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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Design and synthesis of novel 4-hydrazone functionalized/1,2,4-triazole fused pyrido[2,3-d]pyrimidine derivatives, their evaluation for antifungal activity and docking studies
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Design and synthesis of novel 4-hydrazone functionalized/1,2,4-triazole fused pyrido[2,3-d]pyrimidine derivatives, their evaluation for antifungal activity and docking studies

机译:新型4-腙官能化/ 1,2,4-三唑融合吡啶[2,3-D]嘧啶衍生物的设计和合成,对抗真菌活性和对接研究的评价

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A series of novel 2-substituted 4-hydrazone functionalized pyrido[2,3-d]pyrimidine (8a-f and 9a-e) and 1,2,4-triazole fused pyrido[2,3-d]pyrimidine derivatives (10a-f and 11a-e) were prepared starting from ethyl 2-amino-6-(trifluoromethyl)nicotinate 3 via acylation, cyclization, chlorination, hydrazine reaction, hydrazone formation followed by intramolecular cyclization. All the final products were screened against various Candida strains for determining the antifungal activity, minimum fungicidal concentration and inhibition of ergosterol biosynthesis. Among the screened, compounds 8c, 8f, 9c, 10f, 11d and 11e were identified as promising antifungal agents. From a mechanistic perspective, the concomitant treatment of 10f, 11d and 11e on different Candida strains showed inhibition of ergosterol biosynthesis, which also revealed the possible antifungal action of these compounds on the ergosterol biosynthetic pathway. The binding mode of active compounds by docking studies showed that they fit well into the active site cavity of target protein. Further, the SAR and molecular docking studies data presumed that the presence of fluoro, trifluoromethyl, bromo and nitro groups on phenyl and furyl rings in pyrido[2,3-d]pyrimidine were found to be crucial to promote antifungal activity. All the strains for Miconazole a control drug showed MIC values equal to 3.9 mu g/mL. Lipinski's parameters of all compounds are within the acceptable range defined for human use thereby indicating their potential as drug-like molecules.
机译:一系列新的2取代的4-腙官能化吡啶[2,3-D]嘧啶(8A-F和9A-E)和1,2,4-三唑熔合吡啶[2,3-D]嘧啶衍生物(10A -F和11A-E)由乙基2-氨基-6-(三氟甲基)烟酸盐3,通过酰化,环化,氯化,肼,腙,腙形成,然后分细胞环化。所有最终产品均针对各种念珠菌菌株进行筛查,用于确定抗真菌活性,最小杀菌剂浓度和埃尔格瑟索酚生物合成的抑制作用。在筛选的,化合物8C,8F,9C,10F,11D和11E中被鉴定为承诺的抗真菌剂。从机械角度来看,在不同的念珠菌菌株上的10F,11d和11e的伴随治疗表明Ergosterol生物合成的抑制,这也揭示了这些化合物对Ergosterol生物合成途径的可能抗真菌作用。通过对接研究的活性化合物的结合方式表明它们适合于靶蛋白的活性部位腔体。此外,SAR和分子对接研究数据假设氟代,三氟甲基,溴和硝基和硝基环中吡啶[2,3-D]嘧啶的苯基和硝基环的存在是至关重要的,以促进抗真菌活性至关重要。巯基唑的所有菌株都显示出等于3.9μg/ ml的MIC值。 Lipinski的所有化合物的参数都在为人类使用定义的可接受范围内,从而表明它们作为药物状分子的潜力。

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