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Bioengineered constructs combined with exercise enhance stem cell-mediated treatment of volumetric muscle loss

机译:生物工程构造与运动相结合可增强干细胞介导的容积性肌肉丢失的治疗

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摘要

Volumetric muscle loss (VML) is associated with loss of skeletal muscle function, and current treatments show limited efficacy. Here we show that bioconstructs suffused with genetically-labelled muscle stem cells (MuSCs) and other muscle resident cells (MRCs) are effective to treat VML injuries in mice. Imaging of bioconstructs implanted in damaged muscles indicates MuSCs survival and growth, and ex vivo analyses show force restoration of treated muscles. Histological analysis highlights myofibre formation, neovascularisation, but insufficient innervation. Both innervation and in vivo force production are enhanced when implantation of bioconstructs is followed by an exercise regimen. Significant improvements are also observed when bioconstructs are used to treat chronic VML injury models. Finally, we demonstrate that bioconstructs made with human MuSCs and MRCs can generate functional muscle tissue in our VML model. These data suggest that stem cell-based therapies aimed to engineer tissue in vivo may be effective to treat acute and chronic VML.
机译:容量性肌肉丢失(VML)与骨骼肌功能丧失相关,目前的治疗方法疗效有限。在这里,我们显示了带有基因标记的肌肉干细胞(MuSCs)和其他肌肉驻留细胞(MRC)的生物构造物可有效治疗小鼠的VML损伤。植入受损肌肉中的生物构造物的成像表明MuSC的存活和生长,而离体分析表明所治疗肌肉的力量得以恢复。组织学分析显示肌纤维形成,新生血管形成,但神经支配不足。当植入生物构造体并进行运动方案后,神经支配力和体内力的产生均得到增强。当使用生物构造物治疗慢性VML损伤模型时,也观察到了显着改善。最后,我们证明了由人类MuSC和MRC制成的生物构造可以在我们的VML模型中产生功能性肌肉组织。这些数据表明,旨在在体内工程化组织的基于干细胞的疗法可能有效治疗急性和慢性VML。

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