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Synthesis and biological evaluation of fluoropyrazolesulfonylurea and thiourea derivatives as possible antidiabetic agents

机译:氟吡唑磺酰脲和硫脲衍生物作为抗糖尿病药的合成及生物学评价

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Fluorinated pyrazoles, benzenesulfonylurea and thiourea and their cyclic sulfonylthiourea derivatives were prepared as hypoglycemic agents. The chemistry involves the condensation of 4-hydrazino benzenesulfonamide hydrochloride with fluorochalcones to give pyrazoline derivatives which upon oxidation with bromine water afforded corresponding pyrazoles. Reaction of pyrazolines with isocyanates and isothiocyanates give the corresponding ureas and thioureas. Subsequent cyclization of these thiourea derivatives with ethyl bromoacetate and alpha-bromoacetophenone yielded the 4-oxothiazolidines and thiazolines, respectively. Preliminary biological screening of the prepared compounds revealed significant antidiabetic activity. Molecular and biological properties calculations revealed favorable drug-like profiles of six compounds. The structure-activity relationship (SAR) and in silico drug relevant properties calculations (HBD, HBA, tPSA, miLogP, molecular weight, % ABS, drug-likeness and drug score) endorse that these compounds are potential leads for future drug discovery study.
机译:制备了氟吡唑,苯磺酰脲和硫脲及其环状磺酰基硫脲衍生物作为降血糖剂。化学过程涉及4-肼基苯磺酰胺盐酸盐与氟代查尔酮的缩合,得到吡唑啉衍生物,其在用溴水氧化后得到相应的吡唑。吡唑啉与异氰酸酯和异硫氰酸酯反应,得到相应的脲和硫脲。随后用溴乙酸乙酯和α-溴乙酰苯将这些硫脲衍生物环化,分别得到4-氧噻唑烷和噻唑啉。所制备化合物的初步生物学筛选显示出显着的抗糖尿病活性。分子和生物学性质的计算揭示了六种化合物的有利的类药物特性。结构-活性关系(SAR)和计算机模拟药物的相关性能计算(HBD,HBA,tPSA,miLogP,分子量,%ABS,药物相似性和药物评分)证明这些化合物是未来药物发现研究的潜在线索。

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