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酚类化合物对抗菌及抗生素活性的增强作用:没食子酸、咖啡酸和连苯三酚。

Antimicrobial and enhancement of the antibiotic activity by phenolic compounds: Gallic acid, caffeic acid and pyrogallol.

作者信息

Lima Valéria N, Oliveira-Tintino Cícera D M, Santos Enaide S, Morais Luís P, Tintino Saulo R, Freitas Thiago S, Geraldo Yuri S, Pereira Raimundo L S, Cruz Rafael P, Menezes Irwin R A, Coutinho Henrique D M

机构信息

Laboratório de Microbiologia e Biologia Molecular, Universidade Regional do Cariri, Crato, CE, Brazil.

Laboratório de Farmacologia e Química Molecular, Universidade Regional do Cariri, Crato, CE, Brazil.

出版信息

Microb Pathog. 2016 Oct;99:56-61. doi: 10.1016/j.micpath.2016.08.004. Epub 2016 Aug 3.

Abstract

The indiscriminate use of antimicrobial drugs has increased the spectrum of exposure of these organisms. In our studies, these phenolic compounds were evaluated: gallic acid, caffeic acid and pyrogallol. The antibacterial, antifungal and modulatory of antibiotic activities of these compounds were assayed using microdilution method of Minimum Inhibitory Concentration (MIC) to bacteria and Minimum Fungicide Concentration (MFC) to fungi. The modulation was made by comparisons of the MIC and MFC of the compounds alone and combined with drugs against bacteria and fungi respectively, using a sub-inhibitory concentration of 128 μg/mL of substances (MIC/8). All substances not demonstrated clinically relevant antibacterial activity with a MIC above ≥1024 μg/mL. As a result, we observed that the caffeic acid presented a potentiating antibacterial effect over the 3 groups of bacteria studied. Pyrogallol showed a synergistic effect with two of the antibiotics tested, but only against Staphylococcus aureus. In general, caffeic acid was the substance that presented with the greatest number of antibiotics and with the greatest number of bacteria. In relation to the antifungal activity of all the compounds, the verified results were ≥1024 μg/mL, not demonstrating significant activity. Regarding potentiation of the effect of fluconazole, was observed synergistic effect only when assayed against Candida tropicalis, with all substances. Therefore, as can be seen, the compounds presented as substances that can be promising potentiating agents of antimicrobial drugs, even though they do not have direct antibacterial and antifungal action.

摘要

抗菌药物的滥用增加了这些微生物的接触范围。在我们的研究中,对以下酚类化合物进行了评估:没食子酸、咖啡酸和连苯三酚。使用微量稀释法测定这些化合物对细菌的最低抑菌浓度(MIC)和对真菌的最低杀菌浓度(MFC),以检测其抗菌、抗真菌及抗生素活性调节作用。调节作用通过比较化合物单独使用时以及分别与抗细菌和抗真菌药物联合使用时的MIC和MFC来实现,使用128μg/mL的亚抑制浓度物质(MIC/8)。所有物质的MIC均≥1024μg/mL,未表现出临床相关的抗菌活性。结果,我们观察到咖啡酸对所研究的3组细菌具有增强抗菌作用。连苯三酚与两种测试抗生素表现出协同作用,但仅针对金黄色葡萄球菌。总体而言,咖啡酸是与最多数量的抗生素和细菌相关的物质。关于所有化合物的抗真菌活性,验证结果≥1024μg/mL,未显示出显著活性。关于氟康唑效果的增强,仅在针对热带假丝酵母进行检测时,所有物质均观察到协同作用。因此,可以看出,这些化合物虽没有直接的抗菌和抗真菌作用,但可作为有前景的抗菌药物增强剂。

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