Bini Fabiano, D'Alessandro Salvatore, Pica Andrada, Marinozzi Franco, Cidonio Gianluca
Department of Mechanical and Aerospace Engineering, Sapienza University, 00148 Rome, Italy.
Center for Life Nano- & Neuro-Science (CLN2S), Fondazione Istituto Italiano di Tecnologia, 00161 Rome, Italy.
Biomimetics (Basel). 2023 Jun 15;8(2):260. doi: 10.3390/biomimetics8020260.
Osteochondral tissue (OC) is a complex and multiphasic system comprising cartilage and subchondral bone. The discrete OC architecture is layered with specific zones characterized by different compositions, morphology, collagen orientation, and chondrocyte phenotypes. To date, the treatment of osteochondral defects (OCD) remains a major clinical challenge due to the low self-regenerative capacity of damaged skeletal tissue, as well as the critical lack of functional tissue substitutes. Current clinical approaches fail to fully regenerate damaged OC recapitulating the zonal structure while granting long-term stability. Thus, the development of new biomimetic treatment strategies for the functional repair of OCDs is urgently needed. Here, we review recent developments in the preclinical investigation of novel functional approaches for the resurfacing of skeletal defects. The most recent studies on preclinical augmentation of OCDs and highlights on novel studies for the in vivo replacement of diseased cartilage are presented.
骨软骨组织(OC)是一个由软骨和软骨下骨组成的复杂多相系统。离散的OC结构分层排列,具有不同成分、形态、胶原取向和软骨细胞表型的特定区域。迄今为止,由于受损骨骼组织的自我再生能力较低,以及功能性组织替代物严重短缺,骨软骨缺损(OCD)的治疗仍然是一项重大的临床挑战。目前的临床方法无法在赋予长期稳定性的同时,完全再生出具有区域结构的受损OC。因此,迫切需要开发用于OCD功能性修复的新型仿生治疗策略。在这里,我们综述了用于骨骼缺损修复的新型功能方法临床前研究的最新进展。介绍了关于OCD临床前增强的最新研究以及体内替代病变软骨的新研究亮点。