Torrente Yvan, Camirand Geoffrey, Pisati Federica, Belicchi Marzia, Rossi Barbara, Colombo Fabio, El Fahime Mosthapha, Caron Nicolas J, Issekutz Andrew C, Constantin Gabriela, Tremblay Jacques P, Bresolin Nereo
Department of Neurological Sciences, Stem Cell Laboratory, University of Milan, Padiglione Ponti, Ospedale Policlinico, via Francesco Sforza 35, 20122 Milan, Italy.
J Cell Biol. 2003 Aug 4;162(3):511-20. doi: 10.1083/jcb.200210006. Epub 2003 Jul 28.
Attempts to repair muscle damage in Duchenne muscular dystrophy (DMD) by transplanting skeletal myoblasts directly into muscles are faced with the problem of the limited migration of these cells in the muscles. The delivery of myogenic stem cells to the sites of muscle lesions via the systemic circulation is a potential alternative approach to treat this disease. Muscle-derived stem cells (MDSCs) were obtained by a MACS(R) multisort method. Clones of MDSCs, which were Sca-1+/CD34-/L-selectin+, were found to adhere firmly to the endothelium of mdx dystrophic muscles after i.v. or i.m. injections. The subpopulation of Sca-1+/CD34- MDSCs expressing L-selectin was called homing MDSCs (HMDSCs). Treatment of HMDSCs with antibodies against L-selectin prevented adhesion to the muscle endothelium. Importantly, we found that vascular endothelium from striate muscle of young mdx mice expresses mucosal addressin cell adhesion molecule-1 (MAdCAM-1), a ligand for L-selectin. Our results showed for the first time that the expression of the adhesion molecule L-selectin is important for muscle homing of MDSCs. This discovery will aid in the improvement of a potential therapy for muscular dystrophy based on the systemic delivery of MDSCs.
通过将骨骼肌成肌细胞直接移植到肌肉中来修复杜氏肌营养不良症(DMD)的肌肉损伤,面临着这些细胞在肌肉中迁移受限的问题。通过体循环将肌源性干细胞输送到肌肉损伤部位是治疗这种疾病的一种潜在替代方法。肌肉衍生干细胞(MDSCs)通过MACS®多分选方法获得。发现MDSCs的克隆,即Sca-1+/CD34-/L-选择素+,在静脉内或肌肉内注射后能牢固地粘附于mdx营养不良肌肉的内皮。表达L-选择素的Sca-1+/CD34-MDSCs亚群被称为归巢MDSCs(HMDSCs)。用抗L-选择素抗体处理HMDSCs可阻止其粘附于肌肉内皮。重要的是,我们发现年轻mdx小鼠横纹肌的血管内皮表达粘膜地址素细胞粘附分子-1(MAdCAM-1),它是L-选择素的配体。我们的结果首次表明粘附分子L-选择素的表达对MDSCs向肌肉归巢很重要。这一发现将有助于改进基于MDSCs体循环输送的肌营养不良症潜在治疗方法。