Boeck Paula, Leal Paulo C, Yunes Rosendo A, Filho Valdir Cechinel, López Silvia, Sortino Maximiliano, Escalante Andrea, Furlán Ricardo L E, Zacchino Susana
Departamento de Química, Universidade Federal de Santa Catarina, Florianópolis, Brasil.
Arch Pharm (Weinheim). 2005 Mar;338(2-3):87-95. doi: 10.1002/ardp.200400929.
Chalcones and chalcone-like compounds, most of them new ones, prepared by base-catalyzed condensation of appropriate aldehydes and xanthoxyline, were tested for antifungal properties against a panel of yeasts, hialohyphomycetes as well as dermatophytes with the agar dilution assay. Results indicate that neither the sole presence of a "xanthoxyline-like" substitution pattern nor a 2'-OH substituent on ring A are sufficient for these compounds to have antifungal properties. The chalcone 3-(2-chlorophenyl)-1-(2'-hydroxy-4',6'-dimethoxyphenyl)prop-2-en-1-one, with a Cl atom in the ortho position of benzene ring B showed the best antifungal activity against standardized strains of Trichophyton rubrum (MIC = 12.5 microg/mL) and inhibited all of the ten clinical isolates of T. rubrum tested (MIC at which 50 % [MIC(50)] and 90 % [MIC(90)] of the isolates were inhibited = 12.5 and 25 microg/mL). Regarding its mode of action, the Neurospora crassa assay showed a blotchy appearance in the inhibition halo produced by this chalcone, strongly suggesting that it could act by inhibiting the fungal cell wall. This chalcone seems to be an hyphal malformation inducer, since a clear curling of the hypha was observed in this hazy zone at a magnification of x 400. This work strongly contributes to the knowledge of the antifungal properties of hydroxy-chalcones.
通过适当醛类与花椒毒素的碱催化缩合反应制备的查耳酮及类查耳酮化合物(其中大多数为新化合物),采用琼脂稀释法针对一组酵母、丝状真菌以及皮肤癣菌进行了抗真菌特性测试。结果表明,对于这些化合物而言,仅存在“花椒毒素样”取代模式或A环上的2'-OH取代基并不足以使其具备抗真菌特性。在苯环B的邻位带有Cl原子的查耳酮3-(2-氯苯基)-1-(2'-羟基-4',6'-二甲氧基苯基)丙-2-烯-1-酮,对红色毛癣菌标准菌株显示出最佳抗真菌活性(MIC = 12.5μg/mL),并抑制了所测试的全部十株红色毛癣菌临床分离株(使50%[MIC(50)]和90%[MIC(90)]的分离株受到抑制的MIC分别为12.5和25μg/mL)。关于其作用方式,粗糙脉孢菌试验显示该查耳酮产生的抑菌圈呈斑点状外观,强烈表明其可能通过抑制真菌细胞壁发挥作用。由于在400倍放大倍数下在该模糊区域观察到菌丝明显卷曲,此查耳酮似乎是一种菌丝畸形诱导剂。这项工作极大地促进了对羟基查耳酮抗真菌特性的认识。