Zhu Wei, Wang Han, Feng Bin, Liu Guangli, Bian Yixin, Zhao Tianhao, Wang Qi, Weng Xisheng
Department of Orthopedics, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100730, China.
Adv Sci (Weinh). 2025 Jan;12(1):e2406479. doi: 10.1002/advs.202406479. Epub 2024 Nov 5.
Articular cartilage defects present a significant therapeutic challenge due to the inherent avascular and aneural characteristics of cartilage tissue. Gene therapy has emerged as a promising strategy for cartilage regeneration, particularly through the use of functional RNA and biomaterial-assisted frameworks. In this study, an innovative gene-activated self-healing hydrogel is developed and fabricated for the controlled release of miR140-5p, a key regulator of cartilage regeneration. The hydrogel, crosslinked via UV radiation, is composed of aminated hyaluronic acid and a modified photosensitizer (NB). To enhance the scaffold's structural integrity and gene delivery efficiency, mineralized silk fibroin and miR140-5p-loaded MON-PEI nanoparticles are incorporated. These findings demonstrate that this novel hydrogel (miR140-5p-CaP@mSF-HA-NB) effectively encapsulates and releases miR140-5p, exhibits excellent biocompatibility, and promotes enhanced cartilage regeneration in both in vitro and in vivo models. Therefore, this gene-activated hydrogel holds significant potential for clinical applications in the treatment of articular cartilage defects.
由于软骨组织固有的无血管和无神经特性,关节软骨缺损带来了重大的治疗挑战。基因治疗已成为软骨再生的一种有前景的策略,特别是通过使用功能性RNA和生物材料辅助框架。在本研究中,开发并制备了一种创新的基因激活自愈合水凝胶,用于可控释放miR140-5p,这是软骨再生的关键调节因子。通过紫外线辐射交联的水凝胶由胺化透明质酸和一种改性光敏剂(NB)组成。为了增强支架的结构完整性和基因递送效率,加入了矿化丝素蛋白和负载miR140-5p的MON-PEI纳米颗粒。这些发现表明,这种新型水凝胶(miR140-5p-CaP@mSF-HA-NB)有效地封装和释放miR140-5p,表现出优异的生物相容性,并在体外和体内模型中促进了增强的软骨再生。因此,这种基因激活水凝胶在治疗关节软骨缺损的临床应用中具有巨大潜力。