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Sca-1 影响骨骼肌再生过程中的固有免疫反应。

Sca-1 influences the innate immune response during skeletal muscle regeneration.

机构信息

Boston Medical Center, Department of Medicine, Section of Infectious Diseases, Boston, Massachusetts, USA.

出版信息

Am J Physiol Cell Physiol. 2011 Feb;300(2):C287-94. doi: 10.1152/ajpcell.00319.2010. Epub 2010 Dec 1.

Abstract

Efficient muscle regeneration requires the clearance of dead and dying tissue via phagocytosis before remodeling. We have previously shown that mice lacking stem cell antigen-1 (Sca-1) display a defect in skeletal muscle regeneration characterized by increased fibrosis and decreased turnover of the extracellular matrix. In the present study we demonstrate that Sca-1(-/-) mice have a defect in their capacity to recruit soluble IgM, and subsequently C3 complement, to damaged muscle. We hypothesize that this defect in recruitment delays or decreases phagocytosis by macrophages, contributing to the previously observed fibrotic phenotype of these mice. As the primary source of soluble IgM is peritoneal B-1a cells, which are a subset of self-renewing B cells, we analyzed this cell population and observed a significant reduction in B-1a cells in Sca-1(-/-) animals. Interestingly, these mice are protected from ischemia-reperfusion injury, an acute inflammatory reaction also mediated by IgM and C3 complement that has been linked to a deficit in B-1a cells in previous studies. Collectively, these data reveal a novel role for Sca-1 in innate immunity during muscle regeneration and indicate that further elucidation of immuno-myogenic processes will help to better understand and promote muscle regeneration.

摘要

有效的肌肉再生需要通过吞噬作用清除坏死和垂死的组织,然后进行重塑。我们之前曾表明,缺乏干细胞抗原-1(Sca-1)的小鼠在骨骼肌再生中表现出缺陷,其特征是纤维化增加和细胞外基质的周转率降低。在本研究中,我们证明 Sca-1(-/-)小鼠在招募可溶性 IgM 以及随后的 C3 补体到受损肌肉的能力上存在缺陷。我们假设这种招募缺陷延迟或减少了巨噬细胞的吞噬作用,导致了这些小鼠先前观察到的纤维化表型。由于可溶性 IgM 的主要来源是腹膜 B-1a 细胞,这是自我更新 B 细胞的一个子集,我们分析了这个细胞群体,并观察到 Sca-1(-/-)动物中的 B-1a 细胞数量显著减少。有趣的是,这些小鼠对缺血再灌注损伤有保护作用,这是一种急性炎症反应,也由 IgM 和 C3 补体介导,之前的研究表明这种反应与 B-1a 细胞的缺陷有关。总之,这些数据揭示了 Sca-1 在肌肉再生过程中的固有免疫中的新作用,并表明进一步阐明免疫肌生成过程将有助于更好地理解和促进肌肉再生。

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