评估肼基腙衍生物对食源性病原体的抗菌功效

Zébré Arthur Constant, T. Bertin, C. Bakary, Coulibali Sioménan, N’dri N’Guessan Alexandre, Konaté Ibrahim, Koffi-Nevry Rose, Connil Nathalie
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摘要

细菌是一个真正的公共卫生问题,因为它们与许多疾病有关。它们对抗生素的耐药性已成为全球抗击传染病的最重要问题之一。这项工作的目的是评估酰肼-腙衍生物对从食品中分离出来的病原菌株的抗菌活性,采用的方法是杯中的琼脂扩散法和液体培养基中的宏观稀释法。在这项工作中,对达洛亚市四条安全通道上的食品摊贩进行了调查。对 127 名商贩进行了结构化问卷调查,并从四个走廊共收集了 60 份食品样本并进行了分析。结果表明,在这些安全走廊销售食品的大多数是妇女(88.12%)。 商贩大多是 15 至 35 岁的成年人(59.84%),没有受过正规教育(50.39%)。对这两种食品进行的微生物分析表明,其中的肠杆菌含量超过了建议的阈值。在抗菌效果方面,有四种物质(AEV5、AB2、AB3 和 AB5)显示出抗菌活性。所有这些物质的 MBC/MIC 比率都小于 4,表明这些合成物质都具有杀菌活性。因此,由 S-烷基化和曼尼希碱衍生的物质可用于抗击细菌感染。
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Evaluation of Antimicrobial Efficacy of Hydrazide-Hydrazone Derivatives against Food Borne Pathogens
Bacteria are a real public health problem because of their involvement in many diseases. Their resistance to antibiotics has become one of the most important problems in the fight against infectious diseases worldwide. The objective of this work was to evaluate the antibacterial activity of hydrazide-hydrazone derivatives against pathogenic strains isolated from food using the agar diffusion method in cups and the macro-dilution method in liquid medium. In this work, a survey was conducted among food vendors on the four security corridors of the city of Daloa. A structured questionnaire was administered to 127 vendors and a total of 60 food samples were collected from the four corridors and analysed. The results indicate that the majority of food sales at these security corridors are carried out by women (88.12%).  The vendors were mostly adults (59.84%) aged between 15 and 35, with no formal education (50.39%). Microbiological analysis of the 2 types of food showed the presence of enterobacteria above the recommended thresholds. Concerning the antimicrobial effectiveness explored, four substances (AEV5, AB2, AB3 and AB5) revealed antibacterial activity. The MBC/MIC ratio of all these substances being less than 4 indicates that these synthesised substances all have bactericidal activity. As a result, substances derived from S-alkylation and Mannich bases can be used to combat bacterial infections.
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