Skip to main content
journal article

Fast two-photon imaging of subcellular voltage dynamics in neuronal tissue with genetically encoded indicators

eLife
Publication Date: 7/27/2017

Abstract: Monitoring voltage dynamics in defined neurons deep in the brain is critical for unraveling the function of neuronal circuits but is challenging due to the limited performance of existing tools. In particular, while genetically encoded voltage indicators have shown promise for optical detection of voltage transients, many indicators exhibit low sensitivity when imaged under two-photon illumination. Previous studies thus fell short of visualizing voltage dynamics in individual neurons in single trials. Here, we report ASAP2s, a novel voltage indicator with improved sensitivity. By imaging ASAP2s using random-access multi-photon microscopy, we demonstrate robust single-trial detection of action potentials in organotypic slice cultures. We also show that ASAP2s enables two-photon imaging of graded potentials in organotypic slice cultures and in Drosophila. These results demonstrate that the combination of ASAP2s and fast two-photon imaging methods enables detection of neural electrical activity with subcellular spatial resolution and millisecond-timescale precision.

Authors: Chamberland S, Yang HH, Pan MM, Evans SW, Guan S, Chavarha M, Yang Y, Salesse C, Wu H, Wu JC, Clandinin TR, Toth K, Lin MZ, St-Pierre F

Simon Chamberland
Helen H Yang
Michael M Pan
Stephen W Evans
Sihui Guan
Mariya Chavarha
Ying Yang
Charleen Salesse
Haodi Wu
Joseph C Wu
Thomas R Clandinin
Katalin Toth
Michael Z Lin
François St-Pierre