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Tailoring biomaterial scaffolds for osteochondral repair

机译:量身定制用于骨软骨修复的生物材料支架

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摘要

Articular cartilage is a mechanically and structurally complex, lubricious tissue that permits load-bearing and frictionless movement of our joints upon articulation. Unfortunately, cartilage is unable to properly self-heal as a result of acute trauma or damage, resulting in many cases in significant pain, reduction in physical activity and quality of life for the patient. Due to the inability of resident cells to repair damaged osteochondral tissue, researchers have focused on utilizing endogenously or exogenously sourced cells (chondrocytes or tissue-derived mesenchymal stem cells), with or without scaffolds, to encourage the secretion of extracellular matrix (ECM) that replicates this highly anisotropic osteochondral tissue, in which the phenotype of the cells and the composition and orientation of the ECM varies along its depth. Important advances have been achieved towards the development of scaffolds with macroscopically relevant structures, however, articular cartilage and bone tissue contain complex, hierarchical structures that provide cells with biophysical and biochemical cues spanning multiple length scales, presenting researchers with some substantial challenges. This review summarizes the latest advances in mechanical, biochemical and topographical engineering of biomaterials to drive requisite biological responses, such as cell differentiation and matrix deposition, in an effort to achieve functional repair of osteochondral defects.
机译:关节软骨是机械和结构复杂的润滑组织,在关节运动时允许关节承受负荷和无摩擦运动。不幸的是,由于急性创伤或损害,软骨不能适当地自愈,在许多情况下导致严重的疼痛,身体活动的减少和患者的生活质量。由于常驻细胞无法修复受损的软骨组织,研究人员集中于利用内源性或外源性细胞(软骨细胞或组织来源的间充质干细胞),无论有无支架,都可以促进分泌细胞外基质(ECM),复制这种高度各向异性的骨软骨组织,其中细胞的表型以及ECM的组成和方向沿其深度变化。在开发具有宏观相关结构的支架方面已取得重要进展,但是,关节软骨和骨组织包含复杂的,层次化的结构,这些结构为细胞提供了跨越多个长度尺度的生物物理和生化线索,这给研究人员带来了一些实质性挑战。这篇综述总结了生物材料的机械,生化和地形工程的最新进展,以驱动必要的生物学反应,例如细胞分化和基质沉积,以实现骨软骨缺损的功能修复。

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