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首页> 外文期刊>Scientific reports. >Effect of manuka honey on biofilm-associated genes expression during methicillin-resistant Staphylococcus aureus biofilm formation
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Effect of manuka honey on biofilm-associated genes expression during methicillin-resistant Staphylococcus aureus biofilm formation

机译:麦卢卡蜂蜜对生物膜相关基因表达的影响甲氧胞素耐金黄色葡萄球菌生物膜形成

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摘要

Methicillin-resistant Staphylococcus aureus (MRSA) are among the most important biofilm-forming pathogens responsible for hard-to-treat infections. Looking for alternatives to antibiotics that prevent biofilm formation, we investigated the effects of manuka honey on the transcriptional profile of genes essential for staphylococcal biofilm formation using qRT-PCR. mRNA from two hospital MRSA strains (strong and weak biofilm producer) were isolated after 4, 8, 12 and 24?h from cells grown in biofilm. Manuka honey at 1/2 minimum biofilm inhibition concentration (MBIC) significantly reduced MRSA cell viability in biofilm. Manuka honey downregulated the genes encoding laminin- (eno), elastin- (ebps) and fibrinogen binding protein (fib), and icaA and icaD involved in biosynthesis of polysaccharide intercellular adhesin in both weakly and strongly adhering strain compared to the control (untreated biofilm). Expression levels of cna (collagen binding protein) and map/eap (extracellular adherence protein—Eap) were reduced in weakly adhering strain. The lowest expression of investigated genes was observed after 12?h of manuka honey treatment at 1/2 MBIC. This study showed that the previously unknown mechanism of manuka honey action involved inhibition of S. aureus adhesion due to reduction in expression of crucial genes associated with staphylococcal biofilm.
机译:耐甲氧西林金黄色葡萄球菌(MRSA)是最重要的生物膜形成病原体,其负责难以治疗的感染。寻找预防生物膜形成的抗生素的替代品,我们研究了麦卢卡蜂蜜对使用QRT-PCR的葡萄球菌生物膜形成基因的转录剖面的影响。在生物膜生长的细胞4,8,12和24μl,分离出两栖MRSA菌株(强弱和生物膜生产者)的mRNA。 Manuka蜂蜜在1/2最小生物膜抑制浓度(MBIC)在生物膜中显着降低了MRSA细胞活力。麦卢卡蜂蜜下调了编码层蛋白 - (eNO),弹性蛋白 - (EBP)和纤维蛋白原结合蛋白(FIB)的基因,以及参与多糖细胞间粘附素的生物合成的ICAA和ICAD,与对照(未经处理的生物膜未经治疗) )。弱粘附菌株减少了CNA(胶原结合蛋白)和地图/ EAP(细胞外粘附蛋白-EAP)的表达水平。在1/2 MBIC的Manuka蜂蜜治疗后,观察到研究基因的最低表达。该研究表明,由于与葡萄球菌生物膜相关的关键基因的表达的表达,Manuka蜂蜜作用的先前未知机制涉及S.UUREUS粘附的抑制。

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