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针对糖尿病肥胖的治疗:苯磺酰胺衍生物作为新型 PTP-1B 抑制剂的合理设计、合成与生物评价。

Toward a treatment of diabesity: Rational design, synthesis and biological evaluation of benzene-sulfonamide derivatives as a new class of PTP-1B inhibitors.

机构信息

Pharmaceutical Organic Chemistry Department, Faculty of Pharmacy, Suez Canal University, Ismailia 41522, Egypt; Chemistry Department, College of Sciences, Prince Sattam bin Abdul-Aziz University, Saudi Arabia.

Pharmacology and Toxicology Department, Faculty of Pharmacy, Suez Canal University, Ismailia 41522, Egypt.

出版信息

Bioorg Chem. 2019 May;86:322-338. doi: 10.1016/j.bioorg.2019.01.052. Epub 2019 Jan 31.

Abstract

Targeting of protein tyrosine phosphatase-1B (PTP1B) has emerged as a promising strategy for therapeutic intervention of diabetes and obesity. Investigation of new inhibitors with good bioavailability and high selectivity is the major challenge of drug discovery program targeting PTP1B. Therefore, herein, new neutral benzene-sulfonamide containing compounds were designed, synthesized and biologically evaluated as potent PTP1B inhibitors. New series of thiazolidine, oxazolidine, thiazinan, oxazinan, oxazole, thiazole, tetrazole, cyanopyridine, chromenone, and iminochromene of benzene-sulfonamide derivatives (MSE-1 to MSE-15) were synthesized in a good yield under mild condition using sulfadiazine as a starting material. Among the synthesized compounds, MSE-13 and MSE-14 showed the most in vitro potent PTP-1B inhibitory activity (IC of 0.88 µM and 3.33 µM, respectively). Animal treatment by the target compounds significantly improved the insulin resistance, diminished plasma glucose level, decreased initial body weight, and normalized the serum lipid profile compared to pioglitazone, a standard PTP1B inhibitor. The molecular modeling study showed a high affinity and selectivity of our synthesized compounds to the active site and B-site of PTP1B holding hydrogen bonding, hydrophobic, and electrostatic interactions. Furthermore, Electrostatic Surface Potential (ESP) and HOMO/LUMO analysis indicated the importance of sulfamoyl moiety for PTP1B binding. In silico ADME predictions of such compounds also showed the promising pharmacokinetic and physicochemical properties. The proposed compounds could be considered a lead inhibitory scaffold to PTP1B.

摘要

靶向蛋白酪氨酸磷酸酶 1B(PTP1B)已成为治疗糖尿病和肥胖症的一种有前途的策略。研究具有良好生物利用度和高选择性的新型抑制剂是针对 PTP1B 的药物发现计划的主要挑战。因此,本文设计、合成并对新的中性苯磺酰胺类化合物进行了生物学评价,作为有效的 PTP1B 抑制剂。以磺胺嘧啶为起始原料,在温和条件下,采用一锅法合成了一系列噻唑烷、恶唑烷、噻嗪烷、恶嗪烷、噁唑、噻唑、四唑、氰基吡啶、色酮和亚氨基色烯的苯磺酰胺衍生物(MSE-1 至 MSE-15),产率较高。在所合成的化合物中,MSE-13 和 MSE-14 表现出最强的体外 PTP-1B 抑制活性(IC 分别为 0.88µM 和 3.33µM)。与标准 PTP1B 抑制剂吡格列酮相比,这些目标化合物对动物的治疗显著改善了胰岛素抵抗,降低了血浆葡萄糖水平,减少了初始体重,并使血清脂质谱正常化。分子模拟研究表明,我们合成的化合物与 PTP1B 的活性位点和 B 位点具有高亲和力和选择性,能够形成氢键、疏水和静电相互作用。此外,静电表面电势(ESP)和 HOMO/LUMO 分析表明磺酰胺部分对 PTP1B 结合的重要性。此类化合物的计算 ADME 预测也显示出有前途的药代动力学和物理化学性质。这些提出的化合物可以被认为是针对 PTP1B 的有前景的抑制性支架。

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