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  • Versatile live-cell activity analysis platform for characterization of neuronal dynamics at single-cell and network level.

Versatile live-cell activity analysis platform for characterization of neuronal dynamics at single-cell and network level.

Nature communications (2020-09-27)
Xinyue Yuan, Manuel Schröter, Marie Engelene J Obien, Michele Fiscella, Wei Gong, Tetsuhiro Kikuchi, Aoi Odawara, Shuhei Noji, Ikuro Suzuki, Jun Takahashi, Andreas Hierlemann, Urs Frey
摘要

Chronic imaging of neuronal networks in vitro has provided fundamental insights into mechanisms underlying neuronal function. Current labeling and optical imaging methods, however, cannot be used for continuous and long-term recordings of the dynamics and evolution of neuronal networks, as fluorescent indicators can cause phototoxicity. Here, we introduce a versatile platform for label-free, comprehensive and detailed electrophysiological live-cell imaging of various neurogenic cells and tissues over extended time scales. We report on a dual-mode high-density microelectrode array, which can simultaneously record in (i) full-frame mode with 19,584 recording sites and (ii) high-signal-to-noise mode with 246 channels. We set out to demonstrate the capabilities of this platform with recordings from primary and iPSC-derived neuronal cultures and tissue preparations over several weeks, providing detailed morpho-electrical phenotypic parameters at subcellular, cellular and network level. Moreover, we develop reliable analysis tools, which drastically increase the throughput to infer axonal morphology and conduction speed.

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Sigma-Aldrich
层粘连蛋白 来源于 Engelbreth-Holm-Swarm 小鼠肉瘤基底膜, 1-2 mg/mL in Tris-buffered saline, 0.2 μm filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
聚-L-鸟氨酸 溶液, mol wt 30,000-70,000, 0.01%, sterile-filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
聚乙烯亚胺 溶液, average Mn ~60,000 by GPC, average Mw ~750,000 by LS, 50 wt. % in H2O
Sigma-Aldrich
Ames培养基, With L-glutamine, without sodium bicarbonate, powder, suitable for cell culture