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拉伸负载组织工程化的人肌腱构建体刺激肌管形成。

Tensile Loaded Tissue-Engineered Human Tendon Constructs Stimulate Myotube Formation.

机构信息

Department of Orthopedic Surgery, Institute of Sports Medicine Copenhagen, Copenhagen University Hospital-Bispebjerg-Frederiksberg, Copenhagen, Denmark.

Department of Clinical Medicine, Center for Healthy Aging, University of Copenhagen, Copenhagen, Denmark.

出版信息

Tissue Eng Part A. 2023 May;29(9-10):292-305. doi: 10.1089/ten.TEA.2022.0173. Epub 2023 Mar 1.

Abstract

Skeletal muscle possesses adaptability to mechanical loading and regenerative potential following muscle injury due to muscle stem cell activity. So far, it is known that muscle stem cell activity is supported by the roles of several interstitial cells within skeletal muscle in response to muscle damage. The adjacent tendon is also exposed to repetitive mechanical loading and possesses plasticity like skeletal muscle. However, the interplay between the skeletal muscle and adjacent tendon tissue has not been fully investigated. In this study, we tested whether factors released by three-dimensional engineered human tendon constructs in response to uniaxial tensile loading can stimulate the proliferation and differentiation of human-derived myogenic cells (myoblasts). Tendon constructs were subjected to repetitive mechanical loading (4% strain at 0.5 Hz for 4 h) and nonrepetitive loading (0% strain at 0 Hz for 4 h), and the conditioned media from mechanically loaded and nonmechanically loaded control constructs were applied to myoblasts. Immunofluorescence analysis revealed both an increase of myotube fusion index (≥5 nuclei within one desmin+ myotube) and the myotube diameter when conditioned medium from mechanically loaded tendon constructs was applied. Myostatin, myosin heavy chain 7, and gene expressions were downregulated in myotubes treated with conditioned medium from mechanically loaded tendon constructs. However, proliferative potential (number of Ki67+ and bromodeoxyuridine+ myoblasts) did not differ between the two groups. These results indicate that tendon fibroblasts enhance myotube formation by mechanical loading-induced factors. Our finding suggests that mechanical loading affects the signaling interplay between skeletal muscle and tendon tissue and is thus important for musculoskeletal tissue development and regeneration in humans. Impact statement The interplay between satellite cells and various types of resident cells within the skeletal muscle for muscle regeneration has been extensively studied. However, even though tendon tissue is located adjacent to skeletal muscle tissue and cells in these tissues are exposed to repetitive mechanical loading together, the interaction between muscle and tendon tissues for muscle regeneration remains to be elucidated. In this study, we report that the conditioned media from engineered human tendon tissues undergoing repetitive tensile mechanical loading enhanced myotube formation. Our findings extend the fundamental understanding of the crosstalk between adjacent tissues of the muscle-tendon unit.

摘要

骨骼肌具有适应机械负荷的能力,并在肌肉损伤后通过肌肉干细胞活动具有再生潜力。到目前为止,人们已经知道,肌肉干细胞的活动是由骨骼肌内几种间质细胞在肌肉损伤后的作用所支持的。相邻的肌腱也受到重复的机械加载的影响,并具有与骨骼肌相似的可塑性。然而,骨骼肌和相邻的肌腱组织之间的相互作用尚未得到充分研究。在这项研究中,我们测试了三维工程化的人肌腱构建体在受到单轴拉伸加载时释放的因子是否可以刺激人源性成肌细胞(成肌细胞)的增殖和分化。肌腱构建体受到重复机械加载(0.5 Hz 时 4%应变,持续 4 小时)和非重复加载(0 Hz 时 0%应变,持续 4 小时),并将机械加载和非机械加载对照构建体的条件培养基应用于成肌细胞。免疫荧光分析显示,当应用机械加载的肌腱构建体的条件培养基时,肌管融合指数(一个 desmin+肌管内有≥5 个核)和肌管直径都增加。用机械加载的肌腱构建体的条件培养基处理的肌管中,肌肉生长抑制素、肌球蛋白重链 7 和 基因的表达下调。然而,两组之间的增殖潜力(Ki67+和溴脱氧尿苷+成肌细胞的数量)没有差异。这些结果表明,肌腱成纤维细胞通过机械加载诱导的因子增强肌管形成。我们的发现表明,机械加载会影响骨骼肌和肌腱组织之间的信号相互作用,因此对人类肌肉骨骼组织的发育和再生很重要。

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