Sicherer Sydnee T, Venkatarama Rashmi S, Grasman Jonathan M
Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA.
Bioengineering (Basel). 2020 Jul 20;7(3):76. doi: 10.3390/bioengineering7030076.
Skeletal muscle injuries that occur from traumatic incidents, such as those caused by car accidents or surgical resections, or from injuries sustained on the battlefield, result in the loss of functionality of the injured muscle. To understand skeletal muscle regeneration and to better treat these large scale injuries, termed volumetric muscle loss (VML), in vivo injury models exploring the innate mechanisms of muscle injury and repair are essential for the creation of clinically applicable treatments. While the end result of a muscle injury is often the destruction of muscle tissue, the manner in which these injuries are induced as well as the response from the innate repair mechanisms found in muscle in each animal models can vary. This targeted review describes injury models that assess both skeletal muscle regeneration (i.e., the response of muscle to myotoxin or ischemic injury) and skeletal muscle repair (i.e., VML injury). We aimed to summarize the injury models used in the field of skeletal muscle tissue engineering, paying particular attention to strategies to induce muscle damage and how to standardize injury conditions for future experiments.
由创伤事件导致的骨骼肌损伤,如车祸或手术切除造成的损伤,或战场上遭受的损伤,会导致受伤肌肉功能丧失。为了了解骨骼肌再生并更好地治疗这些大规模损伤,即体积性肌肉损失(VML),探索肌肉损伤和修复内在机制的体内损伤模型对于开发临床适用的治疗方法至关重要。虽然肌肉损伤的最终结果通常是肌肉组织的破坏,但在每种动物模型中,这些损伤的诱导方式以及肌肉中固有修复机制的反应可能会有所不同。本靶向综述描述了评估骨骼肌再生(即肌肉对肌毒素或缺血性损伤的反应)和骨骼肌修复(即VML损伤)的损伤模型。我们旨在总结骨骼肌组织工程领域中使用的损伤模型,特别关注诱导肌肉损伤的策略以及如何为未来实验规范损伤条件。