Chu Xiangyu, Xiong Yuan, Lu Li, Wang Yiqing, Wang Jing, Zeng Ruiyin, Hu Liangcong, Yan Chenchen, Zhao Zhiming, Lin Sien, Mi Bobin, Liu Guohui
Department of Orthopedics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Avenue, Wuhan 430030, China.
Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China.
APL Bioeng. 2024 Sep 18;8(3):031502. doi: 10.1063/5.0200551. eCollection 2024 Sep.
Gene therapy has emerged as a highly promising strategy for the clinical treatment of large segmental bone defects and non-union fractures, which is a common clinical need. Meanwhile, many preclinical data have demonstrated that gene and cell therapies combined with optimal scaffold biomaterials could be used to solve these tough issues. Bone tissue engineering, an interdisciplinary field combining cells, biomaterials, and molecules with stimulatory capability, provides promising alternatives to enhance bone regeneration. To deliver and localize growth factors and associated intracellular signaling components into the defect site, gene therapy strategies combined with bioengineering could achieve a uniform distribution and sustained release to ensure mesenchymal stem cell osteogenesis. In this review, we will describe the process and cell molecular changes during normal fracture healing, followed by the advantages and disadvantages of various gene therapy vectors combined with bone tissue engineering. The growth factors and other bioactive peptides in bone regeneration will be particularly discussed. Finally, gene-activated biomaterials for bone regeneration will be illustrated through a description of characteristics and synthetic methods.
基因治疗已成为临床上治疗大段骨缺损和骨折不愈合的一种极有前景的策略,这是一种常见的临床需求。与此同时,许多临床前数据表明,基因和细胞疗法与最佳支架生物材料相结合可用于解决这些棘手问题。骨组织工程是一个将细胞、生物材料和具有刺激能力的分子相结合的跨学科领域,为促进骨再生提供了有前景的替代方案。为了将生长因子和相关的细胞内信号成分递送至并定位在缺损部位,与生物工程相结合的基因治疗策略可以实现均匀分布和持续释放,以确保间充质干细胞成骨。在这篇综述中,我们将描述正常骨折愈合过程及细胞分子变化,随后讨论各种基因治疗载体与骨组织工程相结合的优缺点。将特别讨论骨再生中的生长因子和其他生物活性肽。最后,将通过描述其特性和合成方法来说明用于骨再生的基因激活生物材料。