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Self-Assembled Monolayers of Copper Sulfide Nanoparticles on Glass as Antibacterial Coatings

机译:自组装的铜硫化物纳米粒子在玻璃上的抗菌涂层。

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摘要

We developed an easy and reproducible synthetic method to graft a monolayer of copper sulfide nanoparticles (CuS NP) on glass and exploited their particular antibacterial features. Samples were fully characterized showing a good stability, a neat photo-thermal effect when irradiated in the Near InfraRed (NIR) region (in the so called “biological window”), and the ability to release controlled quantities of copper in water. The desired antibacterial activity is thus based on two different mechanisms: (i) slow and sustained copper release from CuS NP-glass samples, (ii) local temperature increase caused by a photo-thermal effect under NIR laser irradiation of CuS NP–glass samples. This behavior allows promising in vivo applications to be foreseen, ensuring a “static” antibacterial protection tailored to fight bacterial adhesion in the critical timescale of possible infection and biofilm formation. This can be reinforced, when needed, by a photo-thermal action switchable on demand by an NIR light.
机译:我们开发了一种简单且可重现的合成方法,将单层硫化铜纳米颗粒(CuS NP)嫁接到玻璃上,并利用了它们的特殊抗菌功能。样品经过充分表征,表现出良好的稳定性,在近红外(NIR)区域(在所谓的“生物窗口”中)照射时具有纯净的光热效应,以及在水中释放受控量的铜的能力。因此,所需的抗菌活性是基于两种不同的机制:(i)从CuS NP玻璃样品中缓慢而持续地释放铜;(ii)在NIR激光照射下CuS NP玻璃样品中由于光热效应而引起的局部温度升高。这种行为可以预见到有希望的体内应用,确保在可能的感染和生物膜形成的关键时间范围内,为抵抗细菌粘附而量身定制的“静态”抗菌保护。在需要时,可以通过可根据需要通过NIR灯切换的光热作用来加强此功能。

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