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Osteoimmunomodulatory effects of biomaterial modification strategies on macrophage polarization and bone regeneration

机译:生物材料改性策略对巨噬细胞极化和骨再生的骨质调节作用

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Biomaterials as bone substitutes are always considered as foreign bodies that can trigger host immune responses. Traditional designing principles have been always aimed at minimizing the immune reactions by fabricating inert biomaterials. However, clinical evidence revealed that those methods still have limitations and many of which were only feasible in the laboratory. Currently, osteoimmunology, the very pioneering concept is drawing more and more attention—it does not simply regard the immune response as an obstacle during bone healing but emphasizes the intimate relationship of the immune and skeletal system, which includes diverse cells, cytokines, and signaling pathways. Properties of biomaterials like topography, wettability, surface charge, the release of cytokines, mediators, ions and other bioactive molecules can impose effects on immune responses to interfere with the skeletal system. Based on the bone formation mechanisms, the designing methods of the biomaterials change from immune evasive to immune reprogramming. Here, we discuss the osteoimmunomodulatory effects of the new modification strategies—adjusting properties of bone biomaterials to induce a favorable osteoimmune environment. Such strategies showed potential to benefit the development of bone materials and lay a solid foundation for the future clinical application.
机译:生物材料作为骨替代品总是被认为是可以引发宿主免疫应答的异物。传统的设计原则一直旨在通过制造惰性生物材料来最小化免疫反应。然而,临床证据表明,这些方法仍然有局限性,其中许多方法在实验室中才有可行的。目前,骨内膜学,非常开拓的概念正在吸引越来越多的关注 - 它并不简单地将免疫应答视为骨愈合期间的障碍,但强调免疫和骨骼系统的亲密关系,包括不同细胞,细胞因子和信号传导途径。生物材料的性质如地形,润湿性,表面电荷,细胞因子,介质,离子和其他生物活性分子的释放可以施加对干扰骨骼系统的免疫应答的影响。基于骨形成机制,生物材料的设计方法从免疫力改变为免疫重编程。在这里,我们讨论了骨生物材料的新改性策略调整性能的骨质调节作用,诱导有利的骨疫苗环境。这些策略表明,有利于骨材料的发展,为未来的临床应用奠定坚实的基础。

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