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Tuning osteoporotic macrophage responses to favour regeneration by Cu-bearing titanium alloy in

机译:调整骨质疏松巨噬细胞应对CU - 轴承钛合金再生的反应

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摘要

Guided bone regeneration in inflammatory microenvironments of osteoporotic patients with large alveolar bone defects remains a great challenge. Macrophages are necessary for alveolar bone regeneration via their polarization and paracrine actions. Our previous studies showed that Cu-bearing Ti6Al4V alloys are capable of regulating macrophage responses. When considering the complexity of oral microenvironments, the influences of Cu-bearing Ti6Al4V alloys on osteoporotic macrophages in infectious microenvironments are worthy of further investigations. In this study, we fabricated Ti6Al4V-Cu alloy by selective laser melting technology and used Porphyromonas gingivalis lipopolysaccharide (P.g-LPS) to imitate oral pathogenic bacterial infections. Then, we evaluated the impacts of Ti6Al4V-Cu on osteoporotic macrophages in infectious microenvironments. Our results indicated that Ti6Al4V-Cu not only inhibited the P.g-LPS-induced M1 polarization and pro-inflammatory cytokine production of osteoporotic macrophages but also shifted polarization towards the pro-regenerative M2 phenotype and remarkably promoted anti-inflammatory cytokine release. In addition, Ti6Al4V-Cu effectively promoted the activity of COMMD1 to potentially repress NF-κB-mediated transcription. It is concluded that the Cu-bearing Ti6Al4V alloy results in ameliorated osteoporotic macrophage responses to create a favourable microenvironment under infectious conditions, which holds promise to develop a GBR-barrier membrane for alveolar bone regeneration of osteoporosis patients.
机译:具有大型肺泡骨缺损的骨质疏松患者炎症微环境中的引导骨再生仍然是一个巨大的挑战。通过它们的极化和旁静脉作用是肺泡骨再生所必需的巨噬细胞。我们以前的研究表明,携带Cu的Ti6Al4V合金能够调节巨噬细胞反应。在考虑口腔微环境的复杂性时,Cu承载Ti6Al4V合金对传染性微环境骨质血栓药物对骨质疏松巨噬细胞的影响值得进一步研究。在这项研究中,我们通过选择性激光熔化技术制造了Ti6Al4V-Cu合金,使用卟啉核苷酸脂多糖(P.G-LPS)来模仿口服病原细菌感染。然后,我们在传染性微环境中评估了Ti6Al4V-Cu对骨质疏松巨噬细胞的影响。我们的结果表明,Ti6Al4V-Cu不仅抑制了骨质疏松巨噬细胞的P.G-LPS诱导的M1偏振和促炎细胞因子产生,而且还朝向预再生M2表型移位偏振,并且显着促进了抗炎细胞因子释放。此外,Ti6Al4V-Cu有效地促进了Commd1的活性,以潜在地压制NF-κB介导的转录。得出结论是,携带铜的Ti6Al4V合金导致改善的骨质疏松巨噬细胞反应,以在传染性条件下产生有利的微环境,这使得希望开发用于骨质疏松患者肺泡骨再生的GBR阻隔膜。

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