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Therapeutic strategies for preventing skeletal muscle fibrosis after injury

机译:预防损伤后骨骼肌纤维化的治疗策略

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Skeletal muscle repair after injury includes a complex and well-coordinated regenerative response. However, fibrosis often manifests, leading to aberrant regeneration and incomplete functional recovery. Research efforts have focused on the use of anti-fibrotic agents aimed at reducing the fibrotic response and improving functional recovery. While there are a number of mediators involved in the development of post-injury fibrosis, TGF-β1 is the primary pro-fibrogenic growth factor and several agents that inactivate TGF-β1 signaling cascade have emerged as promising anti-fibrotic therapies. A number of these agents are FDA approved for other conditions, clearing the way for rapid translation into clinical treatment. In this article, we provide an overview of muscle's host response to injury with special emphasis on the cellular and non-cellular mediators involved in the development of fibrosis. This article also reviews the findings of several pre-clinical studies that have utilized anti-fibrotic agents to improve muscle healing following most common forms of muscle injuries. Although some studies have shown positive results with anti-fibrotic treatment, others have indicated adverse outcomes. Some concerns and questions regarding the clinical potential of these anti-fibrotic agents have also been presented.
机译:损伤后的骨骼肌修复包括复杂且协调良好的再生反应。然而,纤维化常常表现出来,导致异常的再生和不完全的功能恢复。研究工作集中在抗纤维化剂的使用上,以减少纤维化反应和改善功能恢复。尽管损伤后纤维化的发展涉及许多介体,但TGF-β1是主要的促纤维化生长因子,并且使TGF-β1信号级联失活的多种药物已成为有希望的抗纤维化疗法。这些药物中有许多已获FDA批准用于其他疾病,这为快速转化为临床治疗扫清了道路。在本文中,我们概述了肌肉对损伤的宿主反应,特别强调了参与纤维化发展的细胞和非细胞介质。本文还回顾了一些临床前研究的发现,这些研究已利用抗纤维化剂改善了最常见形式的肌肉损伤后的肌肉愈合。尽管一些研究显示抗纤维化治疗取得了积极的成果,但其他研究却表明了不良结果。还提出了有关这些抗纤维化剂的临床潜力的一些关注和问题。

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