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首页> 外文期刊>Combinatorial Chemistry & High Throughput Screening >High Throughput Electrophysiology with Xenopus Oocytes
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High Throughput Electrophysiology with Xenopus Oocytes

机译:爪蟾卵母细胞的高通量电生理学

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摘要

Voltage-clamp techniques are typically used to study the plasma membrane proteins, such as ion channels and transporters that control bioelectrical signals. Many of these proteins have been cloned and can now be studied as potential targets for drug development. The two approaches most commonly used for heterologous expression of cloned ion channels and transporters involve either transfection of the genes into small cells grown in tissue culture or the injection of the genetic material into larger cells. The standard large cells used for the expression of cloned cDNA or synthetic RNA are the egg progenitor cells (oocytes) of the African frog, Xenopus laevis. Until recently, cellular electrophysiology was performed manually by a single operator, one cell at a time. However, methods of high throughput electrophysiology have been developed which are automated and permit data acquisition and analysis from multiple cells in parallel. These methods are breaking a bottleneck in drug discovery, useful in some cases for primary screening as well as for thorough characterization of new drugs. Increasing throughput of high-quality functional data greatly augments the efficiency of academic research and pharmaceutical drug development. Some examples of studies that benefit most from high throughput electrophysiology include pharmaceutical screening of targeted compound libraries, secondary screening of identified compounds for subtype selectivity, screening mutants of ligand-gated channels for changes in receptor function, scanning mutagenesis of protein segments, and mutant-cycle analysis. We describe here the main features and potential applications of OpusXpress, an efficient commercially available system for automated recording from Xenopus oocytes. We show some types of data that have been gathered by this system and review realized and potential applications.
机译:电压钳技术通常用于研究质膜蛋白,例如控制生物电信号的离子通道和转运蛋白。这些蛋白质中有许多已被克隆,现在可以作为药物开发的潜在靶标进行研究。最常用于克隆离子通道和转运蛋白异源表达的两种方法涉及将基因转染到组织培养物中生长的小细胞中或将遗传物质注射到大细胞中。用于表达克隆的cDNA或合成RNA的标准大细胞是非洲蛙Xenopus laevis的卵祖细胞(卵母细胞)。直到最近,细胞电生理学还是由一个操作员手动执行的,一次只能一个细胞。然而,已经开发了高通量电生理学的方法,这些方法是自动化的,并允许并行地从多个细胞进行数据采集和分析。这些方法打破了药物发现的瓶颈,在某些情况下可用于初步筛选以及对新药进行全面表征。高质量功能数据吞吐量的增加大大提高了学术研究和药物开发的效率。从高通量电生理学中受益最大的一些研究实例包括针对目标化合物库的药物筛选,针对亚型选择性的二级筛选二级化合物,针对受体功能变化的配体门控通道突变体的筛选,蛋白质片段的诱变扫描以及突变体-周期分析。我们在这里描述OpusXpress的主要功能和潜在应用,OpusXpress是从非洲爪蟾卵母细胞自动记录的有效商业化系统。我们显示了此系统已收集的某些类型的数据,并回顾了已实现和潜在的应用程序。

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