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Updated: Apr 27, 2026

Application of Automated Image-guided Patch Clamp for the Study of Neurons in Brain Slices
Published on: July 31, 2017
Industrializing electrophysiology: HT automated patch clamp on SyncroPatch® 96 using instant frozen cells
1Roche Pharmaceutical Research and Early Development, Innovation Center Basel, F. Hoffmann-La Roche Ltd., Grenzacherstr. 124, Bldg. 73/R. 103b, 4070, Basel, Switzerland, liudmila.polonchuk@roche.com.
Abstract:
Patch-clamping is a powerful technique for investigating the ion channel function and regulation. However, its low throughput hampered profiling of large compound series in early drug development. Fortunately, automation has revolutionized the area of experimental electrophysiology over the past decade. Whereas the first automated patch-clamp instruments using the planar patch-clamp technology demonstrated rather a moderate throughput, few second-generation automated platforms recently launched by various companies have significantly increased ability to form a high number of high-resistance seals. Among them is SyncroPatch(®) 96 (Nanion Technologies GmbH, Munich, Germany), a fully automated giga-seal patch-clamp system with the highest throughput on the market. By recording from up to 96 cells simultaneously, the SyncroPatch(®) 96 allows to substantially increase throughput without compromising data quality. This chapter describes features of the innovative automated electrophysiology system and protocols used for a successful transfer of the established hERG assay to this high-throughput automated platform.

