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Nitric Oxide Releasing Titanium Surfaces for Antimicrobial Bone-Integrating Orthopedic Implants

机译:一氧化氮释放钛表面,用于抗微生物骨骨整合整形植入物

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摘要

Titanium implants in orthopedic applications can fail due to infection and impaired integration into the host. Most research efforts that facilitate osseointegration of the implant have not considered infection, and vice versa. Moreover, most infection control measures involve the use of conventional antibiotics which contributes to the global epidemic of antimicrobial resistance. Nitric oxide (NO) is a promising alternative to antibiotics, and while researchers have investigated NO releasing coatings, there are few reports on the function/robustness or the mechanism of NO release. Our comprehensive mechanistic study has allowed us to design, characterize, and optimize NO releasing coatings to achieve maximum antimicrobial efficacy toward bacteria with minimum cytotoxicity to human primary osteoblasts in vitro. As the antibiotic era is coming to an end and the future of infection control continues to demand new alternatives, the coatings described herein represent a promising therapeutic strategy for use in orthopedic surgeries.
机译:矫形应用中的钛植入物由于感染和持股到宿主而受损。大多数研究植入物的骨整合的研究努力没有考虑过感染,反之亦然。此外,大多数感染控制措施涉及使用常规抗生素,这有助于全局抗菌性抗性抗性。一氧化氮(NO)是对抗生素的有希望的替代品,而研究人员则没有进行释放涂料,但少数关于功能/鲁棒性或没有释放机制的报道。我们的综合机制研究使我们能够设计,表征和优化释放涂层,以实现对体外对人原发性成骨细胞的最小细胞毒性的最大抗微生物功效。随着抗生素时代即将到来,感染控制的未来继续要求新的替代品,本文所述的涂层代表了用于骨科手术的有前途的治疗策略。

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