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Exosomes in the Repair of Bone Defects: Next-Generation Therapeutic Tools for the Treatment of Nonunion

机译:骨缺损修复中的外泌体:新一代治疗骨不连的治疗工具

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摘要

Nonunion with bone defects, a common complication after long bone fracture, is a major challenge for orthopaedic surgeons worldwide because of the high incidence rate and difficulties in achieving successful treatment. Bone defects are the main complications of nonunion. The conventional biological treatments for nonunion with bone defects involve the use of autologous bone grafts or bone graft substitutes and cell-based therapy. Traditional nonunion treatments have always been associated with safety issues and various other complications. Bone grafts have limited autologous cancellous bone and there is a risk of infection. Additionally, problems with bone graft substitutes, including rejection and stimulation of bone formation, have been noted, and the health of the stem cell niche is a major consideration in cell-based therapy. In recent years, researchers have found that exosomes can be used to deliver functional RNA and mediate cell-to-cell communication, suggesting that exosomes may repair bone defects by regulating cells and cytokines involved in bone metabolism. In this review, we highlight the possible relationships between risk factors for nonunion and exosomes. Additionally, we discuss the roles of exosomes in bone metabolism and bone regeneration.
机译:骨缺损的骨不连是长骨骨折后的常见并发症,由于其高发病率和成功治疗的难度,这对全世界的骨科医生来说都是一个重大挑战。骨缺损是骨不连的主要并发症。对于具有骨缺损的骨不连的常规生物治疗涉及使用自体骨移植物或骨移植物替代物和基于细胞的疗法。传统的不愈合治疗一直与安全性问题和其他各种并发症有关。骨移植物的自体松质骨数量有限,存在感染的风险。另外,已经注意到了骨移植替代物的问题,包括排斥和刺激骨形成,并且干细胞小生境的健康是基于细胞的疗法中的主要考虑因素。近年来,研究人员发现外泌体可用于传递功能性RNA并介导细胞间的通讯,这表明外泌体可通过调节参与骨代谢的细胞和细胞因子来修复骨缺损。在这篇综述中,我们强调了骨不连和外泌体的危险因素之间的可能关系。此外,我们讨论了外泌体在骨骼代谢和骨骼再生中的作用。

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