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 >Synthesis and characterization of new types of 2-(6-methoxy-2-naphthyl)propionamide derivatives as potential antibacterial and antifungal agents
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Synthesis and characterization of new types of 2-(6-methoxy-2-naphthyl)propionamide derivatives as potential antibacterial and antifungal agents

机译:新型的2-(6-甲氧基-2-萘基)丙酰胺衍生物作为潜在的抗菌剂和抗真菌剂的合成与表征

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摘要

A series of novel 2-(6-methoxy-2-naphthyl)pro-pionamide derivatives have been efficiently synthesized in excellent yields via the reaction of naproxenoyl chloride with different amino compounds. Most of the synthesized compounds were screened in vitro for their antibacterial and antifungal activities. Most of the compounds showed significant antibacterial and antifungal activities, reaching, in certain cases, the same level of antimicrobial activity as the standard antibacterial agent Ampicilline and antifungal agent Fluca-nazole. Af-(4-(A^-arylsulfamoyl)phenyl)-2-(6-methoxynaphth-alen-2-yl)propanamide (4a-c), 4-(4-fluorobenzylidene)-2-(l-(6-methoxynaphthalen-2-yl)ethyl)oxazol-5(4/]f)-one (10b), 2-(6-methoxynaphthalen-2-yl)-N-((5-thioxo-4,5-dihydro-1H-1,2,4-triazol-3-yl)methyl)propanamide (12), and JV-((4-amino-5 -thioxo-4,5-dihydro-1H-1,2,4-triazol-3-yl)methyl)-2-(6-methoxynaphthalen-2-yl)propanamide (13) were found to be the most potent compounds against most of the tested strains. The antimicrobial activity was further supported by using MIC technique. Structure activity relationship studies revealed several matching pairs.
机译:通过萘普生酰氯与不同氨基化合物的反应,已经以优异的产率有效地合成了一系列新颖的2-(6-甲氧基-2-萘基)丙酰胺衍生物。体外筛选了大多数合成化合物的抗菌和抗真菌活性。大多数化合物显示出显着的抗菌和抗真菌活性,在某些情况下,其抗菌活性达到与标准抗菌剂氨苄青霉素和抗真菌剂Fluca-nazole相同的水平。 Af-(4-(A ^-芳基氨磺酰基)苯基)-2-(6-甲氧基萘-亚伦-2-基)丙酰胺(4a-c),4-(4-氟亚苄基)-2-(1-(6-甲氧基萘-2-基)乙基)恶唑-5(4 /] f)-一(10b),2-(6-甲氧基萘-2-基)-N-((5-硫代-4,5-二氢-1H -1,2,4-三唑-3-基)甲基)丙酰胺(12)和JV-((4-氨基-5 -thioxo-4,5-dihydro-1H-1,2,4-triazol-3发现对大多数被测菌株而言,-(基)甲基)-2-(6-甲氧基萘-2-基)丙酰胺(13)是最有效的化合物。使用MIC技术进一步支持了抗菌活性。结构活动关系研究揭示了几个匹配对。

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