Vasilyev D, Merrill T, Iwanow A, Dunlop J, Bowlby M
Discovery Neuroscience, Wyeth Research, CN 8000, Princeton, NJ 08543-8000, USA.
Pflugers Arch. 2006 May;452(2):240-7. doi: 10.1007/s00424-005-0029-2. Epub 2006 Apr 5.
An increasing demand of the pharmaceutical industry for automated electrophysiological stations for ion channel drug discovery has recently resulted in the development of several commercial platforms for secondary and safety screening of ion channel modulators. These commercial systems have demonstrated an enhanced throughput, however, often at the expense of some quality-sensitive aspects of traditional patch-clamp recordings. To improve data quality and content, we have developed a patch-clamp robot that fully automates manual patch-clamp recordings, including patch pipette handling, gigaseal formation, obtaining whole-cell or perforated-cell configuration, drug application, and data acquisition. Utilization of glass micropipettes results in high-quality electrophysiological recordings with an overall success rate of about 30% in perforated-cell mode. A fast drug application system with low volume requirements (1-1.5 ml) allows the study of ligand-gated ion channels on a millisecond scale. As proof-of-concept, we present two assays developed for voltage-gated human ether-a-go-go-related and ligand-gated alpha(7) nicotinic receptor ion channels. The system throughput was a single concentration-response curve every 30-40 min or 12-17 6-point concentration-response curves daily, representing a significant improvement of typical manual patch-clamp throughput. This system represents an efficient method for patch-clamp automation without the need for a complex and expensive electrophysiological set-up for cell visualization.
制药行业对用于离子通道药物发现的自动化电生理工作站的需求日益增加,最近已促使开发出几种用于离子通道调节剂二级筛选和安全性筛选的商业平台。这些商业系统已显示出通量的提高,然而,这通常是以牺牲传统膜片钳记录中一些对质量敏感的方面为代价的。为了提高数据质量和内容,我们开发了一种膜片钳机器人,它能完全自动化手动膜片钳记录,包括膜片吸管操作、千兆封接形成、获得全细胞或穿孔细胞配置、药物施加和数据采集。使用玻璃微吸管可获得高质量的电生理记录,在穿孔细胞模式下总体成功率约为30%。一种低体积要求(1 - 1.5毫升)的快速药物施加系统允许在毫秒尺度上研究配体门控离子通道。作为概念验证,我们展示了针对电压门控的人类醚 - 去极化相关通道和配体门控的α(7)烟碱受体离子通道开发的两种检测方法。该系统通量为每30 - 40分钟得到一条单一浓度 - 反应曲线,或每天得到12 - 17条六点浓度 - 反应曲线,这代表着典型手动膜片钳通量有了显著提高。该系统代表了一种用于膜片钳自动化的有效方法,无需用于细胞可视化的复杂且昂贵的电生理设置。