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胶体纳米银与精油的联合活性——作用机制及生物膜清除活性

Combined Activity of Colloid Nanosilver and Essential Oil-Mechanism of Action and Biofilm Removal Activity.

作者信息

Shirdel Maryam, Tajik Hossein, Moradi Mehran

机构信息

Department of Food Hygiene and Quality Control, Faculty of Veterinary Medicine, Urmia University, 1177, Urmia, West Azarbaijan, Iran.

Department of Medicinal and Industrial Plant, Institute of Biotechnology, Urmia University, 1177 Urmia, Iran.

出版信息

Adv Pharm Bull. 2017 Dec;7(4):621-628. doi: 10.15171/apb.2017.074. Epub 2017 Dec 31.

Abstract

The aim of this study was to investigate antimicrobial and biofilm removal potential of Zataria multiflora essential oil (ZEO) and silver nanoparticle (SNP) alone and in combination on Staphylococcus aureus and Salmonella Typhimurium and evaluate the mechanism of action. The minimum inhibitory concentration (MIC), and optimal inhibitory combination (OIC) of ZEO and SNP were determined according to fractional inhibitory concentration (FIC) method. Biofilm removal potential and leakage pattern of 260-nm absorbing material from the bacterial cell during exposure to the compounds were also investigated. MICs of SNP for both bacteria were the same as 25 μg/ mL. The MICs and MBCs values of ZEO were 2500 and 1250 μg/mL, respectively. The most effective OIC value for SNP and ZEO against Salm. Typhimurium and Staph. aureus were 12.5, 625 and 0.78, 1250 μg/ mL, respectively. ZEO and SNP at MIC and OIC concentrations represented a strong removal ability (>70%) on biofilm. Moreover, ZEO at MIC and OIC concentrations did a 6-log reduction of primary inoculated bacteria during 15 min contact time. The effect of ZEO on the loss of 260-nm material from the cell was faster than SNP during 15 and 60 min. Combination of ZEO and SNP had significant sanitizing activity on examined bacteria which may be suitable for disinfecting the surfaces.

摘要

本研究的目的是调查百里香精油(ZEO)和银纳米颗粒(SNP)单独及联合使用对金黄色葡萄球菌和鼠伤寒沙门氏菌的抗菌及生物膜清除潜力,并评估其作用机制。根据分数抑菌浓度(FIC)法确定ZEO和SNP的最低抑菌浓度(MIC)及最佳抑菌组合(OIC)。还研究了在接触这些化合物期间细菌细胞中260纳米吸收物质的生物膜清除潜力和泄漏模式。SNP对两种细菌的MIC均为25μg/mL。ZEO的MIC和MBC值分别为2500和1250μg/mL。SNP和ZEO对鼠伤寒沙门氏菌和金黄色葡萄球菌最有效的OIC值分别为12.5、625和0.78、1250μg/mL。MIC和OIC浓度的ZEO和SNP对生物膜具有很强的清除能力(>70%)。此外,MIC和OIC浓度的ZEO在15分钟接触时间内使初始接种细菌减少6个对数级。在15分钟和60分钟内,ZEO对细胞中260纳米物质损失的影响比SNP更快。ZEO和SNP的组合对受试细菌具有显著的消毒活性,可能适用于表面消毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1711/5788217/3ddf30e96a6c/apb-7-621-g001.jpg

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