Transmission of Staphylococcus aureus from dry surface biofilm (DSB) via different types of gloves

生物膜 金黄色葡萄球菌 细菌 微生物学 琼脂平板 干燥 化学 生物 遗传学 植物
作者
Shamaila Tahir,Durdana Chowdhury,Mark legge,Honghua Hu,Greg Whiteley,Trevor Glasbey,Anand K. Deva,Karen Vickery
出处
期刊:Infection Control and Hospital Epidemiology [Cambridge University Press]
卷期号:40 (1): 60-64 被引量:18
标识
DOI:10.1017/ice.2018.285
摘要

Abstract Background Pathogens can survive for extended periods when incorporated into biofilm on dry hospital surfaces (ie, dry-surface biofilm, DSB). Bacteria within biofilm are protected from desiccation and have increased tolerance to cleaning agents and disinfectants. Objective We hypothesized that gloved hands of healthcare personnel (HCP) become contaminated with DSB bacteria and hence may transmit bacteria associated with healthcare-associated infections (HAIs). Method Staphylococcus aureus DSB was grown in vitro on coupons in a bioreactor over 12 days with periodic nutrition interspersed with long periods of dehydration. Each coupon had ~10 7 DSB bacterial cells. Transmission was tested with nitrile, latex, and surgical gloves by gripping DSB-covered coupons then pressing finger tips onto a sterile horse blood agar surface for up to 19 consecutive touches and counting the number of colony-forming units (CFU) transferred. Coupons were immersed in 5% neutral detergent to simulate cleaning, and the experiment was repeated. Results Bacterial cells were readily transmitted by all 3 types of gloves commonly used by HCP. Surprisingly, sufficient S. aureus to cause infection were transferred from 1 DSB touch up to 19 consecutive touches. Also, 6 times more bacteria were transferred by nitrile and surgical gloves than to latex gloves ( P <.001). Treating the DSB with 5% neutral detergent increased the transmission rate of DSB bacteria 10-fold. Conclusion Staphylococcus aureus incorporated into environmental DSB and covered by extracellular polymeric substances readily contaminates gloved hands and can be transferred to another surface. These results confirm the possibility that DSB contributes to HAI acquisition.

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