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使用接种肌肉衍生干细胞(MDSCs)的原位纤维蛋白凝胶铸型修复容积性肌肉损失损伤。

Volumetric muscle loss injury repair using in situ fibrin gel cast seeded with muscle-derived stem cells (MDSCs).

作者信息

Matthias Nadine, Hunt Samuel D, Wu Jianbo, Lo Jonathan, Smith Callahan Laura A, Li Yong, Huard Johnny, Darabi Radbod

机构信息

Center for Stem Cell and Regenerative Medicine (CSCRM) and the Brown Foundation Institute of Molecular Medicine for the Prevention of Human Diseases (IMM), United States.

Center for Stem Cell and Regenerative Medicine (CSCRM) and the Brown Foundation Institute of Molecular Medicine for the Prevention of Human Diseases (IMM), United States; The Graduate School of Biomedical Sciences, The University of Texas Health Science Center at Houston, Houston, TX 77030, United States; Vivian L. Smith Department of Neurosurgery, The University of Texas Health Science Center at Houston, Houston, TX 77030, United States; Department of Nanomedicine and Biomedical Engineering, The University of Texas Health Science Center at Houston, Houston, TX 77030, United States.

出版信息

Stem Cell Res. 2018 Mar;27:65-73. doi: 10.1016/j.scr.2018.01.008. Epub 2018 Jan 9.

Abstract

Volumetric muscle defect, caused by trauma or combat injuries, is a major health concern leading to severe morbidity. It is characterized by partial or full thickness loss of muscle and its bio-scaffold, resulting in extensive fibrosis and scar formation. Therefore, the ideal therapeutic option is to use stem cells combined with bio-scaffolds to restore muscle. For this purpose, muscle-derived stem cells (MDSCs) are a great candidate due to their unique multi-lineage differentiation potential. In this study, we evaluated the regeneration potential of MDSCs for muscle loss repair using a novel in situ fibrin gel casting. Muscle defect was created by a partial thickness wedge resection in the tibialis anterior (TA) muscles of NSG mice which created an average of 25% mass loss. If untreated, this defect leads to severe muscle fibrosis. Next, MDSCs were delivered using a novel in situ fibrin gel casting method. Our results demonstrated MDSCs are able to engraft and form new myofibers in the defect when casted along with fibrin gel. LacZ labeled MDSCs were able to differentiate efficiently into new myofibers and significantly increase muscle mass. This was also accompanied by significant reduction of fibrotic tissue in the engrafted muscles. Furthermore, transplanted cells also contributed to new vessel formation and satellite cell seeding. These results confirmed the therapeutic potential of MDSCs and feasibility of direct in situ casting of fibrin/MDSC mixture to repair muscle mass defects.

摘要

由创伤或战斗损伤引起的体积性肌肉缺损是一个导致严重发病的主要健康问题。其特征是肌肉及其生物支架的部分或全层厚度丧失,导致广泛的纤维化和瘢痕形成。因此,理想的治疗选择是使用干细胞与生物支架相结合来修复肌肉。出于这个目的,肌肉衍生干细胞(MDSCs)因其独特的多谱系分化潜能而成为一个很好的候选者。在本研究中,我们使用一种新型的原位纤维蛋白凝胶浇铸法评估了MDSCs对肌肉损失修复的再生潜能。通过对NSG小鼠胫骨前肌(TA)进行部分厚度楔形切除术制造肌肉缺损,平均造成25%的质量损失。如果不进行治疗,这种缺损会导致严重的肌肉纤维化。接下来,使用新型的原位纤维蛋白凝胶浇铸法递送MDSCs。我们的结果表明,当与纤维蛋白凝胶一起浇铸时,MDSCs能够在缺损处植入并形成新的肌纤维。LacZ标记的MDSCs能够有效地分化为新的肌纤维,并显著增加肌肉质量。这还伴随着植入肌肉中纤维化组织的显著减少。此外,移植的细胞还促进了新血管的形成和卫星细胞的播种。这些结果证实了MDSCs的治疗潜能以及将纤维蛋白/MDSC混合物直接原位浇铸以修复肌肉质量缺损的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1fb/5851454/5e44d760256c/nihms949549f1.jpg

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