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首页> 外文期刊>Biochemical Pharmacology >H1, a derivative of Tetrandrine, exerts anti-MDR activity by initiating intrinsic apoptosis pathway and inhibiting the activation of Erk1/2 and Akt1/2.
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H1, a derivative of Tetrandrine, exerts anti-MDR activity by initiating intrinsic apoptosis pathway and inhibiting the activation of Erk1/2 and Akt1/2.

机译:粉防己碱的衍生物H1通过启动内在的凋亡途径并抑制Erk1 / 2和Akt1 / 2的活化发挥抗MDR活性。

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摘要

Currently, multi-drug resistance (MDR) to anticancer drugs is a major obstacle to successful treatment of cancer. Looking for novel compounds with anti-MDR activity is an effectively way to overcome cancer drug resistance. Here, we found that H1, a novel derivate of Tetrandrine, displayed anti-MDR activity in vitro and in vivo. Average resistant factor of H1 is only 1.6. In KB and KBv200 cancer cells xenograft mice, H1 also displayed favorable anti-MDR activity. It could induce typical apoptosis as indicated by morphologic changes, DNA fragmentation in sensitive and resistant cancer cells. Further studies showed that H1 treatment resulted in the increase of ROS generation, elevation of the Bax/Bcl-2 ratio, loss of mitochondrial transmembrane potential (DeltaPsi(m)), release of cytochrome c and AIF from mitochondria into cytosol, and activation of caspase-9 and caspase-3, but had no effect on activation of caspase-8 and the expression of Fas/FasL. On the other hand, H1 also inhibited survival pathways such as the activation of Erk1/2 and Akt1/2. In conclusion, H1 exerts good anti-MDR activity in vitro and in vivo, its mechanisms may be associated with initiating intrinsic apoptosis pathway and inhibiting the activation of Erk1/2 and Akt1/2. These findings further support the potential of H1 to be used in clinical trial of MDR cancer treatment.
机译:当前,对抗癌药物的多药耐药性(MDR)是成功治疗癌症的主要障碍。寻找具有抗MDR活性的新型化合物是克服癌症耐药性的有效途径。在这里,我们发现H1是一种粉防龙胆碱的新型衍生物,在体外和体内均表现出抗MDR活性。 H1的平均电阻系数仅为1.6。在KB和KBv200癌细胞异种移植小鼠中,H1还显示出良好的抗MDR活性。如形态变化,敏感和耐药的癌细胞中的DNA片段所示,它可以诱导典型的细胞凋亡。进一步的研究表明,H1处理导致ROS产生增加,Bax / Bcl-2比升高,线粒体跨膜电位丧失(DeltaPsi(m)),细胞色素c和AIF从线粒体释放到细胞质中以及激活caspase-9和caspase-3,但对caspase-8的激活和Fas / FasL的表达没有影响。另一方面,H1也抑制了生存途径,例如Erk1 / 2和Akt1 / 2的激活。总之,H1在体内和体外均具有良好的抗MDR活性,其机制可能与启动内在的细胞凋亡途径以及抑制Erk1 / 2和Akt1 / 2的激活有关。这些发现进一步支持了H1在MDR癌症治疗的临床试验中使用的潜力。

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