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首页> 外文期刊>Scientia pharmaceutica >Synthesis, Antimicrobial Study, and Molecular Docking Simulation of 3,4-Dimethoxy-β-Nitrostyrene Derivatives as Candidate PTP1B Inhibitor
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Synthesis, Antimicrobial Study, and Molecular Docking Simulation of 3,4-Dimethoxy-β-Nitrostyrene Derivatives as Candidate PTP1B Inhibitor

机译:3,4-二甲氧基-β-硝基氧化丁烯衍生物作为候选PTP1B抑制剂的合成,抗微生物研究和分子对接模拟

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摘要

A derivative series of 3,4-dimethoxy-β-nitrostyrene was synthesized through nitroaldol reaction, including a new compound of 3,4-ethylenedioxy-β-bromo-β-nitrostyrene. The antimicrobial activity effect of 3,4-alkyloxy modification of β-nitrostyrene was investigated. A molecular docking study was also performed to obtain information about their interactions with protein tyrosine phosphatase 1B (PTP1B). The active residues of cysteine-215 and arginine-221 of PTP1B play a key role in signaling pathways that regulate various microorganism cell functions. It also acts as a negative regulator in signaling pathways of insulin that are involved in type 2 diabetes and other metabolic diseases. These derivatives exhibited potential antifungal activity. The studied compounds were also had potential as fragments to be PTP1B inhibitors by interacting with serine-216 and arginine-221 residues, according to their molecular docking. 3,4-Ethylenedioxy-β-methyl-β-nitrostyrene was the most successful potential candidate as a PTP1B inhibitor. However, further research is needed to investigate their potential for medicinal use.
机译:通过Nirroaldol反应合成了3,4-二甲氧基-β-硝基苯乙烯的衍生物系列,包括新的3,4-亚乙基二烷基-β-溴-β-硝基的化合物。研究了3,4-烷氧基改性的β-硝基氧羰的抗微生物活性效应。还进行分子对接研究以获得有关其与蛋白质酪氨酸磷酸酶1B(PTP1B)相互作用的信息。 PTP1B的半胱氨酸-215和精氨酸-221的活性残基在调节各种微生物细胞功能的信号通路中起关键作用。它还充当胰岛素的信号通路中的负调节剂,其参与2型糖尿病和其他代谢疾病。这些衍生物表现出潜在的抗真菌活性。根据其分子对接,所研究的化合物也具有作为PTP1B抑制剂的碎片作为PTP1B抑制剂。 3,4-亚乙基二氧基-β-甲基-β-硝基是最成功的潜在候选者作为PTP1B抑制剂。然而,需要进一步研究来研究其药用用途的潜力。

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