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Design, synthesis and antifungal activity of threoninamide carbamate derivatives via pharmacophore model

机译:苏氨酰胺氨基甲酸酯衍生物通过药物模型的设计,合成和抗真菌活性

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Thirty-six novel threoninamide carbamate derivatives were designed and synthesised using active fragment-based pharmacophore model. Antifungal activities of these compounds were tested against Oomycete fungi Phytophthora capsici in?vitro and in?vivo. Interestingly, compound I-1, I-2, I-3, I-6 and I-7 exhibited moderate control effect (50%) against Pseudoperonospora cubensis in greenhouse at 6.25?μg/mL, which is better than that of control. Meanwhile most of these compounds exhibited significant inhibitory against P. capsici. The other nine fungi were also tested. More importantly, some compounds exhibited remarkably high activities against Sclerotinia sclerotiorum, P. piricola and R. solan in?vitro with ECsub50/sub values of 3.74–9.76?μg/mL. It is possible that the model is reliabile and this method can be used to discover lead compounds for the development of fungicides.
机译:设计并合成了三十六个新的苏氨酰胺氨基甲酸酯衍生物,使用基于活性片段的药物模型来设计和合成。这些化合物的抗真菌活性在oomycete真菌植物植物中进行测试,在体外和体内。有趣的是,化合物I-1,I-2,I-3,I-6和I-7在6.25μg/ ml的温室中针对假软管孢菌菌的适度对照效果(> 50%)表现出适度的对照效果(> 50%),这比对照更好。与此同时,大多数化合物表现出对P. Capsici的显着抑制性。还测试了其他九九的真菌。更重要的是,一些化合物对Sclerotinia Sclerotiorum,P.Piricola和R.Solan的含量显着高,EC 50 值为3.74-9.76Ω×μg/ ml。该模型可能是可靠的,并且该方法可用于发现用于发育杀菌剂的铅化合物。

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