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Synthesis, antifungal activity, and molecular modeling studies of new inverted oxime ethers of oxiconazole.

机译:新型奥昔康唑的反相肟醚的合成,抗真菌活性和分子模型研究。

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摘要

Some new oxime ethers of types 7 and 8, in which the methyleneaminoxy group, C=N-O, of oxiconazole 6 is in an inverted atomic sequence, were synthesized and tested for their antifungal activities. Among them, the type 7 compounds, such as the N-ethoxy-morpholino-substituted derivatives 7l-o (Table 1), showed good antifungal properties against the Candida strains tested, with minimum inhibitory concentration (MIC) values similar to those of the reference drug 6. A remarkable result was obtained with these types of azoles, which had shown a cidal character against Candida albicans, while the reference drug oxiconazole was only fungistatic in the same tests. This fact may be seen from a comparison of the MIC values with those of the minimum fungicidal concentration (MFC) values for most of the type 7 compounds assayed that have shown differences between the MIC and the MFC, which are lower than three double diluitions. A simple molecular modeling of the P450 14-alpha-sterol demethylase from C. albicans (Candida P450DM) was built in order to understand how the structural differences between type 7 compounds and oxiconazole 6 can induce different antifungal profiles. The results of this work seem to confirm that it is possible to reverse the atomic sequence of the methyleneaminoxy group, C=N-O, of 6, obtaining new imidazoles possessing good antifungal properties.
机译:合成了一些新的类型7和8的肟醚,其中氧康唑6的亚甲基氨基氧基C = N-O处于反向原子顺序,并测试了它们的抗真菌活性。其中,第7类化合物(例如N-乙氧基-吗啉代取代的衍生物7l-o(表1))对所测试的假丝酵母菌株表现出良好的抗真菌特性,其最小抑菌浓度(MIC)值与该菌株的抑菌浓度相似。参比药物6.这些类型的唑类化合物对白念珠菌具有杀灭作用,而参比药物奥昔康唑仅在相同的测试中具有抑菌作用,因此获得了显着结果。通过比较MIC值与大多数测定的7型化合物的最小杀真菌浓度(MFC)值的比较,可以看出这一事实,这些化合物显示出MIC和MFC之间的差异,该差异低于三倍稀释倍数。建立了来自白色念珠菌的P45014-α-甾醇脱甲基酶的简单分子模型(Candida P450DM),以了解7型化合物和oxiconazole 6之间的结构差异如何诱导不同的抗真菌作用。这项工作的结果似乎证实,可以颠倒6的亚甲基氨基氧基基团C = N-O的原子序列,从而获得具有良好抗真菌性能的新咪唑。

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