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The genetics of staphylococcal biofilm formation--will a greater understanding of pathogenesis lead to better management of device-related infection?

机译:葡萄球菌生物膜形成的遗传学-对发病机理的更多了解会导致对与设备相关的感染进行更好的管理吗?

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摘要

Staphylococcus epidermidis and Staphylococcus aureus are common causes of biofilm-mediated prosthetic device-related infection. The polysaccharide adhesion mechanism encoded by the ica operon is currently the best understood mediator of biofilm development, and represents an important virulence determinant. More recently, the contributions of other virulence regulators, including the global regulators agr, sarA and sigmaB, to the biofilm phenotype have also been investigated. Nevertheless, little has changed at the bedside; the clinical and laboratory diagnosis of device-related infection can be difficult, and biofilm resistance frequently results in failure of therapy. This review assesses the way in which advances in the understanding of biofilm genetics may impact on the clinical management of device-related infection.
机译:表皮葡萄球菌和金黄色葡萄球菌是生物膜介导的修复装置相关感染的常见原因。 ica操纵子编码的多糖粘附机制是目前最广为人知的生物膜发育介质,并且代表重要的毒力决定因素。最近,还研究了其他毒力调节剂,包括全球调节剂agr,sarA和sigmaB对生物膜表型的贡献。不过,床边的变化很小。设备相关感染的临床和实验室诊断可能很困难,生物膜耐药性经常导致治疗失败。这篇综述评估了对生物膜遗传学理解的进步可能会影响设备相关感染的临床管理的方式。

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