Inserm UMRS 791, laboratoire d'ingénierie osteo-articulaire et dentaire (LIOAD), group STEP « skeletal tissue engineering and physiopathology », 44042 Nantes, France; Université de Nantes, UFR d'odontologie, 44042 Nantes, France.
Inserm UMRS 791, laboratoire d'ingénierie osteo-articulaire et dentaire (LIOAD), group STEP « skeletal tissue engineering and physiopathology », 44042 Nantes, France; Université de Nantes, UFR d'odontologie, 44042 Nantes, France; CHU de Nantes, PHU 4 OTONN, 44000 Nantes, France.
Ann Phys Rehabil Med. 2016 Jun;59(3):139-144. doi: 10.1016/j.rehab.2016.03.002. Epub 2016 Apr 11.
Articular cartilage is a non-vascularized and poorly cellularized connective tissue that is frequently damaged as a result of trauma and degenerative joint diseases such as osteoarthrtis. Because of the absence of vascularization, articular cartilage has low capacity for spontaneous repair. Today, and despite a large number of preclinical data, no therapy capable of restoring the healthy structure and function of damaged articular cartilage is clinically available. Tissue-engineering strategies involving the combination of cells, scaffolding biomaterials and bioactive agents have been of interest notably for the repair of damaged articular cartilage. During the last 30 years, cartilage tissue engineering has evolved from the treatment of focal lesions of articular cartilage to the development of strategies targeting the osteoarthritis process. In this review, we focus on the different aspects of tissue engineering applied to cartilage engineering. We first discuss cells, biomaterials and biological or environmental factors instrumental to the development of cartilage tissue engineering, then review the potential development of cartilage engineering strategies targeting new emerging pathogenic mechanisms of osteoarthritis.
关节软骨是一种非血管化和细胞稀疏的结缔组织,经常因创伤和退行性关节疾病(如骨关节炎)而受损。由于缺乏血管化,关节软骨的自发修复能力较低。如今,尽管有大量的临床前数据,但没有一种能够恢复受损关节软骨健康结构和功能的治疗方法在临床上可用。涉及细胞、支架生物材料和生物活性物质结合的组织工程策略特别受到关注,用于修复受损的关节软骨。在过去的 30 年中,软骨组织工程已经从治疗关节软骨的局灶性病变发展到针对骨关节炎过程的策略的开发。在这篇综述中,我们重点介绍了应用于软骨工程的组织工程的不同方面。我们首先讨论了对软骨组织工程发展至关重要的细胞、生物材料和生物或环境因素,然后回顾了针对骨关节炎新出现的致病机制的软骨工程策略的潜在发展。