Rahman M Mamunur, Ghosh Mallika, Subramani Jaganathan, Fong Guo-Hua, Carlson Morgan E, Shapiro Linda H
Center for Vascular Biology and University of Connecticut Health Center, Farmington, Connecticut, USA.
Stem Cells. 2014 Jun;32(6):1564-77. doi: 10.1002/stem.1610.
CD13 is a multifunctional cell surface molecule that regulates inflammatory and angiogenic mechanisms in vitro, but its contribution to these processes in vivo or potential roles in stem cell biology remains unexplored. We investigated the impact of loss of CD13 on a model of ischemic skeletal muscle injury that involves angiogenesis, inflammation, and stem cell mobilization. Consistent with its role as an inflammatory adhesion molecule, lack of CD13 altered myeloid trafficking in the injured muscle, resulting in cytokine profiles skewed toward a prohealing environment. Despite this healing-favorable context, CD13(KO) animals showed significantly impaired limb perfusion with increased necrosis, fibrosis, and lipid accumulation. Capillary density was correspondingly decreased, implicating CD13 in skeletal muscle angiogenesis. The number of CD45-/Sca1-/α7-integrin+/β1-integrin+ satellite cells was markedly diminished in injured CD13(KO) muscles and adhesion of isolated CD13(KO) satellite cells was impaired while their differentiation was accelerated. Bone marrow transplantation studies showed contributions from both host and donor cells to wound healing. Importantly, CD13 was coexpressed with Pax7 on isolated muscle-resident satellite cells. Finally, phosphorylated-focal adhesion kinase and ERK levels were reduced in injured CD13(KO) muscles, consistent with CD13 regulating satellite cell adhesion, potentially contributing to the maintenance and renewal of the satellite stem cell pool and facilitating skeletal muscle regeneration.
CD13是一种多功能细胞表面分子,在体外可调节炎症和血管生成机制,但其在体内对这些过程的作用或在干细胞生物学中的潜在作用仍未得到探索。我们研究了CD13缺失对缺血性骨骼肌损伤模型的影响,该模型涉及血管生成、炎症和干细胞动员。与其作为炎症粘附分子的作用一致,CD13的缺失改变了受损肌肉中的髓系细胞运输,导致细胞因子谱向有利于愈合的环境倾斜。尽管存在这种有利于愈合的环境,但CD13基因敲除(KO)动物的肢体灌注明显受损,坏死、纤维化和脂质积累增加。毛细血管密度相应降低,提示CD13参与骨骼肌血管生成。在受损的CD13 KO肌肉中,CD45-/Sca1-/α7-整合素+/β1-整合素+卫星细胞的数量明显减少,分离的CD13 KO卫星细胞的粘附受损,而其分化加速。骨髓移植研究表明宿主细胞和供体细胞对伤口愈合均有贡献。重要的是,CD13与Pax7在分离的肌肉驻留卫星细胞上共表达。最后,受损的CD13 KO肌肉中磷酸化粘着斑激酶和ERK水平降低,这与CD13调节卫星细胞粘附一致,可能有助于维持和更新卫星干细胞池并促进骨骼肌再生。