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首页> 外文期刊>Medicinal chemistry >Anti-inflammatory, analgesic and anti-ulcerogenic activities of novel bis-thiadiazoles, bis-thiazoles and bis-formazanes
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Anti-inflammatory, analgesic and anti-ulcerogenic activities of novel bis-thiadiazoles, bis-thiazoles and bis-formazanes

机译:新的BIS-THIADIAZOLES,双噻唑和双甲苯胺的抗炎,镇痛和抗溃疡性活性

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Background: Indane-1,3-dione, thiazole, bis-thiazole and thiadiazoles rings are very interested moieties in anti-inflammatory and analgesic drugs. Objective: The goal of this work is to synthesize new derivatives of bis-thiazoles and bis-1,3,4-thiadiazoles for the investigation of their anti-inflammatory, anti-ulcerogenic and analgesic activities. Methods: 1,1′-(1,2-phenylene)bis(3-phenylthiourea) (1) reacts with a number of N-aryl arenecarbohydrazonoyl chlorides 2 to give a series of new bis-1,3,4-thiadiazoles 4. Also, reaction of bisthiosemicarbazone of 1,3-indanedione 6 with another type of hydrazonoyl halides namely, N-aryl-2-oxapropanehydrazonoyl chlorides 7 and ethyl-(N-arylhydrazono)chloroacetate 8 in dioxane under reflux in the presence of triethylamine give the respective bis-thiazole derivatives 9 and 10, respectively. The products 9 and 10 can exist in five and seven tautomeric forms for each one. Their actual tautomeric forms were deduced based on electronic absorption data (UV / Vis spectra). Moreover, a series of novel bis-formazans 12 and 13 have been synthesized by reaction of 1,3-dihydrazono-2,3-dihydro-1H-indene (11) with both hydrazonoyl chlorides 7 and 8. Results: The structure of all the novel products was deduced by elemental analysis and spectral data. In addition, the biological activity of the newly synthesized compounds was evaluated and the results obtained indicate their potency as anti-inflammatory, anti-ulcerogenic and analgesic agents. Conclusion: In this context, we synthesize new derivatives of bis-thiazoles and bis-1,3,4-thiadiazoles as anti-inflammatory, anti-ulcerogenic and analgesic agents.
机译:背景:Indane-1,3-二酮,噻唑,双噻唑和噻唑氏戒指是抗炎和镇痛药中的基部分非常感兴趣。目的:这项工作的目标是综合双噻唑和双-1,3,4-噻唑的新衍生物,用于调查其抗炎,抗溃疡和镇痛活动。方法:1,1' - (1,2-亚苯基)双(3-苯硫脲)(1)与多种N-芳基芳苯甲苯脱酰氯反应,得到一系列新的BIS-1,3,4-噻二唑4 。此外,在三乙胺的情况下,在三乙胺的回流下,将1,3-吲哚酰基卤化物与另一种氢化氢卤化物的反应与另一种氢氮酰卤化物,即,在二恶烷下,在二恶烷下的二恶烷中的氯酰乙酸乙酯8各自的双噻唑衍生物9和10分别。产物9和10可以以每一个为5和七种互变异构形式存在。它们的实际互变异构形式基于电子吸收数据(UV / Vis光谱)推断出来。此外,通过1,3-二羟基-2,3-二氢-1H-茚(11)与肼氯酰氯7和8.结果(11)反应合成了一系列新的BIS-FORMAZAN 12和13。结果:所有的结构通过元素分析和光谱数据推导出新的产品。此外,评价新合成化合物的生物活性,得到的结果表明它们作为抗炎,抗溃疡和镇痛剂的效力。结论:在这种情况下,我们将双噻唑和双-1,3,4-噻二唑的新衍生物合成为抗炎,抗溃疡和镇痛药。

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