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首页> 外文期刊>Archives of microbiology >The effectiveness of anti-biofilm and anti-virulence properties of dihydrocelastrol and dihydrocelastryl diacetate in fighting against methicillin-resistant Staphylococcus aureus
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The effectiveness of anti-biofilm and anti-virulence properties of dihydrocelastrol and dihydrocelastryl diacetate in fighting against methicillin-resistant Staphylococcus aureus

机译:抗生物膜和二氢纤维西和二乙酸酯的抗生物膜和抗毒力学性能的有效性在对抗甲氧西林金黄色葡萄球菌中的作用

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摘要

Human pathogens have readily been converted into multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA), because of the long-term use of conventional antibiotics. In addition, the biofilms formed by S. aureus cells are especially problematic and are related to the persistence of chronic infections because they constitute a major mechanism of promoting tolerance to diverse antimicrobial agents. Hence, the inhibitions of biofilm formation and/or toxin production are accepted as alternative means of controlling S. aureus infections. The present study was aimed at identifying novel anti-biofilm and/or anti-virulence compounds in friedelane-based pentacyclic triterpenoids present in many edible and medicinal plants-and investigating them against MRSA strains. As a result, dihydrocelastrol and dihydrocelastryl diacetate were found to both inhibit the biofilm formation of, and to disrupt the preformed biofilms of, MRSA strains to an increasingly greater degree with increasing concentrations of each compound. Furthermore, these two triterpenoids also clearly inhibited the hemolytic activity of MRSA-and in-line with their anti-biofilm activities, rendered the cell more hydrophilic. Additionally, corroborating phenotypic results, transcriptional analyses showed that both dihydrocelastrol and dihydrocelastryl diacetate disturbed the expression of gene related to alpha-hemolysin (hla) and down-regulated the expressions of the crucial biofilm-associated genes (agrA, sarA, ica, RNAIII, and rbf) in MRSA. The findings of this study suggest that friedelane-based pentacyclic triterpenoids-especially dihydrocelastrol and dihydrocelastryl diacetate-have the potential to be candidates both for use in controlling biofilm-related infections and for use as important components of anti-virulence strategies for fighting against MRSA infection.
机译:由于长期使用常规抗生素,人类病原体容易被转化为多药物抗性病原体,例如耐甲氧西林耐金黄色葡萄球菌(MRSA)。此外,由S.UUSTUS细胞形成的生物膜尤其有问题,与慢性感染的持续存在有关,因为它们构成了促进对不同抗微生物剂的耐受性的主要机制。因此,将生物膜形成和/或毒素产生的抑制作为控制金黄色葡萄球菌感染的替代方法。本研究旨在鉴定在许多可食用和药用植物中存在的Friedelane的五环素三萜类化合物中的新型抗生物膜和/或抗毒力化合物 - 并针对MRSA菌株研究它们。结果,发现二氢纤维纤维醇和二氢纤维素酸二酸酯均抑制生物膜形成,并破坏MRSA菌株的预成型生物膜,以增加每种化合物的浓度越来越大。此外,这两个三萜类化合物还清楚地抑制了MRSA的溶血活性,并在其抗生物膜活性方面抑制了细胞更亲水的细胞。另外,转录分析结果表明,转录分析表明,二氢椰菜和二氢纤维杆菌糖尿病患者干扰与α-血液溶解素(HLA)有关的基因的表达,下调至关重要的生物膜相关基因的表达(Agra,Sara,ICA,RNAiii,和rbf)在MRSA。本研究的结果表明,基于Friedelane的五环素三萜类化合物 - 特别是二氢椰菜和二氢纤维酰二磺酸盐 - 具有用于控制生物膜相关感染的候选物,并用作抗MRSA感染的抗毒力策略的重要组成部分。

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