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Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections

机译:将有机硫化合物转化为无机多硫化物以抵抗耐药细菌感染

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摘要

The use of natural substance to ward off microbial infections has a long history. However, the large-scale production of natural extracts often reduces antibacterial potency, thus limiting practical applications. Here we present a strategy for converting natural organosulfur compounds into nano-iron sulfides that exhibit enhanced antibacterial activity. We show that compared to garlic-derived organosulfur compounds nano-iron sulfides exhibit an over 500-fold increase in antibacterial efficacy to kill several pathogenic and drug-resistant bacteria. Furthermore, our analysis reveals that hydrogen polysulfanes released from nano-iron sulfides possess potent bactericidal activity and the release of polysulfanes can be accelerated by the enzyme-like activity of nano-iron sulfides. Finally, we demonstrate that topical applications of nano-iron sulfides can effectively disrupt pathogenic biofilms on human teeth and accelerate infected-wound healing. Together, our approach to convert organosulfur compounds into inorganic polysulfides potentially provides an antibacterial alternative to combat bacterial infections.
机译:使用天然物质抵御微生物感染已有很长的历史。然而,天然提取物的大规模生产通常降低了抗菌效力,从而限制了实际应用。在这里,我们提出了一种将天然有机硫化合物转变为具有增强抗菌活性的纳米铁硫化物的策略。我们表明,与大蒜衍生的有机硫化合物相比,纳米铁硫化物在杀灭几种病原性和抗药性细菌的抗菌效力方面提高了500倍以上。此外,我们的分析表明,从纳米铁硫化物释放出的氢多硫化氢具有强大的杀菌活性,并且可以通过纳米铁硫化物的酶样活性来促进多硫化物的释放。最后,我们证明了纳米铁硫化物的局部应用可以有效破坏人类牙齿上的致病性生物膜并加速感染伤口的愈合。总之,我们将有机硫化合物转化为无机多硫化物的方法潜在地提供了一种抗细菌感染的抗菌替代品。

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