Department of Orthopedics, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Tissue Eng Part A. 2021 Sep;27(17-18):1213-1224. doi: 10.1089/ten.TEA.2020.0323. Epub 2021 Mar 1.
Articular cartilage lacks both a nutrient supply and progenitor cells. Once damaged, it has limited self-repair capability. Cartilage tissue engineering provides a promising strategy for regeneration, and the use of injectable hydrogels as scaffolds has recently attracted much attention. Silk fibroin (SF) is an advanced natural material used to construct injectable hydrogels that are nontoxic and can be used efficiently in crosslinking applications. The objective of the present work was to develop an injectable hydrogel using SF in a novel one-step ultrasonication crosslinking method. Gelation kinetics and the characteristics of ultrasonication-induced SF (US-SF) hydrogels were systematically evaluated. The cytocompatibility of US-SF hydrogels was evaluated using rabbit chondrocytes, the Cell Counting Kit-8 testing, and immunofluorescence staining. Furthermore, the cartilage regenerative ability of US-SF hydrogels was confirmed following subcutaneous administration in nude mice and injections in rabbit osteochondral defect models. These results suggest that US-SF hydrogels could be potential candidates for cartilage repair and regeneration. Impact statement Injectable silk fibroin hydrogel is a promising strategy for cartilage tissue engineering. The transition from solution state to gel state can be fabricated by both physical and chemical methods. However, the complexing protocol and toxicity of these methods remain hindrances to further application. In this study, a one-step ultrasonication method was developed. The novel ultrasonication-induced silk fibroin hydrogel showed satisfactory physicochemical and biomechanical properties. and experiments proved that it could promote cartilage regeneration, indicating that it may be a potential solution for cartilage repair and regeneration.
关节软骨既缺乏营养供应,也缺乏祖细胞。一旦受损,它的自我修复能力有限。软骨组织工程为再生提供了一种很有前途的策略,而可注射水凝胶作为支架的应用最近引起了广泛关注。丝素蛋白(SF)是一种先进的天然材料,用于构建可注射水凝胶,具有无毒、可有效交联等优点。本工作旨在开发一种新型一步超声交联法制备的 SF 可注射水凝胶。系统评价了凝胶动力学和超声诱导 SF(US-SF)水凝胶的特性。通过兔软骨细胞、细胞计数试剂盒-8 检测和免疫荧光染色评估了 US-SF 水凝胶的细胞相容性。此外,通过裸鼠皮下给药和兔骨软骨缺损模型注射,证实了 US-SF 水凝胶的软骨再生能力。这些结果表明,US-SF 水凝胶可能是软骨修复和再生的潜在候选材料。