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Evaluation of cinnamaldehyde and cinnamic acid derivatives in microbial growth control

机译:微生物生长控制中肉桂醛和肉桂酸衍生物的评价

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The conspicuous absence of novel and effective strategies to control microbial growth, both in the food and healthcare industries and evidence of increasing microbial resistance to conventional biocides has led to a search for novel antimicrobials and growth prevention strategies. In this study, 15 phytochemicals and derivatives, structurally-related to cinnamic acid and cinnamaldehyde, were assessed for their effects on the growth of Escherichia colt, Staphylococcus aureus and Enterococcus hirae. Their effects were compared to seven commonly used biocides (hydrogen peroxide, sodium hypochlorite, chlorhexidine, cetyltrimethylammonium bromide, triclosan, o-phthalaldehyde and lactic acid). All phytochemicals and derivatives increased lag phase and culture doubling time of the tested bacteria. Cinnamic acid and other derivatives inhibited bacterial growth. The MIC of cinnamaldehyde was comparable to o-phthalaldehyde and sodium hypochlorite and lower than hydrogen peroxide and lactic acid. The effect of methyl trans-cinnamate on bacterial growth was more evident against Gram-negative bacteria. It also inhibited quorum sensing in Chromobacterium violaceum. The effect of phytochemicals against sessile bacteria was low: 1 log CFU.cm(-2). Inhibition of quorum sensing and of bacterial growth supports the fact that phytochemicals are an interesting source of antimicrobials with potential use as biocides or more likely as additives to improve the efficacy of current biocidal formulations and preservative systems.
机译:在食品和医疗保健行业中,在食品和医疗保健行业中控制微生物生长的显着缺乏有效的策略以及对传统杀生物剂的微生物抗性的证据导致了新的抗微生物和预防策略。在本研究中,对肉桂酸和肉桂醛的15种植物化学和衍生物进行了对大肠杆菌,金黄色葡萄球菌和肠球菌的生长的影响。将它们的效果与七种常用的杀生物剂(过氧化氢,次氯酸钠,氯己定,十六烷基二甲基溴化铵,三氯烷,O-酞甲醛和乳酸)进行比较。所有植物化学和衍生物都增加了测试细菌的滞后阶段和文化倍增时间。肉桂酸等衍生物抑制细菌生长。肉桂醛的MIC与O-酞甲醛和次氯酸钠和低于过氧化氢和乳酸。甲基反式肉桂酸酯对细菌生长的影响对革兰氏阴性细菌更明显。它还抑制了紫杉杆菌的仲裁感测。植物化学对术治疗细菌的影响低:& 1 log cfu.cm(-2)。抑制群体感测和细菌生长支持的是,植物化学物质是植物化学物质是一种有趣的抗微生物来源,潜在用作杀生物剂或更有可能作为添加剂,以改善目前的杀生物制剂和防腐剂体系的疗效。

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