首页> 美国卫生研究院文献>BioResearch Open Access >Transplantated Mesenchymal Stem Cells Derived from Embryonic Stem Cells Promote Muscle Regeneration and Accelerate Functional Recovery of Injured Skeletal Muscle
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Transplantated Mesenchymal Stem Cells Derived from Embryonic Stem Cells Promote Muscle Regeneration and Accelerate Functional Recovery of Injured Skeletal Muscle

机译:胚胎干细胞衍生的间充质干细胞移植可促进肌肉再生并加速受伤骨骼肌的功能恢复。

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摘要

We previously established that mesenchymal stem cells originating from mouse embryonic stem (ES) cells (E-MSCs) showed markedly higher potential for differentiation into skeletal muscles in vitro than common mesenchymal stem cells (MSCs). Further, the E-MSCs exhibited a low risk for teratoma formation. Here we evaluate the potential of E-MSCs for differentiation into skeletal muscles in vivo and reveal the regeneration and functional recovery of injured muscle by transplantation. E-MSCs were transplanted into the tibialis anterior (TA) muscle 24 h following direct clamping. After transplantation, the myogenic differentiation of E-MSCs, TA muscle regeneration, and re-innervation were morphologically analyzed. In addition, footprints and gaits of each leg under spontaneous walking were measured by CatWalk XT, and motor functions of injured TA muscles were precisely analyzed. Results indicate that >60% of transplanted E-MSCs differentiated into skeletal muscles. The cross-sectional area of the injured TA muscles of E-MSC–transplanted animals increased earlier than that of control animals. E-MSCs also promotes re-innervation of the peripheral nerves of injured muscles. Concerning function of the TA muscles, we reveal that transplantation of E-MSCs promotes the recovery of muscles. This is the first report to demonstrate by analysis of spontaneous walking that transplanted cells can accelerate the functional recovery of injured muscles. Taken together, the results show that E-MSCs have a high potential for differentiation into skeletal muscles in vivo as well as in vitro. The transplantation of E-MSCs facilitated the functional recovery of injured muscles. Therefore, E-MSCs are an efficient cell source in transplantation.
机译:我们先前已经确定,与普通的间充质干细胞(MSCs)相比,源自小鼠胚胎干(ES)细胞(E-MSC)的间充质干细胞在体外显示出分化为骨骼肌的潜力更高。此外,E-MSC表现出畸胎瘤形成的低风险。在这里,我们评估了E-MSC在体内分化为骨骼肌的潜力,并揭示了移植后受损肌肉的再生和功能恢复。在直接钳夹后24h,将E-MSCs移植到胫前肌(TA)。移植后,形态学分析了E-MSC的肌源性分化,TA肌肉再生和再支配。此外,通过CatWalk XT测量了自发行走时每条腿的足迹和步态,并精确分析了受伤的TA肌肉的运动功能。结果表明,> 60%的移植E-MSC分化为骨骼肌。 E-MSC移植的动物受伤的TA肌肉的横截面积比对照组的动物增加得更快。 E-MSC还促进受伤肌肉的周围神经的重新神经支配。关于TA肌肉的功能,我们揭示了E-MSC的移植促进了肌肉的恢复。这是通过自发行走分析证明移植细胞可以加速受伤肌肉功能恢复的第一份报告。两者合计,结果表明E-MSCs在体内和体外均具有分化为骨骼肌的高潜力。 E-MSC的移植促进了受伤肌肉的功能恢复。因此,E-MSC是移植中的有效细胞来源。

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