光毒性
体内
光遗传学
绿色荧光蛋白
钙
斑马鱼
临床前影像学
钙显像
化学
生物物理学
神经科学
生物化学
体外
生物
基因
生物技术
有机化学
作者
Hod Dana,Boaz Mohar,Yi Sun,Sujatha Narayan,Andrew Gordus,J. Hasseman,Getahun Tsegaye,Graham T. Holt,Amy Hu,Deepika Walpita,Ronak Patel,John J. Macklin,Cornelia I. Bargmann,Misha B. Ahrens,Eric R. Schreiter,Vivek Jayaraman,Loren L. Looger,Karel Svoboda,Douglas S. Kim
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2016-03-24
卷期号:5
被引量:756
摘要
Genetically encoded calcium indicators (GECIs) allow measurement of activity in large populations of neurons and in small neuronal compartments, over times of milliseconds to months. Although GFP-based GECIs are widely used for in vivo neurophysiology, GECIs with red-shifted excitation and emission spectra have advantages for in vivo imaging because of reduced scattering and absorption in tissue, and a consequent reduction in phototoxicity. However, current red GECIs are inferior to the state-of-the-art GFP-based GCaMP6 indicators for detecting and quantifying neural activity. Here we present improved red GECIs based on mRuby (jRCaMP1a, b) and mApple (jRGECO1a), with sensitivity comparable to GCaMP6. We characterized the performance of the new red GECIs in cultured neurons and in mouse, Drosophila, zebrafish and C. elegans in vivo. Red GECIs facilitate deep-tissue imaging, dual-color imaging together with GFP-based reporters, and the use of optogenetics in combination with calcium imaging.
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