Department of Bioengineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul, 04763, Republic of Korea.
Adv Healthc Mater. 2019 Feb;8(4):e1801106. doi: 10.1002/adhm.201801106. Epub 2018 Oct 17.
Biomaterials with suitable surface modification strategies are contributing significantly to the rapid development of the field of bone tissue engineering. Despite these encouraging results, utilization of biomaterials is poorly translated to human clinical trials potentially due to lack of knowledge about the interaction between biomaterials and the body defense mechanism, the "immune system". The highly complex immune system involves the coordinated action of many immune cells that can produce various inflammatory and anti-inflammatory cytokines. Besides, bone fracture healing initiates with acute inflammation and may later transform to a regenerative or degenerative phase mainly due to the cross-talk between immune cells and other cells in the bone regeneration process. Among various immune cells, macrophages possess a significant role in the immune defense, where their polarization state plays a key role in the wound healing process. Growing evidence shows that the macrophage polarization state is highly sensitive to the biomaterial's physiochemical properties, and advances in biomaterial research now allow well controlled surface properties. This review provides an overview of biomaterial-mediated modulation of the immune response for regulating key bone regeneration events, such as osteogenesis, osteoclastogenesis, and inflammation, and it discusses how these strategies can be utilized for future bone tissue engineering applications.
具有合适表面改性策略的生物材料为骨组织工程领域的快速发展做出了重大贡献。尽管取得了这些令人鼓舞的结果,但生物材料的应用未能很好地转化为人体临床试验,这可能是由于缺乏对生物材料与身体防御机制(“免疫系统”)相互作用的了解。高度复杂的免疫系统涉及许多免疫细胞的协调作用,这些细胞可以产生各种炎症和抗炎细胞因子。此外,骨骨折愈合始于急性炎症期,之后可能由于免疫细胞与骨再生过程中的其他细胞之间的串扰而转变为再生或退行性阶段。在各种免疫细胞中,巨噬细胞在免疫防御中具有重要作用,其极化状态在伤口愈合过程中起着关键作用。越来越多的证据表明,巨噬细胞的极化状态对生物材料的物理化学性质高度敏感,并且生物材料研究的进展现在可以很好地控制表面特性。本综述概述了生物材料介导的免疫反应调节在调节关键的骨再生事件(如成骨、破骨和成炎)中的作用,并讨论了如何将这些策略应用于未来的骨组织工程应用。