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Nanotopography-based strategy for the precise manipulation of osteoimmunomodulation in bone regeneration

机译:Nanotopography-based战略精确操纵osteoimmunomodulation的骨头再生

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摘要

Immune cells play vital roles in regulating bone dynamics. Successful bone regeneration requires a favourable osteo-immune environment. The high plasticity and diversity of immune cells make it possible to manipulate the osteo-immune response of immune cells, thus modulating the osteoimmune environment and regulating bone regeneration. With the advancement in nanotechnology, nanotopographies with different controlled surface properties can be fabricated. On tuning the surface properties, the osteo-immune response can be precisely modulated. This highly tunable characteristic and immunomodulatory effects make nanotopography a promising strategy to precisely manipulate osteoimmunomdulation for bone tissue engineering applications. This review first summarises the effects of the immune response during bone healing to show the importance of regulating the immune response for the bone response. The plasticity of immune cells is then reviewed to provide rationales for manipulation of the osteoimmune response. Subsequently, we highlight the current types of nanotopographies applied in bone biomaterials and their fabrication techniques, and explain how these nanotopographies modulate the immune response and the possible underlying mechanisms. The effects of immune cells on nanotopography-mediated osteogenesis are emphasized, and we propose the concept of "nano-osteoimmunomodulation" to provide a valuable strategy for the development of nanotopographies with osteoimmunomodulatory properties that can precisely regulate bone dynamics.
机译:免疫细胞在调节骨中起到至关重要的作用动力学。osteo-immune有利环境。免疫细胞的可塑性和多样性可以操纵osteo-immune响应免疫细胞,从而调节osteoimmune环境和调节骨再生。随着纳米技术的发展,nanotopographies与不同的控制表面属性是可以伪造的。表面性质,osteo-immune响应可以精确调制。特点和免疫调节作用nanotopography正是一个有前途的战略操纵osteoimmunomdulation骨组织工程应用。总结了免疫应答的影响在骨愈合的重要性调节免疫反应的骨头响应。综述了为操作提供依据osteoimmune的反应。强调当前的nanotopographies类型在骨生物材料及其应用制造技术,并解释如何将这些nanotopographies调节免疫反应可能的潜在机制。nanotopography-mediated的免疫细胞强调骨生成,我们提出的“nano-osteoimmunomodulation”的概念提供一个有价值的发展战略的nanotopographies osteoimmunomodulatory属性能够精确调节骨动力学。

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