Orthopedic Research Institute, Department of Orthopedics, West China Hospital, Sichuan University, Chengdu, China.
Department of Periodontology, Justus-Liebig-University of Giessen, Germany.
J Mater Chem B. 2023 Jul 26;11(29):6718-6745. doi: 10.1039/d3tb00727h.
Those who have used traditional biomaterials as bone substitutes have always regarded the immune response as an obstacle leading to implant failure. However, cumulative evidence revealed that blindly minimizing host immune reactions cannot induce successful bone regeneration. With the emergence of the new concept of osteoimmunology, the intimate mutual effects between the skeletal system and the immune system have been gradually recognized, promoting the innovation of biomaterials with osteoimmunomodulatory properties. By tuning the surface properties, biomaterials can precisely manipulate the osteoimmune environment favoring bone regeneration. In this review, we first reviewed the mutual effects between the skeletal system and the immune system to show the importance of immunomodulation on bone regeneration. Subsequently, we summarize the recent developments in surface modification strategies in terms of the surface physicochemical properties and surface coatings and explain how these modification strategies work.
那些将传统生物材料用作骨替代物的人一直将免疫反应视为导致植入物失败的障碍。然而,越来越多的证据表明,盲目地将宿主免疫反应最小化并不能诱导成功的骨再生。随着骨免疫学新概念的出现,骨骼系统和免疫系统之间的密切相互作用逐渐被认识到,促进了具有骨免疫调节特性的生物材料的创新。通过调整表面特性,生物材料可以精确地操纵有利于骨再生的骨免疫环境。在这篇综述中,我们首先回顾了骨骼系统和免疫系统之间的相互作用,以展示免疫调节对骨再生的重要性。随后,我们总结了近年来在表面物理化学性质和表面涂层方面的表面修饰策略的最新进展,并解释了这些修饰策略的作用机制。