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首页> 外文期刊>The Pediatric infectious disease journal >Revisiting Bacterial Interference in the Age of Methicillin-resistant Staphylococcus aureus Insights Into Staphylococcus aureus Carriage, Pathogenicity and Potential Control
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Revisiting Bacterial Interference in the Age of Methicillin-resistant Staphylococcus aureus Insights Into Staphylococcus aureus Carriage, Pathogenicity and Potential Control

机译:重新发现甲氧西林金黄色葡萄球菌静脉内静脉内岩葡萄球菌桥桥,致病性和潜在控制的细菌干扰

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Bacteria compete with each other for local supremacy in biologic and environmental niches. In humans, who host an array of commensal bacteria, the presence of one species or strain can sometimes prevent colonization by another, a phenomenon known as "bacterial interference." We describe how, in the 1960s, infants (and later adults) were actively inoculated with a relatively benign strain of Staphylococcus aureus, 502A, to prevent colonization with an epidemic S. aureus strain, 80/81. This introduced bacterial interference as a clinical approach to disease prevention, but little was known about the mechanisms of interference at that time. Since then, much has been learned about how bacteria interact with each other and the host to establish carriage, compete for niches and shift from harmless commensal to invasive pathogen. We provide an overview of these findings and summarize recent studies in which the genome and function of 502A were compared with those of the current epidemic strain, USA300, providing insight into differences in their invasiveness and immunogenicity. Although staphylococcal vaccines have been developed, none has yet been approved for clinical use. Further studies of staphylococcal strains and the molecular characteristics that lead to exclusion of specific bacteria from some niches may provide an alternative path to disease prevention.
机译:细菌互相竞争,以便在生物学和环境利基的当地至高无上。在人类举办共谋细菌的人类中,一个物种或菌株的存在有时可以防止另一个物种,一种称为“细菌干扰”的现象。我们描述了在20世纪60年代,婴儿(和后来的成人)用相对良性的金黄色葡萄球菌,502A的葡萄球菌菌株进行了积极地接种,以防止与疫情的疫情进行殖民,80/81。这引入了细菌干扰作为疾病预防的临床方法,但对当时干扰机制很少。从那时起,很多关于细菌如何互相互动和主持人建立运输,从侵袭病原体的无害的共生转向竞争。我们概述了这些发现的概述,总结了最近的研究,其中502A的基因组和功能与当前流行菌株USA300进行了比较,从而深入了解其侵袭性和免疫原性的差异。虽然已经开发出葡萄球菌疫苗,但没有尚未获得临床使用。进一步研究葡萄球菌菌株的研究和导致来自一些核桃的特异性细菌的分子特征可以提供疾病预防的替代途径。

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