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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, anionophoric activity and apoptosis-inducing bioactivity of benzimidazolyl-based transmembrane anion transporters
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Synthesis, anionophoric activity and apoptosis-inducing bioactivity of benzimidazolyl-based transmembrane anion transporters

机译:基于苯并咪唑基的跨膜阴离子转运蛋白的合成,脑化学活性和凋亡诱导生物活性

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In this paper we show that a series of 1,3-bis(benzimidazol-2-yl)benzene (m-Bimbe) derivatives exhibit excellent performance as transmembrane anion transporters with anticancer activity. The transport efficiency of m-Bimbe and its derivatives has been firstly optimized by adding a strong electron withdrawing nitro group at the 5-position of the central phenyl subunits to enhance the CH center dot center dot center dot anion interactions. Evidences for the interactions were obtained from ESI MS, spectrophotometric and H-1 NMR titrations. These compounds exhibit potent anionophoric activity in both liposomal models and live cells. In particular, the 5-nitrated derivatives having nitro or trifluoromethyl groups at the benzimidazoloyl subunits exhibit 2370- and 1721-fold enhanced anionophoric activity with the EC50 values as low as 36 and 50 nM, respectively. These compounds can disturb the cellular homeostasis of chloride anions, modify the intracellular pH and induce the basification of acidic organelles. Most of this series of m-Bimbe derivatives exhibit potent cytotoxicity toward the tested human solid tumor cell lines, and the 5 nitrated derivative bearing trifluoromethyl groups at the benzimidazoloyl subunits is the most active with the IC50 value in the low micromolar range. Mechanistic studies suggest that the transport of chloride anions across the cellular membranes plays a critical role in the cytotoxic effect and these compounds induce cell death probably via an apoptotic process. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:在本文中,我们显示,一系列1,3-双(Benzimidazol-2-基)苯(M-BIMBE)衍生物表现出具有抗癌活性的跨膜阴离子转运蛋白的优异性能。通过在中央苯基亚基的5位添加强电子取出的硝基中,首先优化了M-BIMBE及其衍生物的运输效率,以增强CH中心点中心点中心点阴离子相互作用。从ESI MS,分光光度法和H-1 NMR滴定获得相互作用的证据。这些化合物在脂质体模型和活细胞中表现出有效的透析活性。特别地,苯并咪唑亚基的硝基或三氟甲基的5-硝化衍生物分别表现出2370-和1721倍的增强的透析性活性,分别具有低至36和50nm的EC 50值。这些化合物可以干扰氯化物阴离子的细胞稳态,改变细胞内pH并诱导酸性细胞器的碱基。该系列的M-BIMBE衍生物中的大多数表现出朝向测试的人体固体肿瘤细胞系的有效细胞毒性,并且苯并咪唑亚亚基的5个氮化衍生物载有三氟甲基是最活跃的,在低微摩拉范围内的IC 50值。机械研究表明,在细胞膜中氯阴离子的运输在细胞毒性作用中发挥着关键作用,并且这些化合物可能通过凋亡过程诱导细胞死亡。 (c)2018年Elsevier Masson SAS。版权所有。

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