Bone and Joint Research Group, Centre for Human Development, Stem Cells and Regeneration, Faculty of Medicine, University of Southampton, Southampton, SO16 6YD, UK.
Foot and Ankle Orthopaedic Department, Royal Bournemouth Hospital, Bournemouth, BH7 7DW, UK.
Biotechnol J. 2017 Dec;12(12). doi: 10.1002/biot.201700070. Epub 2017 Nov 22.
Given articular cartilage has a limited repair potential, untreated osteochondral lesions of the ankle can lead to debilitating symptoms and joint deterioration necessitating joint replacement. While a wide range of reparative and restorative surgical techniques have been developed to treat osteochondral lesions of the ankle, there is no consensus in the literature regarding which is the ideal treatment. Tissue engineering strategies, encompassing stem cells, somatic cells, biomaterials, and stimulatory signals (biological and mechanical), have a potentially valuable role in the treatment of osteochondral lesions. Mesenchymal stem cells (MSCs) are an attractive resource for regenerative medicine approaches, given their ability to self-renew and differentiate into multiple stromal cell types, including chondrocytes. Although MSCs have demonstrated significant promise in in vitro and in vivo preclinical studies, their success in treating osteochondral lesions of the ankle is inconsistent, necessitating further clinical trials to validate their application. This review highlights the role of MSCs in cartilage regeneration and how the application of biomaterials and stimulatory signals can enhance chondrogenesis. The current treatments for osteochondral lesions of the ankle using regenerative medicine strategies are reviewed to provide a clinical context. The challenges for cartilage regeneration, along with potential solutions and safety concerns are also discussed.
由于关节软骨的修复潜力有限,未经治疗的踝关节骨软骨病变可导致使人衰弱的症状和关节恶化,从而需要关节置换。虽然已经开发出广泛的修复和修复手术技术来治疗踝关节骨软骨病变,但文献中尚无关于哪种治疗方法最理想的共识。组织工程策略包括干细胞、体细胞、生物材料和刺激信号(生物和机械),在治疗骨软骨病变方面具有潜在的有价值的作用。间充质干细胞(MSCs)是再生医学方法的有吸引力的资源,因为它们具有自我更新和分化为多种基质细胞类型的能力,包括软骨细胞。尽管 MSCs 在体外和体内临床前研究中表现出了显著的前景,但它们在治疗踝关节骨软骨病变方面的效果并不一致,需要进一步的临床试验来验证其应用。本综述强调了 MSCs 在软骨再生中的作用,以及生物材料和刺激信号的应用如何增强软骨生成。还回顾了使用再生医学策略治疗踝关节骨软骨病变的当前治疗方法,以提供临床背景。还讨论了软骨再生的挑战,以及潜在的解决方案和安全问题。