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首页> 外文期刊>Angewandte Chemie >pH-Dependent Chloride Transport by Pseudopeptidic Cages for the Selective Killing of Cancer Cells in Acidic Microenvironments
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pH-Dependent Chloride Transport by Pseudopeptidic Cages for the Selective Killing of Cancer Cells in Acidic Microenvironments

机译:PH依赖性氯化物通过假肽笼进行酸性微环境选择性杀死癌细胞的选择性杀灭

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摘要

Acidic microenvironments in solid tumors are a hallmark of cancer. Inspired by that, we designed a family of pseudopeptidic cage-like anionophores displaying pH-dependent activity. When protonated, they efficiently bind chloride anions. They also transport chloride through lipid bilayers, with their anionophoric properties improving at acidic pH, suggesting an H+/Cl- symport mechanism. NMR studies in DPC micelles demonstrate that the cages bind chloride within the lipid phase. The chloride affinity and the chloride-exchange rate with the aqueous bulk solution are improved when the pH is lowered. This increases cytotoxicity towards lung adenocarcinoma cells at the pH of the microenvironment of a solid tumor. These properties depend on the nature of the amino-acid side chains of the cages, which modulate their lipophilicity and interactions with the cell membrane. This paves the way towards using pH as a parameter to control the selectivity of cytotoxic ionophores as anticancer drugs.
机译:实体瘤中的酸性微环境是癌症的标志。 灵感来自于,我们设计了一系列伪麻醉的笼状的阳离子,呈现pH依赖性活性。 当质子化时,它们有效地结合氯阴离子。 它们还通过脂质双层将氯化物运输,其酸性pH值改善其酸性pH值,表明H + / CL- Symport机制。 DPC胶束中的NMR研究表明,笼子在脂质阶段内结合氯化物。 当pH降低时,氯化物亲和力和氯化物 - 交换速率随水溶液的提高。 这将细胞毒性增加在固体瘤的微环境pH下肺腺癌细胞。 这些性质取决于笼子的氨基酸侧链的性质,其调节它们的亲脂性和与细胞膜相互作用。 这铺设了使用pH作为参数来控制细胞毒性离子团作为抗癌药物的参数的方法。

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