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首页> 外文期刊>Annals of Clinical Microbiology and Antimicrobials >Effect of ZnO nanoparticles on methicillin, vancomycin, linezolid resistance and biofilm formation in Staphylococcus aureus isolates
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Effect of ZnO nanoparticles on methicillin, vancomycin, linezolid resistance and biofilm formation in Staphylococcus aureus isolates

机译:ZnO纳米粒子对金黄色葡萄球菌分离物中甲氧西林,万古霉素,线性霉素抗性和生物膜形成的影响

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Multidrug resistant (MDR) and biofilm producing Staphylococcus aureus strains are usually associated with serious infections. This study aimed to evaluate the antibacterial and antibiofilm-formation effects of zinc oxide nanoparticles (ZnO-NPs) against staphylococcus aureus (S. aureus) isolates. A total of 116 S. aureus isolates were recovered from 250 burn wound samples. The antimicrobial/antibiofilm effects of ZnO-NPs against methicillin, vancomycin and linezolid resistant S. aureus (MRSA, VRSA and LRSA) isolates were examined using phenotypic and genotypic methods. The minimum inhibitory concentration (MIC) of ZnO-NPs was determined by microdilution method. The effects of sub-MIC concentrations of ZnO-NPs on biofilm formation and drug resistance in S. aureus were determined by the microtiter plate method. The change in the expression levels of the biofilm encoding genes and resistance genes in S. aureus isolates after treatment with ZnO-NPs was assessed by real time reverse transcriptase PCR (rt-PCR). MICs of ZnO-NPs in S. aureus isolates were (128–2048?μg/ml). The sub-MIC of ZnO-NPs significantly reduced biofilm formation rate (the highest inhibition rate was 76.47% at 1024 μg/ml) and the expression levels of biofilm genes (ica A, ica D and fnb A) with P??0.001. Moreover, Sub-MIC of ZnO-NPs significantly reduced the rates of MRSA from 81.9 (95 isolates) to 13.30% (15 isolates), VRSA from 33.60 (39 isolates) to 0% and LARSA from 29.30 (34) to 0% as well as the expression levels of resistance genes (mec A, van A and cfr) with P value ?0.001. ZnO-NPs can be used as antibiofilm and potent antimicrobial against MRSA, VRSA and LRSA isolates.
机译:产生金黄色葡萄球菌菌株的多药抗性(MDR)和生物膜通常与严重感染有关。本研究旨在评估氧化锌纳米颗粒(ZnO-NPS)对金黄色葡萄球菌(金黄色葡萄球菌)分离物的抗菌和抗菌和抗菌形成作用。从250个烧伤伤口样品中回收了总共116秒的金黄色葡萄球菌分离物。使用表型和基因型方法检查ZnO-NPS对甲氧西林,万古霉素和抗性S.UUREUS(MRSA,VRSA和LRSA)分离物的抗菌/抗菌剂效应。通过微稀释方法测定ZnO-NP的最小抑制浓度(MIC)。通过微滴定板法测定ZnO-NP对ZnO-NP对ZnO-NPS对生物膜形成和耐药性的影响。通过实时逆转录酶PCR(RT-PCR)评估用ZnO-NPS处理后,在S.UUPEUS分离物中的生物膜编码基因和抗性基因的表达水平的变化。 ZnO-NPS在S.UUREUS分离物中的麦克风(128-2048Ω·μg/ ml)。 ZnO-NPS的亚MIC显着降低了生物膜形成速率(最高抑制率为76.47%,在1024μg/ ml处为76.47%),Biofilm基因的表达水平(ICA A,ICA D和FNB A)的表达水平为P?<1 0.001。此外,ZnO-NPS的亚微米显着降低了来自81.9(95分离物)至13.30%(15分离株)的MRSA的速率,从33.60(39分离物)到0%,拉尔萨,从29.30(34)到0%以及具有P值的抗性基因(MEC A,VAN A和CFR)的表达水平<0.001。 ZnO-NPS可用作抗MRSA,VRSA和LRSA分离物的抗血栓管和有效的抗菌剂。

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