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严重的肌肉失能会引发健康男性细胞外基质的早期重塑和驻留干细胞向脂肪细胞分化。

Severe Muscle Deconditioning Triggers Early Extracellular Matrix Remodeling and Resident Stem Cell Differentiation into Adipocytes in Healthy Men.

机构信息

DMEM, Montpellier University, Institut National de la Recherche pour l'Agriculture, l'Alimentation et l'Environnement (INRAE), 2 Place Pierre Viala, Bat. 22, 34060 Montpellier, France.

Department of Cellular and Molecular Medicine, Eric J. Poulin Centre for Neuromuscular Disease, Faculty of Medicine, University of Ottawa, Ottawa, ON K1H 8M5, Canada.

出版信息

Int J Mol Sci. 2022 May 14;23(10):5489. doi: 10.3390/ijms23105489.

Abstract

Besides the loss of muscle mass and strength, increased intermuscular adipose tissue (IMAT) is now a well-recognized consequence of muscle deconditioning as experienced in prolonged microgravity. IMAT content may alter the muscle stem cell microenvironment. We hypothesized that extracellular matrix structure alterations and microenvironment remodeling induced by fast and severe muscle disuse could modulate fibro-adipogenic progenitor fate and behavior. We used the dry immersion (DI) model that rapidly leads to severe muscle deconditioning due to drastic hypoactivity. We randomly assigned healthy volunteers (n = 18 men) to the control group (only DI, n = 9; age = 33.8 ± 4) or to the DI + thigh cuff group (n = 9; age = 33.4 ± 7). Participants remained immersed in the supine position in a thermo-neutral water bath for 5 days. We collected vastus lateralis biopsies before (baseline) and after DI. 5 days of DI are sufficient to reduce muscle mass significantly, as indicated by the decreased myofiber cross-sectional area in vastus lateralis samples (−18% vs. baseline, p < 0.05). Early and late adipogenic differentiation transcription factors protein levels were upregulated. Platelet-derived growth Factors alpha (PDGFR⍺) protein level and PDGFR⍺-positive cells were increased after 5 days of DI. Extracellular matrix structure was prone to remodeling with an altered ECM composition with 4 major collagens, fibronectin, and Connective Tissue Growth Factor mRNA decreases (p < 0.001 vs. baseline). Wearing thigh cuffs did not have any preventive effect on the measured variable. Our results show that altered extracellular matrix structure and signaling pathways occur early during DI, a severe muscle wasting model, favoring fibro-adipogenic progenitor differentiation into adipocytes.

摘要

除了肌肉质量和力量的丧失外,在长期微重力环境下经历的肌肉失健还会导致肌肉间脂肪组织(IMAT)增加,这是一种公认的后果。IMAT 含量可能会改变肌肉干细胞的微环境。我们假设,由于快速和严重的肌肉失用引起的细胞外基质结构改变和微环境重塑可能会调节成纤维脂肪祖细胞的命运和行为。我们使用了干燥浸泡(DI)模型,由于剧烈的低活性,该模型会迅速导致严重的肌肉失健。我们随机分配了 18 名男性健康志愿者(年龄 33.8±4 岁)到对照组(仅 DI,n=9)或 DI+大腿袖套组(n=9;年龄 33.4±7 岁)。参与者在热中性水浴中保持仰卧位 5 天。我们在 DI 前(基线)和 DI 后采集了股外侧肌活检。5 天的 DI 足以显著减少肌肉质量,如股外侧肌样本中的肌纤维横截面积减少(-18%与基线相比,p<0.05)所示。早期和晚期成脂分化转录因子蛋白水平上调。血小板衍生生长因子α(PDGFRα)蛋白水平和 PDGFRα阳性细胞在 DI 后 5 天增加。细胞外基质结构易于重塑,主要有 4 种胶原蛋白、纤连蛋白和结缔组织生长因子的 mRNA 减少(与基线相比,p<0.001)。戴大腿袖套对测量变量没有任何预防作用。我们的结果表明,在 DI 期间,即严重肌肉消耗模型中,细胞外基质结构和信号通路早期发生改变,有利于成纤维脂肪祖细胞分化为脂肪细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb54/9143135/6c0f88b16462/ijms-23-05489-g001.jpg

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