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Imaging calcium microdomains within entire astrocyte territories and endfeet with GCaMPs expressed using adeno-associated viruses

机译:使用腺相关病毒表达的GCaMP对整个星形胶质细胞区域和末端的钙微结构域进行成像

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摘要

Intracellular Ca2+ transients are considered a primary signal by which astrocytes interact with neurons and blood vessels. With existing commonly used methods, Ca2+ has been studied only within astrocyte somata and thick branches, leaving the distal fine branchlets and endfeet that are most proximate to neuronal synapses and blood vessels largely unexplored. Here, using cytosolic and membrane-tethered forms of genetically encoded Ca2+ indicators (GECIs; cyto-GCaMP3 and Lck-GCaMP3), we report well-characterized approaches that overcome these limitations. We used in vivo microinjections of adeno-associated viruses to express GECIs in astrocytes and studied Ca2+ signals in acute hippocampal slices in vitro from adult mice (aged ∼P80) two weeks after infection. Our data reveal a sparkling panorama of unexpectedly numerous, frequent, equivalently scaled, and highly localized Ca2+ microdomains within entire astrocyte territories in situ within acute hippocampal slices, consistent with the distribution of perisynaptic branchlets described using electron microscopy. Signals from endfeet were revealed with particular clarity. The tools and experimental approaches we describe in detail allow for the systematic study of Ca2+ signals within entire astrocytes, including within fine perisynaptic branchlets and vessel-associated endfeet, permitting rigorous evaluation of how astrocytes contribute to brain function.
机译:细胞内Ca 2 + 瞬变被认为是星形胶质细胞与神经元和血管相互作用的主要信号。使用现有的常用方法,仅在星形胶质细胞体细胞和较厚的分支内研究了Ca 2 + ,而在很大程度上未探究最靠近神经突触和血管的远端细小分支和尾脚。在这里,我们使用遗传编码的Ca 2 + 指示剂(GECI; cyto-GCaMP3和Lck-GCaMP3)的胞质和膜束缚形式,报告了克服这些限制的特征明确的方法。我们使用腺相关病毒的体内显微注射在星形胶质细胞中表达GECI,并在感染后两周从成年小鼠(〜P80岁)的急性海马切片中研究了Ca 2 + 信号。我们的数据显示出一个闪闪发光的全景图,显示了急性海马切片中原位整个星形胶质细胞领土内意外的,频繁的,等比例的和高度局部化的Ca 2 + 微域,与使用电子描述的突触周小枝的分布一致显微镜检查。 endfeet发出的信号特别清晰。我们详细描述的工具和实验方法可以对整个星形胶质细胞内的Ca 2 + 信号进行系统研究,包括在突触周围细小分支和与血管相关的末端,可以对星形胶质细胞对大脑的贡献进行严格的评估。功能。

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