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脑周细胞钙成像和活体转基因小鼠血液动力学成像。

Brain Pericyte Calcium and Hemodynamic Imaging in Transgenic Mice In Vivo.

机构信息

College of Pharmacy, Rady Faculty of Health Sciences, University of Manitoba.

College of Pharmacy, Rady Faculty of Health Sciences, University of Manitoba;

出版信息

J Vis Exp. 2021 Nov 20(177). doi: 10.3791/62725.

Abstract

Recent advances in protein biology and mouse genetics have made it possible to measure intracellular calcium fluctuations of brain cells in vivo and to correlate this with local hemodynamics. This protocol uses transgenic mice that have been prepared with a chronic cranial window and express the genetically encoded calcium indicator, RCaMP1.07, under the α-smooth muscle actin promoter to specifically label mural cells, such as vascular smooth muscle cells and ensheathing pericytes. Steps are outlined on how to prepare a tail vein catheter for intravenous injection of fluorescent dyes to trace blood flow, as well as how to measure brain pericyte calcium and local blood vessel hemodynamics (diameter, red blood cell velocity, etc.) by two photon microscopy in vivo through the cranial window in ketamine/xylazine anesthetized mice. Finally, details are provided for the analysis of calcium fluctuations and blood flow movies via the image processing algorithms developed by Barrett et al. 2018, with an emphasis on how these processes can be adapted to other cellular imaging data.

摘要

近年来,蛋白质生物学和小鼠遗传学的进展使得测量活体脑细胞内的钙波动并将其与局部血液动力学相关联成为可能。本方案使用经过慢性颅窗制备并在α-平滑肌肌动蛋白启动子下表达基因编码钙指示剂 RCaMP1.07 的转基因小鼠,特异性标记壁细胞,如血管平滑肌细胞和包绕周细胞。方案中概述了如何准备尾静脉导管进行静脉注射荧光染料以追踪血流,以及如何通过颅窗在氯胺酮/甲苯噻嗪麻醉的小鼠中使用双光子显微镜测量脑周细胞钙和局部血管血液动力学(直径、红细胞速度等)。最后,提供了通过 Barrett 等人开发的图像处理算法分析钙波动和血流电影的详细信息,重点介绍了如何将这些过程适应于其他细胞成像数据。2018 年

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