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In the presence of danger:the extracellular matrix defensive response to central nervous system injury
作者姓名:Lyn B. Jakeman  Kent E. Williams  Bryan Brautigam
作者单位:[1]Department of Physiology and Cell Biology, Ohio State University Wexner Medical Center, Columbus, OH, USA [2]Neuroscience Graduate Studies Program, Ohio State University Wexner Medical Center, Columbus, OH, USA [3]Biomedical Research Graduate Program, Ohio State University Wexner Medical Center, Columbus, OH, USA [4]DSU Center for Brain and Spinal Cord Repair, Ohio State University Wexner Medical Center, Columbus, OH, USA
摘    要:Glial cells in the central nervous system (CNS) contribute to formation of the extracellular matrix, which provides adhesive sites, signaling molecules, and a diffusion barrier to enhance efficient on and axon potential propagation. In the normal adult CNS, the extracellular matrix (ECM) is relatively stable except in selected regions characterized by dynamic remodeling. However, after trauma such as a spinal cord injury or cortical contusion, the lesion epicenter becomes a focus of acute neuroinflammation. The activation of the surrounding glial cells leads to a dramatic change in the composition of the ECM at the edges of the lesion, creating a perilesion environment dominated by growth inhibitory molecules and restoration of the peripheral/ central nervous system border. An advantage of this response is to limit the invasion of damaging cells and diffusion of toxic molecules into the spared tissue regions, but this occurs at the cost of inhibiting migration of endogenous repair cells and preventing axonal regrowth. The following review was prepared by reading and discussing over 200 research articles in the field published in PubMed and selecting those with significant impact and/or controversial points. This article highlights structural and functional features of the normal adult CNS ECM and then focuses on the reactions of glial cells and changes in the perilesion border that occur following spinal cord or contusive brain injury. Current research strategies directed at modifying the inhibitory perilesion microenvironment without eliminating the protective functions of glial cell activation are discussed.

关 键 词:中枢神经系统损伤  细胞外基质  防御反应  神经胶质细胞  危险  信号分子  脊髓损伤  轴突再生
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