Department of Biomedical Materials Science, School of Biomedical Engineering, Third Military Medical University, Chongqing, 400038, P. R. China.
State Key Laboratory of Trauma and Chemical Poisoning, Third Military Medical University, Chongqing, 400038, P. R. China.
Adv Healthc Mater. 2024 Mar;13(6):e2302807. doi: 10.1002/adhm.202302807. Epub 2023 Dec 7.
Bone tissue constitutes 15-20% of human body weight and plays a crucial role in supporting the body, coordinating movement, regulating mineral homeostasis, and hematopoiesis. The maintenance of bone homeostasis relies on a delicate balance between osteoblasts and osteoclasts. Osteoclasts, as the exclusive "bone resorbers" in the human skeletal system, are of paramount significance yet often receive inadequate attention. When osteoclast activity becomes excessive, it frequently leads to various bone metabolic disorders, subsequently resulting in secondary bone injuries, such as fractures. This not only reduces life quality of patients, but also imposes a significant economic burden on society. In response to the pressing need for biomaterials in the treatment of osteoclast dysregulation, there is a surge of research and investigations aimed at osteoclast regulation. Promising progress is achieved in this domain. This review seeks to provide a comprehensive understanding of how to modulate osteoclast activities. It summarizes bioactive substances that influence osteoclasts and elucidates strategies for constructing related biomaterial systems. It offers practical insights and ideas for the development and application of biomaterials and tissue engineering, with the hope of guiding the clinical treatment of osteoclast-related bone diseases using biomaterials in the future.
骨组织构成人体体重的 15-20%,在支撑身体、协调运动、调节矿物质稳态和造血等方面发挥着至关重要的作用。骨稳态的维持依赖于成骨细胞和破骨细胞之间的精细平衡。破骨细胞作为人体骨骼系统中唯一的“骨吸收细胞”,具有至关重要的意义,但往往得不到足够的重视。当破骨细胞活性过度时,常导致各种骨代谢紊乱,进而导致继发性骨损伤,如骨折。这不仅降低了患者的生活质量,还给社会带来了巨大的经济负担。为了满足治疗破骨细胞失调的生物材料的迫切需求,人们对破骨细胞的调节进行了大量的研究和探索。在该领域取得了可喜的进展。本综述旨在全面了解如何调节破骨细胞的活性。它总结了影响破骨细胞的生物活性物质,并阐明了构建相关生物材料系统的策略。它为生物材料和组织工程的开发和应用提供了实用的见解和思路,希望能为未来利用生物材料治疗破骨细胞相关骨病提供指导。