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星形胶质细胞中线粒体动力学和运输的体外成像。

Ex Vivo Imaging of Mitochondrial Dynamics and Trafficking in Astrocytes.

机构信息

Department of Pharmacology, Drexel University College of Medicine, Philadelphia, Pennsylvania.

出版信息

Curr Protoc Neurosci. 2020 Jun;92(1):e94. doi: 10.1002/cpns.94.

Abstract

Mitochondria are essential organelles involved in energy supply and calcium homeostasis. The regulated distribution of mitochondria in polarized cells, particularly neurons, is thought to be essential to these roles. Altered mitochondrial function and impairment of mitochondrial distribution and dynamics is implicated in a number of neurologic disorders. Several recent reports have described mechanisms regulating the activity-dependent distribution of mitochondria within astrocyte processes and the functional consequences of altered mitochondrial transport. Here we provide an ex vivo method for monitoring the transport of mitochondria within the processes of astrocytes using organotypic "slice" cultures. These methods can be easily adapted to investigate a wide range of mitochondrial behaviors, including fission and fusion dynamics, mitophagy, and calcium signaling in astrocytes and other cell types of the central nervous system. © 2020 by John Wiley & Sons, Inc. Basic Protocol 1: Preparation of brain slices Basic Protocol 2: Preparation of gene gun bullets Basic Protocol 3: Gene gun transfection of slices Basic Protocol 4: Visualization and tracking of mitochondrial movement Alternate Protocol: Transduction of EGFP-mito via viral injection of the neonatal mouse brain.

摘要

线粒体是参与能量供应和钙稳态的重要细胞器。在极化细胞(尤其是神经元)中,线粒体的调节分布被认为对这些功能至关重要。线粒体功能的改变以及线粒体分布和动力学的损害与许多神经疾病有关。最近有几项报告描述了调节星形胶质细胞突起内线粒体活性依赖性分布的机制,以及改变的线粒体转运的功能后果。在这里,我们提供了一种使用器官型“切片”培养物在星形胶质细胞突起内监测线粒体转运的体外方法。这些方法可以很容易地适应于研究广泛的线粒体行为,包括裂变和融合动力学、线粒体自噬以及星形胶质细胞和中枢神经系统中其他细胞类型的钙信号。© 2020 年,John Wiley & Sons, Inc. 基本方案 1:脑切片的准备 基本方案 2:基因枪子弹的制备 基本方案 3:基因枪转染切片 基本方案 4:线粒体运动的可视化和跟踪 备选方案:通过新生鼠脑的病毒注射转导 EGFP-mito。

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