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首页> 外文期刊>Combinatorial Chemistry & High Throughput Screening >Port-a-Patch and Patchliner: High Fidelity Electrophysiology for Secondary Screening and Safety Pharmacology
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Port-a-Patch and Patchliner: High Fidelity Electrophysiology for Secondary Screening and Safety Pharmacology

机译:Port-a-Patch和Patchliner:高保真电生理学,用于二次筛选和安全药理学

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摘要

Ion channel dysfunction is known to underlie several acute and chronic disorders and, therefore, ion channels have gained increased interest as drug targets. During the past decade, ion channel screening platforms have surfaced that enable high throughput drug screening from a more functional perspective. These two factors taken together have further inspired the development of more refined screening platforms, such as the automated patch clamp platforms described in this article.nnApproximately six years ago, Nanion introduced its entry level device for automated patch clamping - the Port-a-Patch. With this device, Nanion offers the world's smallest patch-clamp workstation, whilst greatly simplifying the experimental procedures. This makes the patch clamp technique accessible to researchers and technicians regardless of previous experience in electrophysiology. The same flexibility and high data quality is achieved in a fully automated manner with the Patchliner, Nanion's higher throughput patch clamp workstation. The system utilizes a robotic liquid handling environment for fully automated application of solutions, cells and compounds. The NPC-16 chips come in a sophisticated, yet simplistic, microfluidic cartridge, which allow for fast and precise perfusion. In this way, full concentration response curves are easily obtained. The Port-a-Patch and Patchliner workstations from Nanion are valuable tools for target validation, secondary screening and safety pharmacology (for example hERG and Nav1.5 safety screening). They are widely used in drug development efforts by biotechnological and pharmaceutical companies, as well as in basic and applied biophysical research within academia.
机译:已知离子通道功能障碍是几种急性和慢性疾病的根源,因此,离子通道作为药物靶标已引起越来越多的关注。在过去的十年中,离子通道筛选平台浮出水面,从更实用的角度出发,可以实现高通量药物筛选。这两个因素加在一起,进一步激励了更精细的筛选平台的开发,例如本文所述的自动膜片钳平台。nn大约六年前,Nanion推出了用于自动膜片钳的入门级设备-Port-a-Patch 。借助此设备,Nanion提供了世界上最小的膜片钳工作站,同时大大简化了实验程序。不论以前在电生理学方面的经验如何,这都使研究人员和技术人员可以使用膜片钳技术。使用Nanion的高通量膜片钳工作站Patchliner,可以完全自动化地实现相同的灵活性和高数据质量。该系统利用机器人液体处理环境来全自动应用溶液,细胞和化合物。 NPC-16芯片装在复杂但简单的微流控盒中,可实现快速精确的灌注。以这种方式,容易获得全浓度响应曲线。 Nanion的Port-a-Patch和Patchliner工作站是用于靶标验证,二次筛选和安全药理(例如hERG和Nav1.5安全筛选)的宝贵工具。它们被生物技术和制药公司广泛用于药物开发工作,以及学术界的基础和应用生物物理研究。

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