Wu Siyu, Guo Wenlai, Li Rui, Zhang Xi, Qu Wenrui
Department of Hand Surgery, The Second Hospital of Jilin University, Changchun, China.
Department of Burn Surgery, The First Hospital of Jilin University, Changchun, China.
Front Bioeng Biotechnol. 2022 Jun 16;10:907356. doi: 10.3389/fbioe.2022.907356. eCollection 2022.
Articular cartilage has limited self-regeneration ability for lacking of blood vessels, nerves, and lymph that makes it a great challenge to repair defects of the tissue and restore motor functions of the injured or aging population. Platelet derivatives, such as platelet-rich plasma, have been proved effective, safe, and economical in musculoskeletal diseases for their autologous origin and rich in growth factors. The combination of platelet derivatives with biomaterials provides both mechanical support and localized sustained release of bioactive molecules in cartilage tissue engineering and low-cost efficient approaches of potential treatment. In this review, we first provide an overview of platelet derivatives and their application in clinical and experimental therapies, and then we further discuss the techniques of the addition of platelet derivatives and their influences on scaffold properties. Advances in cartilage tissue engineering with platelet derivatives as signal factors and structural components are also introduced before prospects and concerns in this research field. In short, platelet derivatives have broad application prospects as an economical and effective enhancement for tissue engineering-based articular cartilage repair.
关节软骨因缺乏血管、神经和淋巴,自我再生能力有限,这使得修复组织缺损和恢复受伤或老龄人群的运动功能面临巨大挑战。血小板衍生物,如富血小板血浆,因其自体来源且富含生长因子,已被证明在肌肉骨骼疾病中有效、安全且经济。血小板衍生物与生物材料的结合在软骨组织工程中提供了机械支撑和生物活性分子的局部持续释放,以及潜在治疗的低成本高效方法。在本综述中,我们首先概述血小板衍生物及其在临床和实验治疗中的应用,然后进一步讨论添加血小板衍生物的技术及其对支架特性的影响。还介绍了以血小板衍生物作为信号因子和结构成分的软骨组织工程进展,以及该研究领域的前景和关注点。简而言之,血小板衍生物作为基于组织工程的关节软骨修复的经济有效增强剂具有广阔的应用前景。