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Automated Cell-Based Assay for Screening of Aquaporin Inhibitors

机译:自动化的基于细胞的水通道蛋白抑制剂筛选方法

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Aquaporins form water channels that play major roles in a variety of physiological processes so that altered expression or function may underlie pathological conditions. In order to identify compounds that modulate aquaporin function, we have implemented a functional assay based on rapid measurement of osmotically induced cell volume changes to screen several libraries of diverse drugs. The time course of fluorescence changes in calcein-loaded cells was analyzed during an osmotic challenge using a 96-multiwell fluorescence plate reader. This system was validated using astrocyte primary cultures and fibroblasts that strongly express endogenous AQP4 and AQP1 proteins, respectively, as well as AQP4-transfected cells. We screened 3575 compounds, including 418 FDA-approved and commercially available drugs, for their effect on AQP-mediated water transport. Primary screening yielded 10 compounds that affected water transport activity in both astrocytes and AQP4-transfected cells and 42 compounds that altered cell volume regulation in astrocytes. Selected drugs were then analyzed on AQP1-expressing erythrocytes and AQP4-expressing membrane vesicles by stopped-flow light scattering. Four molecules of the National Cancer Institute's chemical library (NSC164914, NSC670229, NSC168597, NSC301460) were identified that differentially affected both AQP4 and AQP1 mediated water transport, with EC_(50) values between 20 and 50 (mu)M. This fluorescence microplate reader-based assay may, thus, provide a platform for high-throughput screening which, when coupled to a secondary evaluation to confirm target specificity, should allow discovery of AQP-specific compounds for novel therapeutic strategies in the treatment of water balance disorders.
机译:水通道蛋白形成在各种生理过程中起主要作用的水通道,因此改变的表达或功能可能是病理条件的基础。为了鉴定调节水通道蛋白功能的化合物,我们已经基于渗透性诱导细胞体积变化的快速测量来实施功能测定,以筛选多种药物的文库。使用96孔荧光读板仪在渗透攻击期间分析了钙黄绿素负载的细胞中荧光变化的时间过程。使用星形胶质细胞原代培养物和成纤维细胞分别强烈表达内源性AQP4和AQP1蛋白以及转染了AQP4的细胞验证了该系统。我们筛选了3575种化合物(包括418种FDA批准的和可商购的药物)对AQP介导的水运输的影响。初步筛选产生了10个影响星形胶质细胞和AQP4转染细胞中水转运活性的化合物,以及42个改变了星形胶质细胞中细胞体积调节的化合物。然后,通过停流光散射法在表达AQP1的红细胞和表达AQP4的膜囊上分析所选药物。美国国家癌症研究所化学文库中的四个分子(NSC164914,NSC670229,NSC168597,NSC301460)被鉴定出差异影响AQP4和AQP1介导的水运,EC_(50)值在20至50μM之间。因此,这种基于酶标仪的荧光分析法可提供高通量筛选的平台,当与二级评估以确认靶标特异性相结合时,应允许发现AQP特异性化合物用于水平衡治疗的新治疗策略失调。

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