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首页> 外文期刊>Chemical science >A halogen bond-mediated highly active artificial chloride channel with high anticancer activity
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A halogen bond-mediated highly active artificial chloride channel with high anticancer activity

机译:具有高抗癌活性的卤素键介导的高活性人工氯通道

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Chloride-selective transmembrane carriers or channels might have possible uses in treating channelopathies or cancers. While chloride carriers have been extensively investigated, the corresponding chloride channels have remained limitedly studied. Moreover, all hitherto reported channel systems lack clearly definable and readily modifiable positions in their structures for the reliable construction and combinatorial optimization of their ion transport properties. As a result, the existing channels are limited by their large molecular weight, weak activity or low anion selectivity. In this report, we describe a readily accessible and robust monopeptide-based scaffold for the reliable construction of halogen bond-mediated artificial anion channels via directional assembly of electron-deficient iodine atoms, which create a transmembrane pathway for facilitating anion transport. The high intrinsic modularity of the backbone of the scaffold, which enables the rapid and combinatorial optimization of the transport activity and selectivity of channels, effectively delivers a highly active chloride channel A10 . Such high activity in chloride transport subsequently leads to an excellent IC _(50) value of 20 μM toward inhibiting the growth of human breast cancer cells (BT-474), an anticancer activity that is even higher than that of the well-known anticancer agent cisplatin.
机译:氯离子选择性跨膜载体或通道可能在治疗通道病或癌症中可能具有用途。尽管已广泛研究了氯化物载体,但对相应的氯化物通道的研究仍然有限。此外,迄今报道的所有通道系统在其结构中均缺乏明确可定义且易于修改的位置,以实现其离子传输性能的可靠构建和组合优化。结果,现有的通道受到它们的大分子量,弱活性或低阴离子选择性的限制。在此报告中,我们描述了一种易于使用且功能强大的基于单肽的支架,该支架可通过电子缺陷碘原子的定向组装可靠地构建卤素键介导的人工阴离子通道,从而形成跨膜途径以促进阴离子的转运。支架骨架的高固有模块性,可实现通道的转运活性和通道选择性的快速和组合优化,可有效输送高活性氯离子通道A10。如此高的氯化物转运活性随后导致20μM的极佳IC_(50)值,可抑制人乳腺癌细胞(BT-474)的生长,其抗癌活性甚至高于众所周知的抗癌活性药剂顺铂。

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