荧光
光毒性
光遗传学
化学
体内
近红外光谱
爪蟾
生物物理学
光刺激
生物化学
体外
生物
光学
神经科学
基因
生物技术
物理
作者
Yong Qian,Danielle M. Cosio,Kiryl D. Piatkevich,Sarah Aufmkolk,Wan-Chi Su,Orhan T. Celiker,Anne Schohl,Mitchell H. Murdock,Abhi Aggarwal,Yu‐Fen Chang,Paul W. Wiseman,Edward S. Ruthazer,Edward S. Boyden,Robert E. Campbell
标识
DOI:10.1101/2020.04.08.032433
摘要
Abstract Near-infrared (NIR) genetically-encoded calcium ion (Ca 2+ ) indicators (GECIs) can provide advantages over visible wavelength fluorescent GECIs in terms of reduced phototoxicity, minimal spectral cross-talk with visible-light excitable optogenetic tools and fluorescent probes, and decreased scattering and absorption in mammalian tissues. Our previously reported NIR GECI, NIR-GECO1, has these advantages but also has several disadvantages including lower brightness and limited fluorescence response compared to state-of-the-art visible wavelength GECIs, when used for imaging of neuronal activity. Here, we report two improved NIR GECI variants, designated NIR-GECO2 and NIR-GECO2G, derived from NIR-GECO1. We characterized the performance of the new NIR GECIs in cultured cells, acute mouse brain slices, and C. elegans and Xenopus laevis in vivo . Our results demonstrate that NIR-GECO2 and NIR-GECO2G provide substantial improvements over NIR-GECO1 for imaging of neuronal Ca 2+ dynamics.
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