首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis of some novel heterocyclic compounds derived from diflunisal hydrazide as potential anti-infective and anti-inflammatory agents.
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Synthesis of some novel heterocyclic compounds derived from diflunisal hydrazide as potential anti-infective and anti-inflammatory agents.

机译:衍生自二氟乙肼的某些新型杂环化合物的合成作为潜在的抗感染和抗炎药。

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Three novel series of 2',4'-difluoro-4-hydroxybiphenyl-3-carboxylic acid derivatives namely 4-substituted-1,2,4-triazoline-3-thiones (4a-g); 2-substituted-1,3,4-thiadiazoles (5a-g) and 2-substituted-1,3,4-oxadiazoles (6a-g) have been synthesized. Twenty-one of the newly synthesized compounds were tested against various bacteria, fungi, yeast species and virus. In addition, we have replaced the carboxylic acid group of diflunisal with heterocycles and the anti-inflammatory activity of heterocycles reported here. Compound (5d) showed activity against Escherichia coli A1 and Streptococcus pyogenes ATCC-176 at a concentration of 31.25 microg/mL, whereas cefepime, the drug used as standard, has been found less active against the bacteria mentioned above. Compound (4b) has exhibited activity against Aspergillus variecolor and Trichophyton rubrum at a concentration of 31.25 and 15.25 microg/mL, whereas Amphotericin B, the drug used as standard, has been found less active against the yeast and fungi. The highest antiviral activity was found in the 1,3,4-thiadiazole derivative (5a) having a methyl group at 2nd position against Sindbis virus at 9.6 microg/mL. Compound (4c) exhibited the highest anti-inflammatory activity (73.03%) whereas diflunisal, the drug used as standard, has been found less active (24.16%). Compound (5f) presented similar antinociceptive activity with the standard drug (paw withdrawal latency was 19.21 s compared to that of diflunisal which was 19.14s, in hot plate test).
机译:3个新颖的2',4'-二氟-4-羟基联苯-3-羧酸衍生物系列,即4-取代的1,2,4,3-三唑啉-3-硫酮(4a-g);已经合成了2-取代的1,3,4-噻二唑(5a-g)和2-取代的1,3,4-恶二唑(6a-g)。测试了二十一种新合成的化合物对各种细菌,真菌,酵母菌和病毒的抵抗力。此外,我们已经用杂环取代了二氟尼醛的羧酸基团,并报道了杂环的抗炎活性。化合物(5d)以31.25μg/ mL的浓度显示出对大肠杆菌A1和化脓性链球菌ATCC-176的活性,而已发现用作标准品的头孢吡肟对上述细菌的活性较低。化合物(4b)在浓度为31.25和15.25 microg / mL时对变色曲霉和红癣菌表现出活性,而已发现用作标准品的两性霉素B对酵母和真菌的活性较低。在对Sindbis病毒的第2位具有甲基的1,3,4-噻二唑衍生物(5a)中,以9.6 microg / mL的抗病毒活性最高。化合物(4c)表现出最高的抗炎活性(73.03%),而作为标准药物的二氟尼沙尔的活性较低(24.16%)。化合物(5f)具有与标准药物相似的抗伤害感受活性(在热板测试中,爪子退缩潜伏期为19.21 s,相比而言,双氟尼醛为19.14 s)。

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