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Supramolecular reactive sulphur nanoparticles: a novel and efficient antimicrobial agent.

机译:超分子反应性硫纳米颗粒:一种新型有效的抗菌剂。

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Antimicrobial resistance continues to be an inexorable threat for the biomedical and biochemical researchers. Despite the novel discoveries in drug designing and delivery, high-throughput screening and surveillance data render the prospects for new antimicrobial agents as bleak as ever. The advent of nanotechnology, however, strengthens pharmacology by offering effective therapeutics to treat this aforementioned problem. Several nanoparticles of the known elements have already been reported for their antimicrobial efficacy. Nanosized fabrication of elemental sulphur with suitable surface modifications offers to retrieve the use of sulphur (man's oldest known ecofriendly microbicide) as a potential antimicrobial agent. Sulphur nanoparticles (SNPs) are effective against both conventionally sulphur-resistant and sulphur-susceptible microbes (fungi and bacteria). Moreover, biocompatible polymers present on the surface of SNPs minimize toxicity during application. Here, we focus on various aspects of physicochemical features of SNPs and their biochemical interactions with microbes. The present review also illustrates the effects of SNPs on plants and animals in terms of cytotoxicity and biocompatibility.
机译:对于生物医学和生化研究人员而言,抗菌素耐药性仍然是不可避免的威胁。尽管在药物设计和交付方面有了新发现,但高通量筛选和监测数据仍使新型抗菌剂的前景一如既往的黯淡。然而,纳米技术的出现通过提供有效的疗法来治疗上述问题而增强了药理学。已经报道了几种已知元素的纳米颗粒的抗微生物功效。具有适当的表面改性的元素硫的纳米级制造提供了将硫(人类最古老的已知的环保杀微生物剂)用作潜在的抗菌剂的机会。硫纳米颗粒(SNP)可有效抵抗传统上耐硫和易受硫磺污染的微生物(真菌和细菌)。而且,存在于SNP表面上的生物相容性聚合物使施用期间的毒性最小化。在这里,我们专注于SNPs的理化特征及其与微生物的生化相互作用的各个方面。本综述还从细胞毒性和生物相容性方面说明了SNP对植物和动物的影响。

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