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Antimicrobial Efficacy of a Novel Eucalyptus Oil, Chlorhexidine Digluconate and Isopropyl Alcohol Biocide Formulation

机译:新型桉树油,洗必太二葡萄糖酸酯和异丙醇杀生物剂的抑菌作用

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摘要

Effective surface disinfection is a fundamental infection control strategy within healthcare. This study assessed the antimicrobial efficacy of novel biocide formulations comprising 5% and 2% eucalyptus oil (EO) combined with 2% chlorhexidine digluconate (CHG) and 70% isopropyl alcohol (IPA) contained within a wipe. The efficacy of this novel antimicrobial formulation to remove and eliminate methicillin-resistant Staphylococcus aureus (MRSA), Escherichia coli and Candida albicans from steel surfaces was investigated. Adpression studies of pre-contaminated wipes were also utilised to assess their potential to induce cross-contamination between hard surfaces. Furthermore, the bactericidal nature of the EO-formulation was established in addition to time-kill. The EO-containing formulations demonstrated bactericidal antimicrobial efficacy against all microorganisms and did not induce surface cross-contamination. There was no significant difference (p < 0.05) between the 5% and 2% EO formulations in their ability to remove microorganisms from steel surfaces, however both significantly (p < 0.05) removed more than the control formulations. Microbial biofilms were eliminated within 10 min (p < 0.05) when exposed to the EO formulations. Our novel EO-formulation demonstrated rapid antimicrobial efficacy for potential disinfection and elimination of microbial biofilms from hard surfaces and may therefore be a useful adjunct to current infection control strategies currently employed within healthcare facilities.
机译:有效的表面消毒是医疗保健中基本的感染控制策略。这项研究评估了新型杀菌剂配方的抗微生物功效,该配方包含5%和2%的桉树油(EO)与2%的擦拭布中所含的2%洗必泰二葡萄糖酸酯(CHG)和70%异丙醇(IPA)。研究了这种新型抗菌制剂从钢表面去除和消除耐甲氧西林的金黄色葡萄球菌(MRSA),大肠杆菌和白色念珠菌的功效。预污染抹布的压力研究也用于评估其在硬质表面之间引起交叉污染的潜力。此外,除了消灭时间外,还确定了EO制剂的杀菌性质。含EO的制剂表现出对所有微生物的杀菌抗微生物功效,并且不引起表面交叉污染。 5%和2%EO配方从钢表面去除微生物的能力之间没有显着差异(p <0.05),但是两者均比对照配方去除了更多(p <0.05)。当暴露于EO制剂时,在10分钟内消除了微生物生物膜(p <0.05)。我们新颖的EO配方对潜在的消毒和消除硬质表面上的微生物生物膜具有快速的抗菌功效,因此可能是当前医疗机构目前采用的感染控制策略的有用辅助手段。

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