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Clonogenic, myogenic progenitors expressing MCAM/CD146 are incorporated as adventitial reticular cells in the microvascular compartment of human post-natal skeletal muscle

机译:表达MCAM / CD146的具有克隆性,成肌性的祖细胞作为外膜网状细胞掺入人出生后骨骼肌的微血管区室

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摘要

Recent observation identifies subendothelial (mural) cells expressing MCAM, a specific system of clonogenic, self-renewing, osteoprogenitors (a.k.a, "mesenchymal stem cells") in the microvascular compartment of post-natal human bone marrow (BM). In this study, we used MCAM/CD146, as a marker to localize, isolate and assay subendothelial clonogenic cells from the microvasculature of postnatal human skeletal muscle. We show here that these cells share with their BM counterpart, anatomic position (subendothelial/adventitial) and ex vivo clonogenicity (CFU-Fs). When assayed under the stringent conditions, these cells display a high spontaneous myogenic potential (independent of co-culture with myoblasts or of in vivo fusion with local myoblasts), which is otherwise only attained in cultures of satellite cells. These muscle-derived mural cells activated a myogenic program in culture. Cultured CD146+ cells expressed the myogenic factors (Pax7, Pax3 and Myf5), NCAM/CD56, desmin as well as proteins characteristic of more advanced myogenic differentiation, such as myosin heavy chain. In vivo, these cells spontaneously generate myotubes and myofibrils. These data identify the anatomy and phenotype of a novel class of committed myogenic progenitor in human post-natal skeletal muscle of subendothelial cells associated with the abluminal surface of microvascular compartment distinct from satellite cells.
机译:最近的观察鉴定出了表达MCAM的内皮下(壁)细胞,MCAM是产后人骨髓(BM)的微血管区室中的克隆形成的,自我更新的骨祖细胞(又称“间充质干细胞”)的特定系统。在这项研究中,我们使用MCAM / CD146作为标记,从出生后人骨骼肌的微脉管系统中定位,分离和测定内皮下克隆形成细胞。我们在这里显示这些细胞与其BM对应物,解剖位置(内皮下/外膜)和离体克隆形成性(CFU-Fs)共享。当在严格条件下测定时,这些细胞显示出高自发的成肌潜能(独立于与成肌细胞的共培养或与局部成肌细胞的体内融合),否则只能在卫星细胞的培养物中获得。这些源自肌肉的壁细胞激活了培养过程中的肌源性程序。培养的CD146 +细胞表达了肌源性因子(Pax7,Pax3和Myf5),NCAM / CD56,结蛋白以及具有更高级肌源性分化特征的蛋白质,例如肌球蛋白重链。在体内,这些细胞自发产生肌管和肌原纤维。这些数据确定了人类出生后骨骼肌下皮层细胞与微血管区室表面与卫星细胞不同的新型定型成肌祖细胞的解剖结构和表型。

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