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双极性电压成像技术对多种神经元类型的并发动力学进行研究。

Dual-polarity voltage imaging of the concurrent dynamics of multiple neuron types.

机构信息

The John B. Pierce Laboratory, New Haven, CT 06519, USA.

Department of Cellular and Molecular Physiology, Yale University, New Haven, CT 06520, USA.

出版信息

Science. 2022 Nov 4;378(6619):eabm8797. doi: 10.1126/science.abm8797.

Abstract

Genetically encoded fluorescent voltage indicators are ideally suited to reveal the millisecond-scale interactions among and between targeted cell populations. However, current indicators lack the requisite sensitivity for in vivo multipopulation imaging. We describe next-generation green and red voltage sensors, Ace-mNeon2 and VARNAM2, and their reverse response-polarity variants pAce and pAceR. Our indicators enable 0.4- to 1-kilohertz voltage recordings from >50 spiking neurons per field of view in awake mice and ~30-minute continuous imaging in flies. Using dual-polarity multiplexed imaging, we uncovered brain state-dependent antagonism between neocortical somatostatin-expressing (SST) and vasoactive intestinal peptide-expressing (VIP) interneurons and contributions to hippocampal field potentials from cell ensembles with distinct axonal projections. By combining three mutually compatible indicators, we performed simultaneous triple-population imaging. These approaches will empower investigations of the dynamic interplay between neuronal subclasses at single-spike resolution.

摘要

基因编码的荧光电压指示剂非常适合揭示靶向细胞群体之间和内部的毫秒级相互作用。然而,目前的指示剂缺乏用于体内多群体成像的必要灵敏度。我们描述了下一代绿色和红色电压传感器,Ace-mNeon2 和 VARNAM2,以及它们的反向响应极性变体 pAce 和 pAceR。我们的指示剂能够在清醒小鼠的每个视野中记录超过 50 个神经元的 0.4 到 1 千赫兹的电压,并且在果蝇中可以进行长达 30 分钟的连续成像。使用双极性复用成像,我们揭示了新皮层中表达生长抑素 (SST)和血管活性肠肽 (VIP)的中间神经元之间的脑状态依赖性拮抗作用,以及具有不同轴突投射的细胞群体对海马场电位的贡献。通过结合三种相互兼容的指示剂,我们进行了同时的三重群体成像。这些方法将使我们能够以单峰分辨率研究神经元亚类之间的动态相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d05/9703638/cdadf49dbb05/nihms-1847662-f0001.jpg

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