Graduate School of Science, Osaka City University, Osaka, Japan.
Research Center for Urban Health and Sports, Osaka City University, Osaka, Japan.
Lett Appl Microbiol. 2022 Mar;74(3):377-384. doi: 10.1111/lam.13613. Epub 2021 Dec 13.
trans-Anethole (anethole) is a phenylpropanoid; with other drugs, it exhibits synergistic activity against several fungi and is expected to be used in new therapies that cause fewer patient side effects. However, the detailed substructure(s) of the molecule responsible for this synergy has not been fully elucidated. We investigated the structure-activity relationships of phenylpropanoids and related derivatives, with particular attention on the methoxy group and the double bond of the propenyl group in anethole, as well as the length of the p-alkyl chain in p-alkylanisoles. Antifungal potency was largely related to p-alkyl chain length and the methoxy group of anethole, but not to the double bond of its propenyl group. Production of reactive oxygen species also played a role in these fungicidal activities. Inhibition of drug efflux was associated with the length of the p-alkyl chain and the double bond of the propenyl group in anethole, but not with the methoxy group. Although a desirable synergy was observed between n-dodecanol and anethole or p-alkylanisoles with a length of C2-C6 in alkyl chains, it cannot be explained away as being solely due to the inhibition of drug efflux. Similar results were obtained when phenylpropanoid derivatives were combined with fluconazole against Candida albicans.
反式茴香脑(anethole)是苯丙素类化合物;与其他药物联合使用时,对几种真菌表现出协同作用,有望用于新的治疗方法,减少患者的副作用。然而,负责这种协同作用的分子的详细亚结构尚未完全阐明。我们研究了苯丙素类化合物和相关衍生物的构效关系,特别关注茴香脑的甲氧基和丙烯基双键,以及对甲氧基苯异丁酸酯中 p-烷基链的长度。抗真菌活力主要与 p-烷基链长度和茴香脑的甲氧基有关,而与丙烯基双键无关。活性氧的产生也在这些杀真菌活性中发挥作用。药物外排的抑制与茴香脑的 p-烷基链长度和丙烯基双键有关,而与甲氧基无关。尽管在 n-十二醇和茴香脑或 p-烷基异丁酸酯(烷基链长 C2-C6)之间观察到了理想的协同作用,但不能仅仅归因于药物外排的抑制。当苯丙素衍生物与氟康唑联合用于白色念珠菌时,也得到了类似的结果。