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脊髓损伤后静止的室管膜细胞的激活。

The activation of dormant ependymal cells following spinal cord injury.

机构信息

Stem Cell Therapies in Neurodegenerative Diseases Lab, Research Center "Principe Felipe", C/Eduardo Primo Yúfera 3, 46012, Valencia, Spain.

Department of Neuroregeneration, Institute of Experimental Medicine, Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Stem Cell Res Ther. 2023 Jul 5;14(1):175. doi: 10.1186/s13287-023-03395-4.

Abstract

Ependymal cells, a dormant population of ciliated progenitors found within the central canal of the spinal cord, undergo significant alterations after spinal cord injury (SCI). Understanding the molecular events that induce ependymal cell activation after SCI represents the first step toward controlling the response of the endogenous regenerative machinery in damaged tissues. This response involves the activation of specific signaling pathways in the spinal cord that promotes self-renewal, proliferation, and differentiation. We review our current understanding of the signaling pathways and molecular events that mediate the SCI-induced activation of ependymal cells by focusing on the roles of some cell adhesion molecules, cellular membrane receptors, ion channels (and their crosstalk), and transcription factors. An orchestrated response regulating the expression of receptors and ion channels fine-tunes and coordinates the activation of ependymal cells after SCI or cell transplantation. Understanding the major players in the activation of ependymal cells may help us to understand whether these cells represent a critical source of cells contributing to cellular replacement and tissue regeneration after SCI. A more complete understanding of the role and function of individual signaling pathways in endogenous spinal cord progenitors may foster the development of novel targeted therapies to induce the regeneration of the injured spinal cord.

摘要

室管膜细胞是一种存在于脊髓中央管内的静息纤毛祖细胞群体,在脊髓损伤(SCI)后会发生显著改变。了解 SCI 后诱导室管膜细胞激活的分子事件是控制受损组织内源性再生机制反应的第一步。这种反应涉及到脊髓中特定信号通路的激活,这些信号通路促进了自我更新、增殖和分化。我们通过关注一些细胞黏附分子、细胞膜受体、离子通道(及其串扰)和转录因子在 SCI 诱导的室管膜细胞激活中的作用,来回顾我们目前对介导这一反应的信号通路和分子事件的理解。协调一致的反应调节受体和离子通道的表达,精细地调节和协调 SCI 后或细胞移植后室管膜细胞的激活。了解室管膜细胞激活的主要参与者可能有助于我们了解这些细胞是否代表了对 SCI 后细胞替代和组织再生有贡献的关键细胞来源。对单个信号通路在内源性脊髓祖细胞中的作用和功能的更全面了解,可能会促进诱导损伤脊髓再生的新型靶向治疗的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6757/10324230/9dfddb8cfcf0/13287_2023_3395_Fig1_HTML.jpg

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