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肌腱结合部:一个有利于腓肠肌萎缩后对阻力训练进行短期适应的微环境。

Myotendinous junction: a microenvironment favorable for short-term adaptations to resistance training following gastrocnemius muscle atrophy.

作者信息

Rocha-Braga Lara Caetano, Pimentel Neto Jurandyr, Gomes Isabella, Ciena Adriano Polican

机构信息

Laboratory of Morphology and Physical Activity (LAMAF), Institute of Biosciences, São Paulo State University, Rio Claro, São Paulo, Brazil.

出版信息

Front Physiol. 2025 May 14;16:1493820. doi: 10.3389/fphys.2025.1493820. eCollection 2025.

Abstract

The myotendinous junction (MTJ) is an interface region between the skeletal muscle fibers and the tendon, specialized in force transmission, and has a wide capacity to adapt to different stimuli. Disuse muscle atrophy is a deleterious effect of joint immobilization, which is used as a conservative treatment for bone, muscle, and joint injuries and promotes a significant functional decline. Physical exercise is an effective therapeutic modality in combating muscle atrophy, especially resistance training that promotes hypertrophic responses. We aimed to investigate the plasticity of the MTJ in rats subjected to joint immobilization, followed by resistance training in a short period (7 and 14 days). Forty-eight male rats (90 days old) were used and divided into groups ( = 8): Control (C), Immobilized (I), Trained (T), and Immobilized Trained (IT). The MTJ samples of gastrocnemius muscle were collected and processed for morphoquantitative analyses using transmission electron microscopy (MTJ and sarcomeres morphometry) and immunofluorescence techniques for collagen XXII, satellite cells and telocytes. We observed that the I group exhibited a reduction in muscle mass, which was associated with a decrease in the length of sarcoplasmic invaginations and evaginations, as well as reductions in belly and proximal sarcomere length. Conversely, the IT groups demonstrated a progressive increase in muscle mass, with significant improvements from 7 days ( < 0.01) to 14 days ( < 0.0001). The most pronounced adaptations in sarcoplasmic projections were observed in the IT14 group, which exhibited: a significant increase in the length of sarcoplasmic invaginations ( < 0.05); a marked increase in sarcoplasmic evaginations ( < 0.001); a substantial enlargement of the belly sarcomere ( < 0.0001) and proximal sarcomere ( < 0.0001); and a notable expansion of the collagen XXII perimeter ( < 0.001). We concluded that the joint immobilization resulted in muscle atrophy due to disuse, which led to a decrease in sarcoplasmic projections in the MTJ, a reduction in the perimeter of collagen XXII, and, consequently, fragility of the region. Short-term training demonstrated positive effects on functional improvement, partial recovery of muscle mass, and induction of hypertrophic responses, indicating positive repercussions for the structural recovery of the myotendinous region.

摘要

肌腱结合部(MTJ)是骨骼肌纤维与肌腱之间的一个界面区域,专门负责力的传递,并且具有广泛的能力来适应不同的刺激。废用性肌肉萎缩是关节固定的一种有害影响,关节固定被用作治疗骨骼、肌肉和关节损伤的一种保守疗法,但会导致显著的功能衰退。体育锻炼是对抗肌肉萎缩的一种有效治疗方式,尤其是能促进肥大反应的抗阻训练。我们旨在研究关节固定后再进行短期(7天和14天)抗阻训练的大鼠中MTJ的可塑性。使用了48只90日龄雄性大鼠,并将其分为几组(每组n = 8):对照组(C)、固定组(I)、训练组(T)和固定训练组(IT)。采集腓肠肌的MTJ样本,并使用透射电子显微镜(MTJ和肌节形态计量学)以及针对胶原蛋白XXII、卫星细胞和端细胞的免疫荧光技术进行形态定量分析。我们观察到,I组的肌肉质量减少,这与肌浆内陷和外突长度的减少以及肌腹和近端肌节长度的减少有关。相反,IT组的肌肉质量逐渐增加,从7天(P < 0.01)到14天(P < 0.0001)有显著改善。在IT14组中观察到肌浆突起的适应性变化最为明显,表现为:肌浆内陷长度显著增加(P < 0.05);肌浆外突显著增加(P < 0.001);肌腹肌节(P < 0.0001)和近端肌节(P < 0.0001)大幅增大;以及胶原蛋白XXII周长显著扩大(P < 0.001)。我们得出结论,关节固定由于废用导致肌肉萎缩,这导致MTJ中肌浆突起减少、胶原蛋白XXII周长减小,进而导致该区域的脆弱性。短期训练对功能改善、肌肉质量的部分恢复以及肥大反应的诱导显示出积极影响,表明对肌腱结合区域的结构恢复有积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e52e/12116370/c115884c2f1a/fphys-16-1493820-g001.jpg

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