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The superior regenerative potential of muscle-derived stem cells for articular cartilage repair is attributed to high cell survival and chondrogenic potential

机译:肌肉源性干细胞在关节软骨修复中的优越再生潜能归因于高细胞存活率和软骨生成潜能

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摘要

Three populations of muscle-derived cells (PP1, PP3, and PP6) were isolated from mouse skeletal muscle using modified preplate technique and retrovirally transduced with BMP4/GFP.  In vitro, the PP1 cells (fibroblasts) proliferated significantly slower than the PP3 (myoblasts) and PP6 cells (muscle-derived stem cells); the PP1 and PP6 cells showed a superior rate of survival compared with PP3 cells under oxidative stress; and the PP6 cells showed significantly superior chondrogenic capabilities than PP1 and PP3 cells. In vivo, the PP6 cells promoted superior cartilage regeneration compared with the other muscle-derived cell populations. The cartilage defects in the PP6 group had significantly higher histological scores than those of the other muscle-derived cell groups, and GFP detection revealed that the transplanted PP6 cells showed superior in vivo cell survival and chondrogenic capabilities compared with the PP1 and PP3 cells. PP6 cells (muscle-derived stem cells) are superior to other primary muscle-derived cells for use as a cellular vehicle for BMP4-based ex vivo gene therapy to heal full-thickness osteo-chondral defects. The superiority of the PP6/muscle-derived stem cells appears to be attributable to a combination of increased rate of in vivo survival and superior chondrogenic differentiation capacity.
机译:使用改良的预平板技术从小鼠骨骼肌中分离出三个群体的肌肉衍生细胞(PP1,PP3和PP6),并用BMP4 / GFP逆转录病毒进行了转导。在体外,PP1细胞(成纤维细胞)的增殖速度明显慢于PP3(成肌细胞)和PP6细胞(肌肉来源的干细胞)。 PP1和PP6细胞在氧化应激下比PP3细胞具有更高的存活率。 PP6细胞的成软骨能力明显优于PP1和PP3细胞。在体内,与其他肌肉来源的细胞群相比,PP6细胞促进了优越的软骨再生。 PP6组的软骨缺损的组织学评分明显高于其他肌肉来源的细胞组,并且GFP检测显示,与PP1和PP3细胞相比,移植的PP6细胞显示出优异的体内细胞存活和软骨形成能力。 PP6细胞(源自肌肉的干细胞)优于其他源自原代肌肉的细胞,可用作基于BMP4的离体基因治疗以治愈全厚度骨软骨缺损的细胞载体。 PP6 /肌肉来源的干细胞的优越性似乎归因于体内存活率的提高和卓越的软骨形成分化能力的结合。

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