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肩袖撕裂减少肌肉纤维比力的产生,并诱导巨噬细胞的积累和自噬。

Rotator cuff tear reduces muscle fiber specific force production and induces macrophage accumulation and autophagy.

机构信息

Department of Orthopaedic Surgery, University of Michigan Medical School, 109 Zina Pitcher Place, BSRB 2017, Ann Arbor, Michigan 48109-2200, USA.

出版信息

J Orthop Res. 2012 Dec;30(12):1963-70. doi: 10.1002/jor.22168. Epub 2012 Jun 13.

Abstract

Full-thickness tears to the rotator cuff can cause severe pain and disability. Untreated tears progress in size and are associated with muscle atrophy and an infiltration of fat to the area, a condition known as "fatty degeneration." To improve the treatment of rotator cuff tears, a greater understanding of the changes in the contractile properties of muscle fibers and the molecular regulation of fatty degeneration is essential. Using a rat model of rotator cuff injury, we measured the force generating capacity of individual muscle fibers and determined changes in muscle fiber type distribution that develop after a full thickness rotator cuff tear. We also measured the expression of mRNA and miRNA transcripts involved in muscle atrophy, lipid accumulation, and matrix synthesis. We hypothesized that a decrease in specific force of rotator cuff muscle fibers, an accumulation of type IIb fibers, and an upregulation in fibrogenic, adipogenic, and inflammatory gene expression occur in torn rotator cuff muscles. Thirty days following rotator cuff tear, we observed a reduction in muscle fiber force production, an induction of fibrogenic, adipogenic, and autophagocytic mRNA and miRNA molecules, and a dramatic accumulation of macrophages in areas of fat accumulation.

摘要

肩袖全层撕裂可导致严重疼痛和残疾。未经治疗的撕裂会逐渐增大,并伴有肌肉萎缩和脂肪浸润到该区域,这种情况被称为“脂肪变性”。为了改善肩袖撕裂的治疗效果,必须深入了解肌肉纤维收缩特性的变化和脂肪变性的分子调控。我们使用肩袖损伤的大鼠模型,测量了单个肌纤维的产生力的能力,并确定了全层肩袖撕裂后出现的肌纤维类型分布的变化。我们还测量了参与肌肉萎缩、脂质积累和基质合成的 mRNA 和 miRNA 转录本的表达。我们假设在撕裂的肩袖肌肉中会出现特定的肩袖肌肉纤维力量下降、IIb 型纤维积累以及成纤维性、脂肪生成性和炎症基因表达上调的情况。在肩袖撕裂后 30 天,我们观察到肌肉纤维力量产生减少、成纤维性、脂肪生成性和自噬性 mRNA 和 miRNA 分子的诱导以及脂肪堆积区域中巨噬细胞的大量积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8efc/3449033/84baf3fbde16/nihms380881f1.jpg

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