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A Precautionary Approach to Guide the Use of Transition Metal-Based Nanotechnology to Prevent Orthopedic Infections

机译:预防方法指导使用基于过渡金属的纳米技术预防骨科感染

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摘要

The increase of multidrug-resistant bacteria remains a global concern. Among the proposed strategies, the use of nanoparticles (NPs) alone or associated with orthopedic implants represents a promising solution. NPs are well-known for their antimicrobial effects, induced by their size, shape, charge, concentration and reactive oxygen species (ROS) generation. However, this non-specific cytotoxic potential is a powerful weapon effective against almost all microorganisms, but also against eukaryotic cells, raising concerns related to their safe use. Among the analyzed transition metals, silver is the most investigated element due to its antimicrobial properties per se or as NPs; however, its toxicity raises questions about its biosafety. Even though it has milder antimicrobial and cytotoxic activity, TiO2 needs to be exposed to UV light to be activated, thus limiting its use conjugated to orthopedic devices. By contrast, gold has a good balance between antimicrobial activity as an NP and cytocompatibility because of its inability to generate ROS. Nevertheless, although the toxicity and persistence of NPs within filter organs are not well verified, nowadays, several basic research on NP development and potential uses as antimicrobial weapons is reported, overemphasizing NPs potentialities, but without any existing potential of translation in clinics. This analysis cautions readers with respect to regulation in advancing the development and use of NPs. Hopefully, future works in vivo and clinical trials will support and regulate the use of nano-coatings to guarantee safer use of this promising approach against antibiotic-resistant microorganisms.
机译:耐多药细菌的增加仍然是全球关注的问题。在提出的策略中,单独使用纳米粒子(NPs)或与整形外科植入物结合使用代表了有前途的解决方案。 NP因其大小,形状,电荷,浓度和活性氧(ROS)生成而引起的抗菌作用而闻名。但是,这种非特异性的细胞毒性潜力是对几乎所有微生物都有效的强大武器,而且对真核细胞也有效,引起了人们对其安全使用的担忧。在所分析的过渡金属中,由于其本身或作为NP的抗菌特性,银是研究最多的元素。但是,其毒性引起了对其生物安全性的质疑。尽管TiO2具有较温和的抗微生物和细胞毒性活性,但仍需要将TiO2暴露于紫外线下才能被激活,因此限制了其与骨科器械结合使用。相反,金由于不能产生ROS,因此在作为NP的抗菌活性与细胞相容性之间具有良好的平衡。尽管如此,尽管NPs在滤器器官中的毒性和持久性尚未得到很好的验证,但如今,已报道了一些有关NP的发展及其作为抗菌武器的潜在用途的基础研究,过分强调了NPs的潜力,但在临床上却没有翻译的潜力。该分析提醒读者注意促进NP的开发和使用的法规。希望未来的体内和临床试验工作将支持和规范纳米涂层的使用,以确保更安全地使用这种有前途的方法来抵抗抗生素抗性微生物。

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