All-optical closed-loop voltage clamp for precise control of muscles and neurons in live animals

被引:9
作者
Bergs, Amelie C. F. [1 ,2 ]
Liewald, Jana F. [1 ,2 ]
Rodriguez-Rozada, Silvia [3 ]
Liu, Qiang [4 ,5 ]
Wirt, Christin [1 ,2 ]
Bessel, Artur [6 ]
Zeitzschel, Nadja [1 ,2 ]
Durmaz, Hilal [1 ,2 ]
Nozownik, Adrianna [3 ]
Dill, Holger [1 ,2 ]
Jospin, Maelle [7 ]
Vierock, Johannes [8 ]
Bargmann, Cornelia, I [4 ,9 ]
Hegemann, Peter [8 ]
Wiegert, J. Simon [3 ,10 ]
Gottschalk, Alexander [1 ,2 ]
机构
[1] Goethe Univ, Buchmann Inst Mol Life Sci, Max von Laue Str 15, D-60438 Frankfurt, Germany
[2] Goethe Univ, Inst Biophys Chem, Max von Laue Str 9, D-60438 Frankfurt, Germany
[3] Univ Med Ctr Hamburg Eppendorf, Ctr Mol Neurobiol Hamburg, Res Grp Synapt Wiring & Informat Proc, D-20251 Hamburg, Germany
[4] Rockefeller Univ, Lulu & Anthony Wang Lab Neural Circuits & Behav, New York, NY 10065 USA
[5] City Univ Hong Kong, Dept Neurosci, Kowloon Tong, Tat Chee Ave, Hong Kong, Peoples R China
[6] Melatener Str 93, D-52074 Aachen, Germany
[7] Univ Claude Bernard Lyon 1, Inst NeuroMyoGene, 8 Ave Rockefeller, F-69008 Lyon, France
[8] Humboldt Univ, Inst Biol, Expt Biophys, D-10115 Berlin, Germany
[9] Chan Zuckerberg Initiat, Palo Alto, CA USA
[10] Heidelberg Univ, Med Fac Mannheim, Ludolf Krehl Str 13-17, D-68167 Mannheim, Germany
关键词
ACTION-POTENTIALS; ELECTROPHYSIOLOGY; BEHAVIOR; GABA;
D O I
10.1038/s41467-023-37622-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Excitable cells can be stimulated or inhibited by optogenetics. Since optogenetic actuation regimes are often static, neurons and circuits can quickly adapt, allowing perturbation, but not true control. Hence, we established an optogenetic voltage-clamp (OVC). The voltage-indicator QuasAr2 provides information for fast, closed-loop optical feedback to the bidirectional optogenetic actuator BiPOLES. Voltage-dependent fluorescence is held within tight margins, thus clamping the cell to distinct potentials. We established the OVC in muscles and neurons of Caenorhabditis elegans, and transferred it to rat hippocampal neurons in slice culture. Fluorescence signals were calibrated to electrically measured potentials, and wavelengths to currents, enabling to determine optical I/V-relationships. The OVC reports on homeostatically altered cellular physiology inmutants and on Ca2(+)-channel properties, and can dynamically clamp spiking in C. elegans. Combining non-invasive imaging with control capabilities of electrophysiology, the OVC facilitates high-throughput, contact-less electrophysiology in individual cells and paves the way for true optogenetic control in behaving animals.
引用
收藏
页数:17
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