Departamento de Química, Grupo de Síntese e Pesquisa de Compostos Bioativos (GSPCB), Universidade Federal de Viçosa, Viçosa, Minas Gerais, Brazil.
Laboratório de Quimiometria Teórica e Aplicada (LQTA), Universidade Estadual de Campinas - Unicamp, São Paulo, Campinas, Brazil.
Arch Pharm (Weinheim). 2023 Jun;356(6):e2200653. doi: 10.1002/ardp.202200653. Epub 2023 Mar 15.
Vanillin is the main component of natural vanilla extract and is responsible for its flavoring properties. Besides its well-known applications as an additive in food and cosmetics, it has also been reported that vanillin can inhibit fungi of clinical interest, such as Candida spp., Cryptococcus spp., Aspergillus spp., as well as dermatophytes. Thus, the present work approaches the synthesis of a series of vanillin derivatives with 1,2,3-triazole fragments and the evaluation of their antifungal activities against Candida albicans, Candida glabrata, Candida parapsilosis, Candida tropicalis, Cryptococcus neoformans, Cryptococcus gattii, Trichophyton rubrum, and Trichophyton interdigitale strains. Twenty-two vanillin derivatives were obtained, with yields in the range of 60%-91%, from copper(I)-catalyzed alkyne-azide cycloaddition (CuAAC) click reaction between two terminal alkynes prepared from vanillin and different benzyl azides. In general, the evaluated compounds showed moderate activity against the microorganisms tested, with minimum inhibitory concentration (MIC) values ranging from 32 to >512 µg mL . Except for compound 3b against the C. gattii R265 strain, all vanillin derivatives showed fungicidal activity for the yeasts tested. The predicted physicochemical and ADMET (absorption, distribution, metabolism, excretion, and toxicity) properties for the compounds indicated favorable profiles for drug development. In addition, a four-dimensional structure-activity relationship (4D-SAR) analysis was carried out and provided useful insights concerning the structures of the compounds and their biological profile. Finally, molecular docking calculations showed that all compounds bind favorably at the lanosterol 14α-demethylase enzyme active site with binding energies ranging from -9.1 to -12.2 kcal/mol.
香草醛是天然香草精的主要成分,负责其调味特性。除了作为食品和化妆品添加剂的知名应用外,据报道,香草醛还可以抑制临床相关真菌,如念珠菌属、隐球菌属、曲霉菌属以及皮肤真菌。因此,本工作涉及一系列带有 1,2,3-三唑片段的香草醛衍生物的合成,并评估它们对白色念珠菌、光滑念珠菌、近平滑念珠菌、热带念珠菌、新型隐球菌、格特隐球菌、红色毛癣菌和须癣毛癣菌菌株的抗真菌活性。通过铜(I)催化的炔烃-叠氮化物环加成(CuAAC)点击反应,从香草醛和不同苄基叠氮化物制备的两个末端炔烃中得到了 22 种香草醛衍生物,产率在 60%-91%之间。一般来说,所评价的化合物对所测试的微生物表现出中等活性,最小抑菌浓度(MIC)值范围为 32->512μg/mL。除了化合物 3b 对 C. gattii R265 菌株的活性外,所有香草醛衍生物对测试的酵母均表现出杀菌活性。化合物的预测物理化学和 ADMET(吸收、分布、代谢、排泄和毒性)特性表明它们具有良好的药物开发前景。此外,进行了四维结构-活性关系(4D-SAR)分析,为化合物的结构和生物学特征提供了有用的见解。最后,分子对接计算表明,所有化合物都能在羊毛甾醇 14α-去甲基酶活性部位上良好结合,结合能范围为-9.1 至-12.2kcal/mol。