56976 Trihydrate
Forschungsgebiete:  

Cancer

Docetaxel Trihydrate (RP-56976 Trihydrate) is an antineoplastic agent and inhibits microtubule depolymerization with an IC50 value of 0.2 μM . Docetaxel Trihydrate is a semisynthetic analog of taxol and attenuates the effects of bcl-2 and bcl-xL gene expression. Docetaxel Trihydrate arrests the cell cycle at G2/M and leads to cell apoptosis .
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4
4 Cited Publications
Art. -Nr.: HY-N0227
CAS. Nr.: 105454-04-4
Synonyms: 7-epi-Paclitaxel
7-epi-Taxol is an active metabolite of taxol, with activity comparable to that of taxol against cell replication, promoting microtubule bundle formation and against microtubule depolymerization.
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2
2 Cited Publications
Art. -Nr.: HY-N2438
CAS. Nr.: 74805-91-7
Methylophiopogonanone B is a homoisoflavonoid compound. Methylophiopogonanone B can be isolated from O. japonicus root. Methylophiopogonanone B promotes Rho activation and Tubulin depolymerization. Methylophiopogonanone B significantly increases GTP-Rho, but not GTP-Rac or GTP-CDC42. Methylophiopogonanone B induces cell morphological change via melanocyte dendrite retraction and stress fiber formation. Methylophiopogonanone B exhibits strong antioxidant activity. Methylophiopogonanone B can be used in the research of cervical cancer .
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1
1 Cited Publications
Art. -Nr.: HY-N7526
CAS. Nr.: 475-38-7
Synonyms: DHNQ; 5,8-Dihydroxy-1,4-naphthoquinone
Naphthazarin (DHNQ) is a microtubule depolymerizing agent. Naphthazarin can improve motor function and reduce neuroinflammation in mouse models of Parkinson's disease. Naphthazarin can induce tumor cell apoptosis, autophagy, and cell cycle arrest. Naphthazarin can also induce erythrocyte apoptosis. Naphthazarin can be used in the research of tumors and neurodegenerative diseases .
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1
1 Cited Publications
Art. -Nr.: HY-121993
CAS. Nr.: 109971-63-3
Reinheit:  97.03%
Target:  

Wnt Microtubule/Tubulin

Forschungsgebiete:  

Cancer

Combretastatin A-1 is a microtubule polymerization inhibitor that binds to the colchicine-binding site of tubulin. Combretastatin A-1 inhibits the Wnt/β-catenin pathway through tubulin depolymerization mediated AKT deactivation. Combretastatin A-1 exhibits anti-tumor and anti-vascular effects .
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1
1 Cited Publications
Art. -Nr.: HY-148818
CAS. Nr.: 890654-03-2
Reinheit:  99.03%
Target:  

ADC Payloads

Forschungsgebiete:  

Others

S-Me-DM4 is a metabolite of DM4 S-methylated by intracellular enzyme. DM4 (HY-100503) is a microtubule-depolymerizing maytansinoid with strong cytotoxicity. DM4 can be used as an ADC Cytotoxin molecule .
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1
1 Cited Publications
Art. -Nr.: HY-N1391
CAS. Nr.: 78432-77-6
Synonyms: 10-Deacetylpaclitaxel
10-Deacetyltaxol (10-Deacetylpaclitaxel) is a taxane derivative isolated from Taxus wallichiana Zucc . 10-Deacetyltaxol (10-Deacetylpaclitaxel) promotes the polymerization of tubulin and to inhibit the depolymerization of microtubules induced by cold or by calcium ions in vitro . 10-Deacetyltaxol (10-Deacetylpaclitaxel) exhibits cytotoxicity in human glial and neuroblastoma cell-lines .
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1
1 Cited Publications
Art. -Nr.: HY-16191
CAS. Nr.: 1233948-35-0
ELR510444 is an orally active tubulin inhibitor with an IC50 of 10 μM. ELR510444 binds to the colchicine-binding site on β-tubulin, inhibits tubulin assembly, depolymerizes microtubules and blocks HIF activity. ELR510444 induces cellular microtubule loss, abnormal mitotic spindle, mitotic arrest, apoptosis, morphological changes in tumor endothelial cells, and inhibits cancer cell proliferation, angiogenesis and tumor growth. ELR510444 can be used in research related to various cancers such as renal cell carcinoma .
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Art. -Nr.: HY-N1408
CAS. Nr.: 22255-22-7
Synonyms: trans-trismethoxy Resveratrol; (E)-Resveratrol trimethyl ether; trans-3,5,4'-Trimethoxystilbene
Trans-Trimethoxyresveratrol (trans-trismethoxy Resveratrol; (E)-Resveratrol trimethyl ether; trans-3,5,4'-Trimethoxystilbene) is an orally active natural derivative of Resveratrol (HY-16561). Trans-Trimethoxyresveratrol has an enhanced anticancer profile compared to Resveratrol, exhibiting higher potency than resveratrol, with improved cancer cell proliferation inhibition, induction of cell cycle arrest, decreased metastasis, and increased apoptosis. Trans-Trimethoxyresveratrol causes microtubule disassembling and tubulin depolymerization and exerts anti-angiogenic effects through VEGFR2. Trans-Trimethoxyresveratrol can be used for the studies of anti-angiogenic and anti-cancer (such as non-small cell lung cancer and osteosarcoma) .
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Art. -Nr.: HY-122236
CAS. Nr.: 342595-74-8
Reinheit:  99.52%
Forschungsgebiete:  

Cancer

UMK57 is a MCAK activator and kinetochore-microtubule destabilizer. UMK57 enhances MCAK-dependent microtubule depolymerization, increases kinetochore-microtubule turnover, reduces chromosome mis-segregation and lagging chromosomes, and inhibits cancer cell proliferation. UMK57 triggers adaptive resistance in Aurora B cancer cells via reversible Aurora B signaling pathway alterations. UMK57 can be used for the research of solid tumors .
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Art. -Nr.: HY-B0011S
CAS. Nr.: 940867-25-4
Synonyms: RP-56976-d9
Docetaxel-d9 is the deuterium labeled Docetaxel. Docetaxel (RP-56976) is a microtubule?depolymerization inhibitor, with an IC50 of 0.2 μM. Docetaxel attenuates the effects of?bcl-2 and bcl-xL gene expression. Docetaxel arrests the cell cycle at G2/M and leads to cell apoptosis. Docetaxel has anti-cancer activity .
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Art. -Nr.: HY-B0011R
CAS. Nr.: 114977-28-5
Synonyms: RP-56976 (Standard)
Docetaxel (Standard) is the analytical standard of Docetaxel. This product is intended for research and analytical applications. Docetaxel (RP-56976) is a microtubule depolymerization inhibitor, with an IC50 of 0.2 μM. Docetaxel attenuates the effects of bcl-2 and bcl-xL gene expression. Docetaxel arrests the cell cycle at G2/M and leads to cell apoptosis. Docetaxel has anti-cancer activity .
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Art. -Nr.: HY-U00446
CAS. Nr.: 290814-68-5
Forschungsgebiete:  

Cancer

PBOX 6 is a pyrrolo-1,5-benzoxazepine (PBOX) compound, acts as a microtubule-depolymerizing agent and an apoptotic agent.
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Art. -Nr.: HY-148128
CAS. Nr.: 1802498-63-0
Reinheit:  98.53%
Forschungsgebiete:  

Cancer

TAM470 is a novel cytolysin, inhibiting tubulin polymerization and microtubule depolymerization. TAM470 can be used in the synthesis of OMTX705 as payload molecule, OMTX705 is a novel FAP-targeting antibody-drug conjugates (ADCs) with antitumor activity .
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Art. -Nr.: HY-W008581
CAS. Nr.: 1035-77-4
Synonyms: 3-O-Methyl estradiol; 17β-Estradiol 3-methyl ether; 3-Methoxyestradiol
Estradiol 3-methyl ether (EDME) is a highly selective TRPML1 ion channel antagonist and microtubule (microtubule) depolymerizing agent, with IC50 values of 0.22 μM and 3.8 μM against TRPML1 and TRPML2, respectively; it shows no activity against TRPML3. Estradiol 3-methyl ether induces the disruption of cytoplasmic microtubule networks in mammalian cells, with an EC50 of 9 μM. Independent of estrogen receptors, Estradiol 3-methyl ether blocks autophagy (autophagy), TFEB nuclear translocation, and inhibits the migration and invasion of triple-negative breast cancer cells by suppressing TRPML1. Estradiol 3-methyl ether is applicable for relevant research on triple-negative breast cancer .
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Art. -Nr.: HY-N7526R
CAS. Nr.: 475-38-7
Synonyms: DHNQ (Standard); 5,8-Dihydroxy-1,4-naphthoquinone (Standard)
Naphthazarin (DHNQ) is a naturally occurring compound. Naphthazarin is effective by various cellular mechanisms including oxidative stress, activation of mitochondrial apoptosis-inducing factor (AIF), depolymerization of microtubules, interference with lysosomal function and p53-dependent p21 activation. Naphthazarin triggers apoptosis and has anti-tumor effects .
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Art. -Nr.: HY-101287
CAS. Nr.: 1346169-92-3
Reinheit:  99.63%
Forschungsgebiete:  

Cancer

MPT0B392, an orally active quinoline derivative, induces c-Jun N-terminal kinase (JNK) activation, leading to apoptosis. MPT0B392 inhibits tubulin polymerization and triggers induction of the mitotic arrest, followed by mitochondrial membrane potential loss and caspases cleavage by activation of JNK and ultimately leads to apoptosis. MPT0B392 is demonstrated to be a novel microtubule-depolymerizing agent and enhances the cytotoxicity of sirolimus in sirolimus-resistant acute leukemic cells and the multidrug resistant cell line .
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Art. -Nr.: HY-N1171
CAS. Nr.: 18457-44-8
Synonyms: Taxinin B
Taxinine B is a taxoid that can be isolated from Japanese Yew Taxus Cuspid. Taxinine B inhibits CaCl2-induced depolymerization of microtubule. Taxinine B is useful for overcoming multidrug resistance in tumor cells .
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Art. -Nr.: HY-138056
CAS. Nr.: 92950-39-5
Target:  

Microtubule/Tubulin

Forschungsgebiete:  

Others

7-Acetyl paclitaxel is a microtubule depolymerization inhibitor which inhibits calcium-induced microtubule depolymerization. 7-Acetyl paclitaxel reduces the growth of J774.2 macrophages (IC50 ~ 60 nM) and increases the levels of nitric oxide (NO) and TNF in isolated mouse peritoneal macrophages .
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