Mastrolorenzo A, Scozzafava A, Supuran C T
Università degli Studi, Dipartimento di Scienze Dermatologiche, Centro MTS, Firenze, Italia.
J Enzyme Inhib. 2000;15(6):557-69. doi: 10.3109/14756360009040710.
Aryl/alkyl-sulfonyl-, aryl/alkylcarboxyl- and aryl(sulfonyl)carbamyl/thiocarbamyl-derivatives of dibenzo-1,4-dioxine-2-acetyloxime were prepared by reaction of the title compound with sulfonyl halides, sulfonic acid anhydrides, acyl chlorides/carboxylic acids, arylsulfonyl isocyanates, aryl/acyl isocyanates or isothiocyanates. Several of the newly synthesized compounds showed effective in vitro antifungal activity against Aspergillus and Candida spp., some of them showing activities comparable to ketoconazole (with minimum inhibitory concentrations in the range of 1.2-4 microg/mL) against the two Aspergillus strains, but possessing a lower activity as compared to ketoconazole against C. albicans. Of the three investigated strains, best activity was detected against A. flavus. The mechanism of action of these compounds probably involves inhibition of ergosterol biosynthesis by interaction with lanosterol-14-alpha-demethylase (CYP51A1), since reduced amounts of ergosterol were found by means of HPLC, in cultures of the sensitive strain A. flavus treated with some of these inhibitors. Thus, the compounds reported here might possess a similar mechanism of action at molecular level with that of the widely used azole antifungals.
通过标题化合物与磺酰卤、磺酸酐、酰氯/羧酸、芳基磺酰异氰酸酯、芳基/酰基异氰酸酯或异硫氰酸酯反应,制备了二苯并 - 1,4 - 二恶英 - 2 - 乙酰肟的芳基/烷基磺酰基、芳基/烷基羧基和芳基(磺酰基)氨基甲酰基/硫代氨基甲酰基衍生物。几种新合成的化合物在体外对曲霉属和念珠菌属显示出有效的抗真菌活性,其中一些对两种曲霉属菌株的活性与酮康唑相当(最低抑菌浓度在1.2 - 4μg/mL范围内),但对白色念珠菌的活性低于酮康唑。在所研究的三种菌株中,对黄曲霉的活性最强。这些化合物的作用机制可能涉及通过与羊毛甾醇 - 14 - α - 脱甲基酶(CYP51A1)相互作用抑制麦角甾醇生物合成,因为在用其中一些抑制剂处理的敏感菌株黄曲霉培养物中,通过高效液相色谱法发现麦角甾醇的量减少。因此,本文报道的化合物在分子水平上可能具有与广泛使用的唑类抗真菌剂类似的作用机制。