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MPT0B392

カタログ番号GC36652

経口活性キノリン誘導体であるMPT0B392は、c-Jun N末端キナーゼ(JNK)の活性化を誘導し、アポトーシスを引き起こします。 MPT0B392はチューブリン重合を阻害し、有糸分裂停止の誘導を引き起こし、続いてミトコンドリア膜電位の喪失とJNKの活性化によるカスパーゼ切断を引き起こし、最終的にアポトーシスにつながります。 MPT0B392 は、新規の微小管解重合剤であることが実証されており、シロリムス耐性急性白血病細胞および多剤耐性細胞株におけるシロリムスの細胞毒性を増強します。

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MPT0B392 化学構造

Cas No.: 1346169-92-3

サイズ 価格 在庫数 個数
10mM (in 1mL DMSO)
$386.00
在庫あり
1mg
$160.00
在庫あり
5mg
$351.00
在庫あり
10mg
$585.00
在庫あり

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

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[1]. JNK Caspase

MPT0B392 (B392) (0.001-0.1 μM; 24 and 48 hours) inhibits the cell viability of HL60, MOLT-4, and CCRF-CEM cells with IC50s of 0.02 μM, 0.03 μM and 0.02 μM, respectively[1].MPT0B392 (0.1 μM; 48 hours) induces apoptosis in HL60 cancer cells[1].MPT0B392 (0.1 μM for 6-48 hours; 0.01-0.1 μM for 24 and 48 hours) triggers cells arrest in the G2/M phase, followed by accumulation in subG1 phase in a concentration and time-dependent manner[1].MPT0B392 (0.1 μM; 48 hours) increases the phosphorylation of Bcl-2, Mcl-1S and decreases in Mcl-1L[1]. Cell Viability Assay[1] Cell Line: HL60 (acute promyelocytic leukemia), MOLT-4 (acute lymphoblastic leukemia), CCRF-CEM (acute lymphoblastic leukemia) cells

The effects of MPT0B392 (oral gavage; 50 mg/kg or 100 mg/kg for 12 or 14 days) shows relative potent anti-leukemia activity in a vivo xenograft model[1]. Animal Model: Severe combined immunodeficient (SCID) mice [1]

[1]. Chao MW, et al. An oral quinoline derivative, MPT0B392, causes leukemic cells mitotic arrest and overcomes drug resistant cancer cells. Oncotarget. 2017 Apr,8(17):27772-27785.

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Average Rating: 5 ★★★★★ (Based on Reviews and 19 reference(s) in Google Scholar.)

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