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从葡萄中分离出的非酿酒酵母巴氏有孢圆酵母CC-PT4对耐甲氧西林金黄色葡萄球菌生长和生物膜的抑制作用

Inhibitory Effect of Non-Saccharomyces Starmerella bacillaris CC-PT4 Isolated from Grape on MRSA Growth and Biofilm.

作者信息

Shen Yong, Bai Xue, Wang Jiaxi, Zhou Xiran, Meng Rizeng, Guo Na

机构信息

College of Food Science and Engineering, Jilin University, 130062, Changchun, People's Republic of China.

Technology Center of Changchun Customs, 130062, Changchun, People's Republic of China.

出版信息

Probiotics Antimicrob Proteins. 2025 Feb;17(1):227-239. doi: 10.1007/s12602-023-10146-7. Epub 2023 Aug 28.

Abstract

Methicillin-resistant Staphylococcus aureus (MRSA) is a notorious pathogen with biofilm-forming and drug-resistant properties that make it difficult to eradicate. In this study, the inhibition of MRSA (ATCC 43300) by Starmerella bacillaris CC-PT4 (CGMCC No. 23573) was evaluated. The results showed that the inhibition of MRSA growth and biofilm was caused by S. bacillaris CC-PT4 cell-free supernatant (CFS). The CFS of S. bacillaris CC PT4 at different times can effectively inhibit the formation of MRSA biofilm, remove the preformed biofilm, and down-regulate the related genes that promote the formation of biofilm. Afterwards, untargeted metabolomics was performed to analyze the CFS of S. bacillaris CC-PT4. Several molecules with antibacterial and inhibitory biofilm effects from the CFS were found, one of which, 2-amino-1-phenylethanol (APE), has not been reported to have antiMRSA ability before. In this study, molecular docking analysis and in vitro experiments were used to verify the function of APE to inhibit MRSA. These results indicate that S. bacillaris CC-PT4 CFS can effectively inhibit MRSA which has potential application value in controlling MRSA.

摘要

耐甲氧西林金黄色葡萄球菌(MRSA)是一种臭名昭著的病原体,具有形成生物膜和耐药的特性,难以根除。在本研究中,评估了芽孢汉逊酵母CC-PT4(CGMCC No. 23573)对MRSA(ATCC 43300)的抑制作用。结果表明,芽孢汉逊酵母CC-PT4的无细胞上清液(CFS)对MRSA的生长和生物膜形成有抑制作用。芽孢汉逊酵母CC PT4在不同时间的CFS能有效抑制MRSA生物膜的形成,去除预先形成的生物膜,并下调促进生物膜形成的相关基因。随后,进行了非靶向代谢组学分析芽孢汉逊酵母CC-PT4的CFS。从CFS中发现了几种具有抗菌和抑制生物膜作用的分子,其中一种,2-氨基-1-苯乙醇(APE),此前尚未报道具有抗MRSA能力。在本研究中,使用分子对接分析和体外实验来验证APE抑制MRSA的功能。这些结果表明,芽孢汉逊酵母CC-PT4 CFS能有效抑制MRSA,在控制MRSA方面具有潜在应用价值。

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