The ability to optically stimulate and inhibit neurons has revolutionized neuroscience research. Here, we present a direct, potent, user-friendly chemical approach for optically silencing neurons. We have rendered saxitoxin (STX), a naturally occurring paralytic agent, transiently inert through chemical protection with a previously undisclosed nitrobenzyl-derived photocleavable group. Exposing the caged toxin, STX-bpc, to a brief (5Â ms) pulse of light effects rapid release of a potent STX derivative and transient, spatially precise blockade of voltage-gated sodium channels (Na(V)s). We demonstrate the efficacy of STX-bpc for parametrically manipulating action potentials in mammalian neurons and brain slice. Additionally, we show the effectiveness of this reagent for silencing neural activity by dissecting sensory-evoked swimming in larval zebrafish. Photo-uncaging of STX-bpc is a straightforward method for non-invasive, reversible, spatiotemporally precise neural silencing without the need for genetic access, thus removing barriers for comparative research.
Behavioral control through the direct, focal silencing of neuronal activity.
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作者:Elleman Anna V, Milicic Nikola, Williams Damian J, Simko Jane, Liu Christine J, Haynes Allison L, Ehrlich David E, Makinson Christopher D, Du Bois J
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2024 | 起止号: | 2024 Jul 18; 31(7):1324-1335 |
| doi: | 10.1016/j.chembiol.2024.04.003 | ||
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