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Overcoming bacterial physical defenses with molecule-like ultrasmall antimicrobial gold nanoclusters

机译:用分子的超易微生物金纳米团簇克服细菌物理防御

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The size of metal nanoparticles (NPs) is crucial in their biomedical applications. Although abundant studies on the size effects of metal NPs in the range of 2–100?nm have been conducted, the exploration of the ultrasmall metal nanoclusters (NCs) of ~1?nm in size with unique features is quite limited. We synthesize three different sized gold (Au) NCs of different Au atom numbers and two bigger sized Au NPs protected by the same ligand to study the size influence on antimicrobial efficacy. The ultrasmall Au NCs can easily traverse the cell wall pores to be internalized inside bacteria, inducing reactive oxygen species generation to oxidize bacterial membrane and disturb bacterial metabolism. This explains why the Au NCs are antimicrobial while the Au NPs are non-antimicrobial, suggesting the key role of size in antimicrobial ability. Moreover, in contrast to the widely known size-dependent antimicrobial properties, the Au NCs of different atom numbers demonstrate molecule-like instead of size-dependent antimicrobial behavior with comparable effectiveness, indicating the unique molecule-like feature of ultrasmall Au NCs. Overcoming the bacterial defenses at the wall with ultrasmall Au NCs changes what was previously believed to harmless to the bacteria instead to a highly potent agent against the bacteria.
机译:金属纳米颗粒(NPS)的尺寸在其生物医学应用中至关重要。虽然已经进行了对金属NP的尺寸效应的丰富研究已经进行了2-100·NM的尺寸,但是具有独特特征的大小〜1Ω·Nm的超超级金属纳米团簇(NC)的探测。我们合成三种不同AU原子数的不同尺寸的金(AU)NCS和由相同配体保护的两个更大尺寸的AU NPS,以研究尺寸对抗微生物效能的影响。超大AU NCs可以容易地穿过细胞壁孔内化的细菌内化,诱导反应性氧物种产生,以氧化细菌膜和干扰细菌代谢。这解释了为什么Au ncs是抗微生物的,而Au NPS是非抗菌剂,表明尺寸在抗菌能力中的关键作用。此外,与众所周知的尺寸依赖性抗微生物性质相比,不同原子编号的Au ncs表现出分子样代替具有可比有效性的分子样代替尺寸依赖性抗微生物行为,表明超级允许的USU NCS的独特分子样特征。克服壁上的细菌防御用超强AU NCS改变以前认为对细菌无害的内容是对细菌的高强度的。

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