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首页> 外文期刊>Journal of the Korean Chemical Society >Microwave Assisted Synthesis of New N1-Substituted 5-Cyano-pyrimidine Derivatives as Potent Antimicrobial Agents
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Microwave Assisted Synthesis of New N1-Substituted 5-Cyano-pyrimidine Derivatives as Potent Antimicrobial Agents

机译:微波辅助合成新的N1-取代的5-氰基嘧啶衍生物作为有效的抗菌剂

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The purpose of the study was to synthesize new series of 5-cyano substituted pyrrolidine analogues with different substitutions at N1 and 6 positions and to evaluate them for antibacterial and antifungal activities. The desired compounds were synthesized by tertiary condensation of ethylcyanoacetate, substituted thioureas and suitable aldehyde in presence of potassium carbonate using MORE technique. The antibacterial and antifungal activities were evaluated by cup plate method in the concentration of 25 μg. The zone of inhibition was measured in mm. All the compounds have shown significant antibacterial and antifungal activities. The maximum activity was shown by P1 and P5 against S.aureus and E.coli respectively, while P6 has shown significant activity against all types of microorganisms. The compound P8 has been found to be significantly effective against C. albicans. Norfloxacin and griseofulvin were used as standards to compare the activites of synthesized compounds. It is concluded that analogues containing p-hydroxy, p-methoxy substituted phenyl moiety at 6 position have been found to be more potent against gram-positive microorganisms, while ana- logues lacking these substituents on phenyl moiety possessed gram-negative activity. The compounds having p-dimethylamino substituent on phenyl moiety at 6 positions have shown moderate activity. Further, only fluorine containing analogue at Nl position was found to possess appreciable antifungal activity. This suggests that electron donating substituent on aryl moiety as well as electron withdrawing substituent at Nl plays important role in determining potency of the compounds.
机译:该研究的目的是合成在N1和6位具有不同取代基的一系列新的5-氰基取代的吡咯烷类似物,并评估其抗菌和抗真菌活性。使用MORE技术,在碳酸钾存在下,通过氰基乙酸乙酯,取代的硫脲和合适的醛的三级缩合反应合成所需的化合物。通过杯板法在25μg的浓度下评价抗菌和抗真菌活性。抑制区域以mm为单位。所有化合物均显示出显着的抗菌和抗真菌活性。 P1和P5分别显示出对金黄色葡萄球菌和大肠杆菌的最大活性,而P6显示出对所有类型微生物的显着活性。已经发现化合物P8对白色念珠菌有效。诺氟沙星和灰黄霉素被用作标准品来比较合成化合物的活性。结论是,发现在6位上含有对羟基,对甲氧基取代的苯基部分的类似物对革兰氏阳性微生物更有效,而在苯基部分上缺少这些取代基的类似物具有革兰氏阴性活性。在苯基的6位上具有对二甲氨基取代基的化合物显示出中等的活性。此外,发现仅在N1位置的含氟类似物具有明显的抗真菌活性。这表明芳基部分上的给电子取代基以及在N1上的吸电子取代基在确定化合物的效力中起重要作用。

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