Department of Biomedical Engineering, Pennsylvania State University, State College, Pennsylvania 16802, United States.
Departamento de Ingeniería Mecánica, Universidad Nacional de Colombia, Cra 64C nro 73-120, 050024 Medellin, Colombia.
ACS Biomater Sci Eng. 2024 Aug 12;10(8):4662-4681. doi: 10.1021/acsbiomaterials.4c00114. Epub 2024 Jul 30.
The integration of titanium (Ti)-based implants with bone is limited, resulting in implant failure. This lack of osteointegration is due to the foreign body response (FBR) that occurs after the implantation of biodevices. The process begins with protein adsorption, which is governed by implant surface properties, e.g., chemistry, charge, wettability, and/or topography. The distribution and composition of the protein layer in turn influence the recruitment, differentiation, and modulation of immune and bone cells. The subsequent events that occur at the bone-material interface will ultimately determine whether the implant is encapsulated or will integrate with bone. Despite the numerous studies evaluating the influence of surface properties in the various stages of the FBR, the factors that affect tissue-material interactions are often studied in isolation or in small correlations due to the technical challenges involved in assessing them or . Consequently, the influence of protein conformation on the Ti bone implant surface design remains an unresolved research question. The objective of this review is to comprehensively evaluate the existing literature on the effect of surface parameters of Ti and its alloys in the stages of FBR, with a particular focus on protein adsorption and osteoimmunomodulation. This evaluation aims to systematically describe these effects on bone formation.
钛(Ti)基植入物与骨骼的整合能力有限,导致植入物失败。这种骨整合不足是由于生物设备植入后发生的异物反应(FBR)。该过程始于蛋白质吸附,其由植入物表面特性(例如化学性质、电荷、润湿性和/或形貌)决定。蛋白质层的分布和组成反过来又影响免疫和骨细胞的募集、分化和调节。随后在骨-材料界面发生的事件最终将决定植入物是否被包裹或与骨骼整合。尽管有许多研究评估了表面特性在 FBR 的各个阶段的影响,但由于评估这些特性所涉及的技术挑战,通常将影响组织-材料相互作用的因素孤立或小范围地进行研究。因此,蛋白质构象对 Ti 骨植入物表面设计的影响仍然是一个未解决的研究问题。本综述的目的是全面评估关于 Ti 及其合金表面参数在 FBR 各阶段的现有文献,特别关注蛋白质吸附和骨免疫调节。这种评估旨在系统地描述这些对骨形成的影响。