Suppr超能文献

必需脂肪酸对临床分离的万古霉素耐药 . 的抗菌和抗生物膜作用

Antimicrobial and antibiofilm effects of essential fatty acids against clinically isolated vancomycin-resistant .

机构信息

Department of Infectious Diseases and Clinical Microbiology, Beijing Institute of Respiratory Medicine and Beijing Chao-Yang Hospital, Capital Medical University, Beijing, China.

Department of Clinical Laboratory, Beijing Hospital, National Center of Gerontology, Institute of Geriatric Medicine, Chinese Academy of Medical Sciences, Beijing, China.

出版信息

Front Cell Infect Microbiol. 2023 Sep 29;13:1266674. doi: 10.3389/fcimb.2023.1266674. eCollection 2023.

Abstract

INTRODUCTION

is a leading cause of hospital-acquired infections, which has become a serious public health concern. The increasing incidence of vancomycin-resistant (VRE-fm) raises an urgent need to find new antimicrobial agents as a complement to traditional antibiotics. The study aimed to evaluate the antimicrobial and antibiofilm activity of essential fatty acids (EFAs) against VRE-fm, and further explore the molecular mechanism of the antibiofilm activity of EFAs.

METHOD

The microdilution broth method was used for antimicrobial susceptibility testing with traditional antibiotics and EFAs, including α-linolenic acid (ALA), eicosapentaenoic acid (EPA), docosahexaenoic acid (DHA), linoleic acid (LOA), γ-linolenic acid (GLA), and arachidonic acid (AA). The effect of EFAs on cell morphology of VRE-fm was investigated by scanning electron microscopy. The crystal violet method was used to evaluate the antibiofilm activities of EFAs against VRE-fm. Furthermore, the expression of biofilm-related genes (, , , and ) of VRE-fm isolates under the action of GLA was analyzed using quantitative reverse transcription PCR (qRT-PCR) assay.

RESULTS

VRE-fm isolates were highly resistant to most traditional antibiotics, only highly susceptible to quinupristin-dalfopristin (90.0%), tigecycline (100%), and linezolid (100%). EPA, DHA, and GLA exhibited excellent antimicrobial activity. The MIC of EPA, DHA, and GLA were 0.5/1, 0.25/0.5, and 0.5/1 mM, respectively. SEM imaging showed that strain V27 adsorbed a large number of DHA molecules. Furthermore, all EFAs exhibited excellent inhibition and eradication activities against VRE-fm biofilms. The biofilm inhibition rates of EFAs ranged from 45.3% to 58.0%, and eradication rates ranged from 54.1% to 63.4%, against 6 VRE-fm isolates with moderate biofilm formation ability. GLA exhibited remarkable antibiofilm activity against VRE-fm isolates. The qRT-PCR analysis showed that GLA could significantly down-regulate the expression of the gene ( < 0.01) of VRE-fm.

CONCLUSION

DHA showed the strongest antibacterial activity, while GLA showed the strongest antibiofilm effect among the EFAs with antibacterial activity. Our novel findings indicate that the antibiofilm activity of GLA may be through down-regulating the gene expression in VRE-fm. Therefore, DHA and GLA had the potential to be developed as therapeutic agents to treat infections related to multiple antimicrobial-resistant .

摘要

简介

耐万古霉素肠球菌(VRE-fm)是医院获得性感染的主要原因,已成为严重的公共卫生问题。越来越多的万古霉素耐药肠球菌(VRE-fm)的出现,迫切需要寻找新的抗菌药物作为传统抗生素的补充。本研究旨在评估必需脂肪酸(EFAs)对 VRE-fm 的抗菌和抗生物膜活性,并进一步探索 EFAs 抗生物膜活性的分子机制。

方法

采用微量肉汤稀释法检测传统抗生素和 EFAs(包括α-亚麻酸(ALA)、二十碳五烯酸(EPA)、二十二碳六烯酸(DHA)、亚油酸(LOA)、γ-亚麻酸(GLA)和花生四烯酸(AA))对 VRE-fm 的抗菌活性。通过扫描电子显微镜观察 EFAs 对 VRE-fm 细胞形态的影响。采用结晶紫法评估 EFAs 对 VRE-fm 生物膜的抑制活性。此外,采用定量逆转录 PCR(qRT-PCR)检测 GLA 作用下 VRE-fm 分离株生物膜相关基因(、、、和)的表达。

结果

VRE-fm 分离株对大多数传统抗生素高度耐药,仅对奎奴普丁-达福普汀(90.0%)、替加环素(100%)和利奈唑胺(100%)高度敏感。EPA、DHA 和 GLA 表现出优异的抗菌活性。EPA、DHA 和 GLA 的 MIC 分别为 0.5/1、0.25/0.5 和 0.5/1mM。扫描电镜成像显示,菌株 V27 吸附了大量的 DHA 分子。此外,所有 EFAs 对 VRE-fm 生物膜均表现出优异的抑制和清除活性。EFAs 的生物膜抑制率为 45.3%58.0%,清除率为 54.1%63.4%,对 6 株具有中等生物膜形成能力的 VRE-fm 分离株。GLA 对 VRE-fm 分离株表现出显著的抗生物膜活性。qRT-PCR 分析表明,GLA 可显著下调 VRE-fm 的 基因表达(<0.01)。

结论

DHA 表现出最强的抗菌活性,而 GLA 表现出最强的抗生物膜活性。我们的新发现表明,GLA 的抗生物膜活性可能是通过下调 VRE-fm 中的 基因表达实现的。因此,DHA 和 GLA 有可能被开发为治疗与多种抗菌药物耐药相关感染的治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e004/10570806/2c0e984c324d/fcimb-13-1266674-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验