Shen Congyi, Zhou Ziyang, Li Ruiyang, Yang Shike, Zhou Dongyang, Zhou Fengjin, Geng Zhen, Su Jiacan
Institute of Translational Medicine, Shanghai University, Shanghai, 200444, China.
Organoid Research Center, Shanghai University, Shanghai, 200444, China.
Theranostics. 2025 Jan 1;15(2):560-584. doi: 10.7150/thno.103491. eCollection 2025.
Osteoarthritis (OA) is a common joint disease characterized by cartilage degeneration. It can cause severe pain, deformity and even amputation risk. However, existing clinical treatment methods for cartilage repair present certain deficiencies. Meanwhile, the repair effect of cartilage tissue engineering is also unsatisfactory. Cartilage organoids are multicellular aggregates with cartilage-like three-dimensional structure and function. On the one hand, cartilage organoids can be used to explore the pathogenesis of OA by constructing disease models. On the other hand, it can be used as filler for rapid cartilage repair. Extracellular matrix (ECM)-like three-dimensional environment is the key to construct cartilage organoids. Silk fibroin (SF)-based hydrogels not only have ECM-like structure, but also have unique mechanical properties and remarkable biocompatibility. Therefore, SF-based hydrogels are considered as ideal biomaterials for constructing cartilage organoids. In this review, we reviewed the studies of cartilage organoids and SF-based hydrogels. The advantages of SF-based hydrogels in constructing cartilage organoids and the iterative optimization of cartilage organoids through designing hydrogels by using artificial intelligence (AI) calculation are also discussed. This review aims to provide a theoretical basis for the treatment of OA using SF-based biomaterials and cartilage organoids.
骨关节炎(OA)是一种以软骨退变为特征的常见关节疾病。它可导致严重疼痛、畸形甚至截肢风险。然而,现有的软骨修复临床治疗方法存在一定缺陷。同时,软骨组织工程的修复效果也不尽人意。软骨类器官是具有类似软骨三维结构和功能的多细胞聚集体。一方面,软骨类器官可通过构建疾病模型来探索骨关节炎的发病机制。另一方面,它可用作快速修复软骨的填充物。类似细胞外基质(ECM)的三维环境是构建软骨类器官的关键。基于丝素蛋白(SF)的水凝胶不仅具有类似ECM的结构,还具有独特的力学性能和显著的生物相容性。因此,基于SF的水凝胶被认为是构建软骨类器官的理想生物材料。在本综述中,我们回顾了软骨类器官和基于SF的水凝胶的研究。还讨论了基于SF的水凝胶在构建软骨类器官方面的优势,以及通过利用人工智能(AI)计算设计水凝胶对软骨类器官进行的迭代优化。本综述旨在为使用基于SF的生物材料和软骨类器官治疗骨关节炎提供理论依据。