Medical College of Georgia, Augusta University, Augusta, GA 30912, USA.
Medical College of Georgia, Augusta University, Augusta, GA 30912, USA.
Mol Aspects Med. 2018 Apr;60:123-128. doi: 10.1016/j.mam.2017.09.006. Epub 2017 Oct 10.
Research into the biology of extracellular vesicles (EVs), including exosomes and microvesicles, has expanded significantly with advances in EV isolation techniques, a better understanding of the surface markers that characterize exosomes and microvesicles, and greater information derived from -omics approaches on the proteins, lipids, mRNAs, and microRNAs (miRNAs) transported by EVs. We have recently discovered a role for exosome-derived miRNAs in age-related bone loss and osteoarthritis, two conditions that impose a significant public health burden on the aging global population. Previous work has also revealed multiple roles for EVs and their miRNAs in muscle regeneration and congenital myopathies. Thus, EVs appear to be involved in a number of degenerative conditions that impact the musculoskeletal system, indicating that the musculoskeletal system is an excellent model for investigating the role of EVs in tissue maintenance and repair. This review highlights the role of EVs in bone, skeletal muscle, and joint health, including both normal tissue metabolism as well as tissue injury repair and regeneration. A consistent theme that emerges from study of musculoskeletal EVs is that various miRNAs appear to mediate a number of key pathological processes. These findings point to a potential therapeutic opportunity to target EV-derived miRNAs as a strategy for improving musculoskeletal function.
对细胞外囊泡(EVs),包括外泌体和微泡的生物学的研究随着 EV 分离技术的进步、对外泌体和微泡特征表面标志物的更好理解以及从蛋白质、脂质、mRNA 和 microRNAs(miRNAs)等组学方法获得的更多信息而显著扩展。我们最近发现外泌体衍生的 miRNAs 在与年龄相关的骨丢失和骨关节炎中的作用,这两种疾病给老龄化的全球人口带来了重大的公共卫生负担。先前的工作还揭示了 EVs 及其 miRNAs 在肌肉再生和先天性肌病中的多种作用。因此,EVs 似乎参与了许多影响肌肉骨骼系统的退行性疾病,表明肌肉骨骼系统是研究 EVs 在组织维持和修复中的作用的极好模型。这篇综述强调了 EVs 在骨骼、骨骼肌和关节健康中的作用,包括正常组织代谢以及组织损伤修复和再生。从肌肉骨骼 EVs 的研究中出现的一个一致主题是,各种 miRNAs 似乎介导了许多关键的病理过程。这些发现为作为改善肌肉骨骼功能的策略靶向 EV 衍生的 miRNAs 提供了潜在的治疗机会。