Suh J K, Matthew H W
Department of Biomedical Engineering, Tulane University, New Orleans, LA 70118, USA.
Biomaterials. 2000 Dec;21(24):2589-98. doi: 10.1016/s0142-9612(00)00126-5.
Once damaged, articular cartilage has very little capacity for spontaneous healing because of the avascular nature of the tissue. Although many repair techniques have been proposed over the past four decades, none has sucessfully regenerated long-lasting hyaline cartilage tissue to replace damaged cartilage. Tissue engineering approaches, such as transplantation of isolated chondrocytes, have recently demonstrated tremendous clinical potential for regeneration of hyaline-like cartilage tissue and treatment of chondral lesions. As such a new approach emerges, new important questions arise. One of such questions is: what kinds of biomaterials can be used with chondrocytes to tissue-engineer articular cartilage? The success of chondrocyte transplantation and/or the quality of neocartilage formation strongly depend on the specific cell-carrier material. The present article reviews some of those biomaterials, which have been suggested to promote chondrogenesis and to have potentials for tissue engineering of articular cartilage. A new biomaterial, a chitosan-based polysaccharide hydrogel, is also introduced and discussed in terms of the biocompatibility with chondrocytes.
一旦受损,关节软骨由于其组织无血管的特性,自发愈合能力非常有限。尽管在过去四十年里提出了许多修复技术,但没有一种技术能成功再生持久的透明软骨组织来替代受损软骨。组织工程方法,如分离软骨细胞移植,最近已显示出在再生类透明软骨组织和治疗软骨损伤方面具有巨大的临床潜力。随着这种新方法的出现,新的重要问题也随之产生。其中一个问题是:哪些生物材料可以与软骨细胞一起用于组织工程化关节软骨?软骨细胞移植的成功和/或新软骨形成的质量在很大程度上取决于特定的细胞载体材料。本文综述了一些已被建议可促进软骨生成并具有关节软骨组织工程潜力的生物材料。还介绍了一种新型生物材料——基于壳聚糖的多糖水凝胶,并就其与软骨细胞的生物相容性进行了讨论。