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大鼠腓肠肌损伤后跟腱的可塑性

Calcaneal Tendon Plasticity Following Gastrocnemius Muscle Injury in Rat.

作者信息

Barin Fabrício Reichert, de Sousa Neto Ivo Vieira, Vieira Ramos Graciele, Szojka Alexander, Ruivo Amanda Lima, Anflor Carla Tatiana Mota, Agualimpia José David Hurtado, Domingues Allan Corrêa, Franco Octávio Luiz, Adesida Adetola B, Durigan João Luiz Quaglioti, Marqueti Rita de Cassia

机构信息

Faculdade de Ceilândia, Universidade de Brasilia, Brasilia, Brazil.

Universidade Paulista, Brasilia, Brazil.

出版信息

Front Physiol. 2019 Sep 3;10:1098. doi: 10.3389/fphys.2019.01098. eCollection 2019.

Abstract

Cross-talk between skeletal muscle and tendon is important for tissue homeostasis. Whereas the skeletal muscle response to tendon injury has been well-studied, to the best of our knowledge the tendon response to skeletal muscle injury has been neglected. Thus, we investigated calcaneal tendon extracellular matrix (ECM) remodeling after gastrocnemius muscle injury using a rat model. Wistar rats were randomly divided into four groups: control group (C; animals that were not exposed to muscle injury) and harvested at different time points post gastrocnemius muscle injury (3, 14, and 28 days) for gene expression, morphological, and biomechanical analyses. At 3 days post injury, we observed mRNA-level dysregulation of signaling pathways associated with collagen I accompanied with disrupted biomechanical properties. At 14 days post injury, we found reduced collagen content histologically accompanied by invasion of blood vessels into the tendon proper and an abundance of peritendinous sheath cells. Finally, at 28 days post injury, there were signs of recovery at the gene expression level including upregulation of transcription factors related to ECM synthesis, remodeling, and repair. At this time point, tendons also presented with increased peritendinous sheath cells, decreased adipose cells, higher Young's modulus, and lower strain to failure compared to the uninjured controls and all post injury time points. In summary, we demonstrate that the calcaneal tendon undergoes extensive ECM remodeling in response to gastrocnemius muscle injury leading to altered functional properties in a rat model. Tendon plasticity in response to skeletal muscle injury merits further investigation to understand its physiological relevance and potential clinical implications.

摘要

骨骼肌与肌腱之间的相互作用对于组织稳态至关重要。虽然骨骼肌对肌腱损伤的反应已得到充分研究,但据我们所知,肌腱对骨骼肌损伤的反应却被忽视了。因此,我们使用大鼠模型研究了腓肠肌损伤后跟腱细胞外基质(ECM)的重塑情况。Wistar大鼠被随机分为四组:对照组(C组;未遭受肌肉损伤的动物),并在腓肠肌损伤后的不同时间点(3天、14天和28天)进行收获,以进行基因表达、形态学和生物力学分析。损伤后3天,我们观察到与I型胶原相关的信号通路在mRNA水平失调,同时生物力学特性受到破坏。损伤后14天,我们在组织学上发现胶原含量减少,同时有血管侵入肌腱实质以及大量腱周鞘细胞。最后,在损伤后28天,基因表达水平出现恢复迹象,包括与ECM合成、重塑和修复相关的转录因子上调。在这个时间点,与未受伤的对照组以及所有损伤后的时间点相比,肌腱还表现出腱周鞘细胞增多、脂肪细胞减少、杨氏模量更高以及破坏应变更低。总之,我们证明在大鼠模型中,跟腱会因腓肠肌损伤而经历广泛的ECM重塑,导致功能特性改变。肌腱对骨骼肌损伤的可塑性值得进一步研究,以了解其生理相关性和潜在的临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c42/6733963/a136b9736e4a/fphys-10-01098-g001.jpg

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