Wang Lei, Huang Juan, Huang Chenglong, Li Qing, Liu Lin, Luo Shihong, Xiao Jingang
Department of Oral and Maxillofacial Surgery, The Affiliated Stomatology Hospital of Southwest Medical University, Luzhou 646000, China.
Orofacial Reconstruction and Regeneration Laboratory, The Affiliated Stomatology Hospital of Southwest Medical University, Luzhou 646000, China.
Curr Stem Cell Res Ther. 2018;13(7):533-546. doi: 10.2174/1574888X12666170511142917.
Cartilage tissue engineering is emerging as a therapeutic approach for the repair and regeneration of cartilage tissue defects resulting from trauma and disease. It is still essential to explore approaches that employ combinations of ideal seed cells, biomaterials, and growth factors to repair defect areas because cartilage lacks spontaneous regenerative capabilities and traditional treatments do not fully satisfy clinical requirements. The purpose of this review is to summarize key advances in this area with an emphasis on adult stem cells because these cells possess a self-renewal ability and the potential for multi-directional differentiation when cultured under appropriate conditions, such as chondrocyte differentiation to synthesize cartilage-specific matrix proteins. Additionally, hydrogels and their synergistic action with growth factors to co-regulate cell behaviors and cartilage regeneration will be addressed. Hydrogels are three-dimensional water-swollen networks that provide a unique microenvironment to promote the chondrogenic phenotype by encapsulating cells as a functional cartilage substitute in a defect area. Ultimately, this review presents the prospect of combining adult stem cells, hydrogels, and growth factors using interdisciplinary approaches that may lead to significant breakthroughs in cartilage regeneration in the future.
软骨组织工程作为一种治疗方法正在兴起,用于修复和再生由创伤和疾病导致的软骨组织缺损。由于软骨缺乏自发再生能力且传统治疗方法不能完全满足临床需求,探索采用理想的种子细胞、生物材料和生长因子组合来修复缺损区域的方法仍然至关重要。本综述的目的是总结该领域的关键进展,重点关注成体干细胞,因为这些细胞具有自我更新能力,并且在适当条件下培养时具有多向分化的潜力,例如分化为软骨细胞以合成软骨特异性基质蛋白。此外,还将讨论水凝胶及其与生长因子的协同作用,以共同调节细胞行为和软骨再生。水凝胶是三维水溶胀网络,通过将细胞封装在缺损区域作为功能性软骨替代物,提供独特的微环境以促进软骨形成表型。最终,本综述展望了采用跨学科方法将成体干细胞、水凝胶和生长因子相结合的前景,这可能会在未来的软骨再生方面带来重大突破。