Salazar-Aranda Ricardo, Granados-Guzmán Graciela, Pérez-Meseguer Jonathan, González Gloria M, de Torres Noemí Waksman
Departamento de Química Analítica, Facultad de Medicina, Universidad Autónoma de Nuevo León, Madero y Aguirre Pequeño, Col. Mitras Centro. Monterrey, N.L. C.P. 64460, Mexico.
Departamento de Microbiología, Facultad de Medicina, Universidad Autónoma de Nuevo León, Madero y Aguirre Pequeño, Col. Mitras Centro. Monterrey, N.L. C.P. 64460, Mexico.
Molecules. 2015 Sep 29;20(10):17903-12. doi: 10.3390/molecules201017903.
Opportunistic mycoses increase the morbidity and mortality of immuno-compromised patients. Five Candida species have been shown to be responsible for 97% of worldwide cases of invasive candidiasis. Resistance of C. glabrata and C. krusei to azoles has been reported, and new, improved antifungal agents are needed. The current study was designed to evaluatethe activity of various polyphenolic compounds against Candida species. Antifungal activity was evaluated following the M27-A3 protocol of the Clinical and Laboratory Standards Institute, and antioxidant activity was determined using the DPPH assay. Myricetin and baicalein inhibited the growth of all species tested. This effect was strongest against C. glabrata, for which the minimum inhibitory concentration (MIC) value was lower than that of fluconazole. The MIC values against C. glabrata for myricitrin, luteolin, quercetin, 3-hydroxyflavone, and fisetin were similar to that of fluconazole. The antioxidant activity of all compounds was confirmed, and polyphenolic compounds with antioxidant activity had the greatest activity against C. glabrata. The structure and position of their hydroxyl groups appear to influence their activity against C. glabrata.
机会性真菌病会增加免疫功能低下患者的发病率和死亡率。已证实五种念珠菌属导致了全球97%的侵袭性念珠菌病病例。光滑念珠菌和克柔念珠菌对唑类药物的耐药性已有报道,因此需要新型、更有效的抗真菌药物。本研究旨在评估各种多酚化合物对念珠菌属的活性。按照临床和实验室标准协会的M27 - A3方案评估抗真菌活性,并使用DPPH法测定抗氧化活性。杨梅素和黄芩苷抑制了所有受试菌种的生长。这种作用对光滑念珠菌最为显著,其最小抑菌浓度(MIC)值低于氟康唑。杨梅苷、木犀草素、槲皮素、3 - 羟基黄酮和漆黄素对光滑念珠菌的MIC值与氟康唑相似。所有化合物的抗氧化活性均得到证实,具有抗氧化活性的多酚化合物对光滑念珠菌的活性最强。其羟基的结构和位置似乎会影响它们对光滑念珠菌的活性。