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单个小胶质细胞迅速且直接地移动至水蛭中枢神经系统的神经损伤处。

Individual microglia move rapidly and directly to nerve lesions in the leech central nervous system.

作者信息

McGlade-McCulloh E, Morrissey A M, Norona F, Muller K J

机构信息

Department of Physiology and Biophysics, University of Miami School of Medicine, FL 33101.

出版信息

Proc Natl Acad Sci U S A. 1989 Feb;86(3):1093-7. doi: 10.1073/pnas.86.3.1093.

Abstract

Small cells called microglia, which collect at nerve lesions, were tracked as they moved within the leech nerve cord to crushes made minutes or hours before. The aim of this study was to determine whether microglia respond as a group and move en masse or instead move individually, at different rates, and whether they move along axons directly to the lesion or take another route, such as along the edges of the nerve cord. Cell nuclei in living nerve cords were stained with Hoechst 33258 dye and observed under dim ultraviolet illumination using fluorescence optics, a low-light video camera, and computer-assisted signal enhancement. Muscular movements of the cord were selectively reduced by bathing in 23 mM MgCl2. Regions of nerve cord within 300 microns of the crush were observed for 2-6 hr. Only a fraction of microglia, typically less than 50%, moved at any time, traveling toward the lesion at speeds up to 7 microns/min. Cells were moving as soon as observation began, within 15 min of crushing, and traveled directly toward the lesion along axons or axon tracts. Movements and roles of leech microglia are compared with their vertebrate counterparts, which are also active and respond to nerve injury.

摘要

被称为小胶质细胞的小细胞聚集在神经损伤处,研究人员追踪了它们在水蛭神经索内朝着数分钟或数小时前造成的挤压损伤处移动的情况。本研究的目的是确定小胶质细胞是作为一个群体做出反应并集体移动,还是以不同速度单独移动,以及它们是直接沿着轴突移动到损伤处,还是采取其他路径,比如沿着神经索的边缘移动。用Hoechst 33258染料对活神经索中的细胞核进行染色,并在昏暗的紫外光照射下,使用荧光光学设备、低光照摄像机和计算机辅助信号增强技术进行观察。通过浸泡在23 mM的MgCl2中来选择性减少神经索的肌肉运动。观察挤压损伤处300微米范围内的神经索区域2至6小时。任何时候只有一小部分小胶质细胞(通常少于50%)在移动,它们以高达7微米/分钟的速度朝着损伤处移动。在挤压后15分钟内观察开始时细胞就开始移动,并沿着轴突或轴突束直接朝着损伤处移动。水蛭小胶质细胞的移动和作用与脊椎动物的小胶质细胞进行了比较,脊椎动物的小胶质细胞也很活跃并对神经损伤做出反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33aa/286628/2c346e4fa765/pnas00243-0348-a.jpg

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