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脂肽类药物对耐药性弧菌类的体外抗微生物敏感性模式。

In-vitro antimicrobial susceptibility pattern of lipopeptide against drug resistant Vibrio species.

机构信息

Department of Botany and Microbiology, College of Sciences, King Saud University, P.O. Box 22452, Riyadh 11495, Saudi Arabia.

Genetics & Bioengineering, Faculty of Engineering and Natural Sciences, International University of Sarajevo, Bosnia and Herzegovina.

出版信息

J Infect Public Health. 2021 Dec;14(12):1887-1892. doi: 10.1016/j.jiph.2021.10.015. Epub 2021 Oct 14.

Abstract

BACKGROUND

The unrestricted application of antibiotics increased antimicrobial resistance in bacteria through horizontal gene transfer of resistant genes from the pathogenic sources and the evolution of multi-drug resistance organisms. The application of antibiotics caused severe risk to human health because animals may transmit diseases to humans. Hence, the search of novel antimicrobial agents from microbial sources is an urgent need.

METHODS

A lipopeptide producing stain SU05 was isolated from the pond water by serial dilution method. The lipopeptide yield was improved after optimization method and the yield was analyzed using High Performance Liquid chromatography. The influence of wheat bran (0.5%-2.5%) and rice bran (0.5%-2.5%), pH (5.5-8.5), temperature (25-40 °C) were screened to improve the production of lipopeptides by stain SU05 in submerged fermentation. Antibacterial activity of crude lipopeptide was tested against Vibrio anguillarum, Vibrio harveyi, Vibrio vulnificus, Vibrio salmonicida, Vibrio septicus, Vibrio fischeri, and Vibrio splendidus. The influence of lipopeptide on enzymes and antimicrobial property was analyzed.

RESULTS

Lipopeptide production was improved after nutrient supplements and optimization of physical factors. Lipopeptide showed potent activity against multi-drug resistant bacterial strains such as, V. anguillarum, V. harveyi, V. vulnificus, V. salmonicida, V. septicus, V. fischeri, and V. splendidus. Lipopeptide shows stability on various enzymes and this clearly revealed that the purified lipopeptide was highly stable in the presence of proteolytic enzymes. The findings suggest that lipopeptide SU05 characterized from the bacteria can survive at acidic environment in the intestine, and could be used to formulate fish feed.

CONCLUSIONS

The finding showed that the characterized lipopepties synthesized by B. amyloliquefaciens SU05 had a broad spectrum antibiotic potential against multidrug resistant Vibriosis causing bacterial pathogens. They were highly stable at broad temperature and pH ranges. These results demonstrated stability of lipopeptide at extreme conditions. The stability and activity of lipopeptide at extreme climatic condition is also useful for the application in pharmaceutical and food processing industries.

摘要

背景

抗生素的无限制应用通过耐药基因从病原来源的水平基因转移和多药耐药生物的进化,增加了细菌的抗微生物耐药性。抗生素的应用给人类健康带来了严重的风险,因为动物可能将疾病传染给人类。因此,迫切需要从微生物来源寻找新的抗菌剂。

方法

通过连续稀释法从池塘水中分离出产生脂肽的菌株 SU05。通过优化方法提高脂肽产量,并使用高效液相色谱法分析产量。筛选了麸皮(0.5%-2.5%)和米糠(0.5%-2.5%)、pH(5.5-8.5)、温度(25-40°C)对 SU05 菌株在液体发酵中提高脂肽产量的影响。测试了粗脂肽对鳗弧菌、哈维弧菌、创伤弧菌、鲑鱼弧菌、海鱼弧菌、发光弧菌和灿烂弧菌的抗菌活性。分析了脂肽对酶和抗菌性能的影响。

结果

营养补充和物理因素的优化提高了脂肽的产量。脂肽对多药耐药菌株如鳗弧菌、哈维弧菌、创伤弧菌、鲑鱼弧菌、海鱼弧菌、发光弧菌和灿烂弧菌具有很强的活性。脂肽对各种酶具有稳定性,这清楚地表明,在存在蛋白水解酶的情况下,纯化的脂肽非常稳定。研究结果表明,从细菌中分离出的脂肽 SU05 能够在肠道的酸性环境中存活,并可用于配制鱼饲料。

结论

研究结果表明,由 B. amyloliquefaciens SU05 合成的特征脂肽对引起多药耐药弧菌病的多种耐药性病原菌具有广谱抗生素潜力。它们在广泛的温度和 pH 范围内具有高度稳定性。这些结果表明脂肽在极端条件下的稳定性。脂肽在极端气候条件下的稳定性和活性也可用于制药和食品加工行业。

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