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氯离子通道调节剂的研发。

Development of chloride channel modulators.

作者信息

Singh A K, Venglarik C J, Bridges R J

机构信息

Department of Cell Biology and Physiology, University of Pittsburgh, Pennsylvania, USA.

出版信息

Kidney Int. 1995 Oct;48(4):985-93. doi: 10.1038/ki.1995.380.

Abstract

Chloride channels are ubiquitously distributed, biophysically varied and functionally diverse. Despite the known contribution of chloride channels to the physiology of various cell types and the pathology of several diseases, high affinity ligands are not available to study these channels. Here we report the iterative and integrated use of ion channel kinetic analysis and computational chemical methods in the development of high affinity blockers of the outwardly rectifying chloride channel (ORCC). Kinetic analysis, with emphasis on estimation of the block time constant as determined from critical closed time plots, was used to guide the synthesis of new disulfonic stilbene derivatives. Computational chemical methods were used to deduce the important features of the disulfonic stilbene molecule necessary for potent blockade of ORCC and ultimately led to the discovery of the calixarenes. Para-sulfonated calixarenes were found to be potent blockers of ORCC with subnanomolar inhibition constants and exceptionally long block times.

摘要

氯离子通道广泛分布,在生物物理学特性上各不相同,功能也多种多样。尽管已知氯离子通道对多种细胞类型的生理学以及多种疾病的病理学有作用,但尚无用于研究这些通道的高亲和力配体。在此,我们报告了在向外整流氯离子通道(ORCC)高亲和力阻滞剂的开发过程中,离子通道动力学分析与计算化学方法的迭代和综合应用。动力学分析,重点是根据关键关闭时间图估算阻断时间常数,用于指导新的二磺酸芪衍生物的合成。计算化学方法用于推断有效阻断ORCC所需的二磺酸芪分子的重要特征,最终促成了杯芳烃的发现。发现对磺化杯芳烃是ORCC的有效阻滞剂,其抑制常数为亚纳摩尔级,阻断时间极长。

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