Biomedical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
J Tissue Eng Regen Med. 2018 Apr;12(4):e1974-e1990. doi: 10.1002/term.2628. Epub 2018 Jan 28.
Osteochondral tissue regeneration is a complicated field due to the distinct properties and healing potential of osseous and chondral phases. In a natural osteochondral region, the composition, mechanics, and structure vary smoothly from bony to cartilaginous phase. Therefore, a homogeneous scaffold cannot satisfy the complexity of the osteochondral matrix. In essence, a natural extracellular matrix is composed of fibrous proteins elongated into a gelatinous background. A hydrogel/fiber scaffold possessing gradient in both phases would be of the utmost interest to imitate tissue arrangement of a native osteochondral interface. However, there are limited research works that exploit hydrogel/fiber scaffolds for osteochondral restoration. In the present review, currently used fibrous or gelatinous scaffolds for osteochondral damages are discussed. Moreover, superiority of using gradient hydrogel/fiber composites for osteochondral regeneration and practical approaches to develop those scaffolds is debated.
由于骨相和软骨相的独特性质和愈合潜力,软骨组织再生是一个复杂的领域。在天然的软骨-骨区域,组成、力学和结构从骨相到软骨相平稳地变化。因此,单一的支架无法满足软骨基质的复杂性。本质上,天然细胞外基质由拉长为凝胶状背景的纤维蛋白组成。具有两相梯度的水凝胶/纤维支架最能模拟天然软骨-骨界面的组织排列。然而,利用水凝胶/纤维支架进行软骨-骨修复的研究工作有限。在本综述中,讨论了目前用于软骨-骨损伤的纤维或凝胶支架。此外,还讨论了使用梯度水凝胶/纤维复合材料进行软骨-骨再生的优势以及开发这些支架的实用方法。