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了解抗氧化药物厄多司坦及其活性代谢产物在耐甲氧西林生物膜形成中的作用。

Understanding the Role of the Antioxidant Drug Erdosteine and Its Active Metabolite on Methicillin Resistant Biofilm Formation.

作者信息

Cattò Cristina, Villa Federica, Cappitelli Francesca

机构信息

Department of Food, Environmental and Nutritional Sciences, Università degli Studi di Milano, 20122 Milano, Italy.

出版信息

Antioxidants (Basel). 2021 Nov 29;10(12):1922. doi: 10.3390/antiox10121922.

Abstract

Increasing numbers of researches have suggested that some drugs with reactive oxygen species (ROS)-mediated mechanisms of action modulate biofilm formation of some pathogenic strains. However, the full contribution of ROS to biofilm development is still an open question. In this paper, the correlations between the antioxidant drug Erdosteine (Er) and its active Metabolite I (Met I), ROS and biofilm development of two strains of methicillin resistant are presented. Experiments revealed that Er and Met I at 2 and 5 mg/L increased up to three orders of magnitude the number of biofilm-dwelling cells, while the content of ROS within the biofilms was reduced above the 87%, with a major effect of Met I in comparison to Er. Comparative proteomics showed that, 5 mg/L Met I modified the expression of 30% and 65% of total proteins in the two strains respectively. Some proteins involved in cell replication were upregulated, and a nitric oxide-based mechanism is assumed to modulate the biofilm development by changing quorum sensitive pathways. Additionally, several proteins involved in virulence were downregulated in the presence of Met I, suggesting that treated cells, despite being greater in number, might have lost part of their virulence.

摘要

越来越多的研究表明,一些具有活性氧(ROS)介导作用机制的药物可调节某些致病菌株的生物膜形成。然而,ROS对生物膜发育的全面作用仍是一个悬而未决的问题。本文介绍了抗氧化药物厄多司坦(Er)及其活性代谢物I(Met I)、ROS与两种耐甲氧西林菌株生物膜发育之间的相关性。实验表明,2 mg/L和5 mg/L的Er和Met I可使生物膜内的细胞数量增加多达三个数量级,而生物膜内的ROS含量降低了87%以上,与Er相比,Met I的作用更显著。比较蛋白质组学表明,5 mg/L的Met I分别使两种菌株中30%和65%的总蛋白表达发生改变。一些参与细胞复制的蛋白质上调,推测一种基于一氧化氮的机制通过改变群体感应途径来调节生物膜发育。此外,在Met I存在的情况下,几种与毒力相关的蛋白质下调,这表明经处理的细胞尽管数量更多,但可能已经失去了部分毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/966b/8698571/75b4ad379738/antioxidants-10-01922-g001.jpg

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