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肌肉干细胞与肩袖损伤

Muscle stem cells and rotator cuff injury.

作者信息

Gupta Ranjan, Rao Rohan, Johnston Tyler R, Uong Jennifer, Yang Daniel S, Lee Thay Q

机构信息

Department of Orthopaedics, University of California, Irvine, CA, USA.

Congress Medical Foundation, Pasadena, CA, USA.

出版信息

JSES Rev Rep Tech. 2021 May 21;1(3):186-193. doi: 10.1016/j.xrrt.2021.05.001. eCollection 2021 Aug.

Abstract

The incidence of reinjury after treatment of rotator cuff tears (RCTs) remains very high despite the variety of nonoperative treatments and the high volume of surgical interventions performed. Muscle stem cells (MuSCs), also known as satellite cells, have risen to the forefront of rotator cuff tear research as a potential adjuvant therapy to aid unsatisfactory surgical outcomes. MuSCs are adult stem cells exhibiting the capacity to proliferate and self-renew, both symmetrically and asymmetrically. As part of this niche, they have been shown to adopt an activated phenotype in response to musculoskeletal injury and decrease their cellular populations during aging, implicating them as key players in both pathologic and normal physiological processes. While commonly connected to the regenerative phase of muscle healing, MuSCs also have the potential to differentiate into adverse morphologies. For instance, if MuSCs differentiate into adipocytes, the ensuing fatty infiltration serves as an obstacle to proper muscle healing and has been associated with the failure of surgical management of RCTs. With the potential to both harm and heal, we have identified MuSCs as a key player in RCT repair. To better understand this dichotomy, the following review will identify key studies regarding the morphology, function, and behavior of MuSCs with respect to RCTs and healing.

摘要

尽管有多种非手术治疗方法,且手术干预的数量也很多,但肩袖撕裂(RCT)治疗后的再损伤发生率仍然很高。肌肉干细胞(MuSCs),也称为卫星细胞,作为一种潜在的辅助治疗方法,已成为肩袖撕裂研究的前沿,以帮助改善不尽人意的手术结果。MuSCs是成体干细胞,具有对称和不对称增殖及自我更新的能力。作为这个生态位的一部分,它们已被证明在响应肌肉骨骼损伤时会采用激活的表型,并在衰老过程中减少其细胞数量,这表明它们在病理和正常生理过程中都是关键参与者。虽然通常与肌肉愈合的再生阶段相关,但MuSCs也有分化为不良形态的潜力。例如,如果MuSCs分化为脂肪细胞,随之而来的脂肪浸润会阻碍肌肉的正常愈合,并与RCT手术治疗的失败有关。鉴于MuSCs既有造成损害的可能性,又有促进愈合的潜力,我们已将其确定为RCT修复中的关键因素。为了更好地理解这种二分法,以下综述将确定关于MuSCs在RCT和愈合方面的形态、功能和行为的关键研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/075b/10426486/105556ab2d7e/gr1.jpg

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