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在生物膜启发的藻酸盐封装中,测定硝酸盐、精氨酸和亚铁对铜绿假单胞菌临床株抗生素抗性的影响。

Determining effects of nitrate, arginine, and ferrous on antibiotic recalcitrance of clinical strains of Pseudomonas aeruginosa in biofilm-inspired alginate encapsulates.

机构信息

Department of Microbiology, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

Research Center for Antibiotic Stewardship and Antimicrobial Resistance, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Ann Clin Microbiol Antimicrob. 2023 Jul 20;22(1):61. doi: 10.1186/s12941-023-00613-y.

Abstract

BACKGROUND

Biofilms play a role in recalcitrance and treatability of bacterial infections, but majority of known antibiotic resistance mechanisms are biofilm-independent. Biofilms of Pseudomonas aeruginosa, especially in cystic fibrosis patients infected with the alginate producing strains in their lungs, are hard to treat. Changes in growth-related bacterial metabolism in biofilm affect their antibiotic recalcitrance which could be considered for new therapies designed based on these changes. In this study, effects of nitrate, arginine, and ferrous were investigated on antibiotic recalcitrance in alginate-encapsulated P. aeruginosa strains isolated from cystic fibrosis patients in the presence of amikacin, tobramycin, and ciprofloxacin. Also, expression of an efflux pump gene, mexY, was analyzed in selected strains in the presence of amikacin and ferrous.

METHODS

Clinical P. aeruginosa strains were isolated from cystic fibrosis patients and minimum inhibitory concentration of amikacin, tobramycin, and ciprofloxacin was determined against all the strains. For each antibiotic, a susceptible and a resistant or an intermediate-resistant strain were selected, encapsulated into alginate beads, and subjected to minimal biofilm eradication concentration (MBEC) test. After determining MBECs, sub-MBEC concentrations (antibiotics at concentrations one level below the determined MBEC) for each antibiotic were selected and used to study the effects of nitrate, arginine, and ferrous on antibiotic recalcitrance of encapsulated strains. Effects of ferrous and amikacin on expression of the efflux pump gene, mexY, was studied on amikacin sensitive and intermediate-resistant strains. One-way ANOVA and t test were used as the statistical tests.

RESULTS

According to the results, the supplements had a dose-related effect on decreasing the number of viable cells; maximal effect was noted with ferrous, as ferrous supplementation significantly increased biofilm susceptibility to both ciprofloxacin and amikacin in all strains, and to tobramycin in a resistant strain. Also, treating an amikacin-intermediate strain with amikacin increased the expression of mexY gene, which has a role in P. aeruginosa antibiotic recalcitrance, while treating the same strain with ferrous and amikacin significantly decreased the expression of mexY gene, which was a promising result.

CONCLUSIONS

Our results support the possibility of using ferrous and arginine as an adjuvant to enhance the efficacy of conventional antimicrobial therapy of P. aeruginosa infections.

摘要

背景

生物膜在细菌感染的顽固性和可治疗性中起作用,但大多数已知的抗生素耐药机制都与生物膜无关。铜绿假单胞菌的生物膜,尤其是在肺部感染产生藻酸盐的菌株的囊性纤维化患者中,很难治疗。生物膜中与生长相关的细菌代谢变化会影响其对抗生素的顽固性,这可以为基于这些变化设计的新疗法提供考虑。在这项研究中,研究了硝酸盐、精氨酸和亚铁对从囊性纤维化患者中分离的藻酸盐包裹的铜绿假单胞菌菌株在阿米卡星、妥布霉素和环丙沙星存在下对抗生素顽固性的影响。此外,还分析了在阿米卡星和亚铁存在下选择的菌株中一种外排泵基因 mexY 的表达。

方法

从囊性纤维化患者中分离临床铜绿假单胞菌菌株,并测定所有菌株对阿米卡星、妥布霉素和环丙沙星的最小抑菌浓度。针对每种抗生素,选择一个敏感株和一个耐药株或中间耐药株,将其包裹在藻酸盐珠中,进行最小生物膜清除浓度 (MBEC) 测试。确定 MBEC 后,选择每种抗生素的亚 MBEC 浓度(抗生素浓度比确定的 MBEC 低一级),用于研究硝酸盐、精氨酸和亚铁对包裹菌株抗生素顽固性的影响。还研究了亚铁和阿米卡星对阿米卡星敏感株和中间耐药株外排泵基因 mexY 表达的影响。使用单因素方差分析和 t 检验作为统计检验。

结果

结果表明,补充剂对降低活菌数量有剂量相关的影响;亚铁的效果最显著,因为亚铁补充剂显著增加了所有菌株对环丙沙星和阿米卡星的生物膜敏感性,对耐药株的妥布霉素也有影响。此外,用阿米卡星治疗中间耐药株会增加 mexY 基因的表达,该基因与铜绿假单胞菌对抗生素的顽固性有关,而用亚铁和阿米卡星治疗同一菌株会显著降低 mexY 基因的表达,这是一个有希望的结果。

结论

我们的结果支持使用亚铁和精氨酸作为辅助剂来增强铜绿假单胞菌感染常规抗菌治疗效果的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc0/10360276/fc5ff4abe96a/12941_2023_613_Fig1_HTML.jpg

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