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Three-dimensional Ca(2+) imaging advances understanding of astrocyte biology.

机译:三维Ca(2+)成像提高了对星形胶质细胞生物学的了解。

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摘要

Astrocyte communication is typically studied by two-dimensional calcium ion (Ca(2+)) imaging, but this method has not yielded conclusive data on the role of astrocytes in synaptic and vascular function. We developed a three-dimensional two-photon imaging approach and studied Ca(2+) dynamics in entire astrocyte volumes, including during axon-astrocyte interactions. In both awake mice and brain slices, we found that Ca(2+) activity in an individual astrocyte is scattered throughout the cell, largely compartmented between regions, preponderantly local within regions, and heterogeneously distributed regionally and locally. Processes and endfeet displayed frequent fast activity, whereas the soma was infrequently active. In awake mice, activity was higher than in brain slices, particularly in endfeet and processes, and displayed occasional multifocal cellwide events. Astrocytes responded locally to minimal axonal firing with time-correlated Ca(2+) spots.
机译:星形胶质细胞通信通常是通过二维钙离子(Ca(2+))成像研究的,但是这种方法尚未得出关于星形胶质细胞在突触和血管功能中作用的结论性数据。我们开发了三维两光子成像方法,并研究了整个星形胶质细胞体积,包括在轴突-星形胶质细胞相互作用期间的Ca(2+)动态。在清醒的小鼠和脑切片中,我们发现单个星形胶质细胞中的Ca(2+)活性散布在整个细胞中,在各区域之间大部分隔开,主要位于区域内,并且异质分布在区域和局部。进程和尾足表现出频繁的快速活动,而躯体则很少活动。在清醒的小鼠中,其活性高于脑切片,尤其是在尾脚和过程中,并且偶尔会出现多灶性全细胞事件。星形胶质细胞局部响应与时间相关的Ca(2+)点的最小轴突放电。

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