Hasan Jahid, Fisher John, Ingham Eileen
Institute of Medical and Biological Engineering, Schools of Biomedical Sciences and Mechanical Engineering, University of Leeds, Leeds, LS2 9JT, UK.
J Biomed Mater Res B Appl Biomater. 2014 Apr;102(3):619-34. doi: 10.1002/jbm.b.33030. Epub 2013 Sep 13.
The meniscus plays an important role in the biomechanics and tribology of the knee joint. Damage to or disease of the meniscus is now recognized to predispose to the development of osteoarthritis. Treatment of meniscal injury through arthroscopic surgery has become one of the most common orthopedic surgical procedures, and in the United States this can represent 10 to 20% of procedures related to the knee. The meniscus has a limited healing capacity constrained to the vascularized periphery and therefore, surgical repair of the avascular regions is not always feasible. Replacement and repair of the meniscus to treat injuries is being investigated using tissue engineering strategies. Promising as these approaches may be, there are, however, major barriers to overcome before translation to the clinic.
半月板在膝关节的生物力学和摩擦学中发挥着重要作用。如今人们认识到,半月板损伤或疾病易引发骨关节炎。通过关节镜手术治疗半月板损伤已成为最常见的骨科手术之一,在美国,此类手术占膝关节相关手术的10%至20%。半月板的愈合能力有限,仅局限于有血管的边缘区域,因此,对无血管区域进行手术修复并不总是可行的。目前正在研究使用组织工程策略来置换和修复半月板以治疗损伤。尽管这些方法可能很有前景,但在转化应用于临床之前仍有重大障碍需要克服。