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新型磺酰胺衍生物作为多靶点抗糖尿病药物:设计、合成及生物学评价

Novel sulfonamide derivatives as multitarget antidiabetic agents: design, synthesis, and biological evaluation.

作者信息

Ayoup Mohammed Salah, Khaled Nourhan, Abdel-Hamid Hamida, Ghareeb Doaa A, Nasr Samah A, Omer Ahmed, Sonousi Amr, Kassab Asmaa E, Eltaweil Abdelazeem S

机构信息

Department of Chemistry, Faculty of Science, Alexandria University Alexandria Egypt

Department of Chemistry, College of Science, King Faisal University Al-Ahsa 31982 Saudi Arabia.

出版信息

RSC Adv. 2024 Mar 4;14(11):7664-7675. doi: 10.1039/d4ra01060d. eCollection 2024 Feb 29.

Abstract

A series of new sulfonamide derivatives connected through an imine linker to five or seven membered heterocycles were designed and synthesized. All synthesized derivatives were characterized using a variety of spectroscopic methods, including IR, HNMR, and CNMR. α-glucosidase and α-amylase inhibition activities, as well as glucose uptake were assessed for each of the synthesized compounds. Four sulfonamide derivatives namely 3a, 3b, 3h and 6 showed excellent inhibitory potential against α-glucosidase with IC values of 19.39, 25.12, 25.57 and 22.02 μM, respectively. They were 1.05- to 1.39-fold more potent than acarbose. Sulfonamide derivatives 3g, 3i and 7 (EC values of 1.29, 21.38 and 19.03 μM, respectively) exhibited significant glucose uptake activity that were 1.62- to 27-fold more potent than berberine. Both α-glucosidase protein (PDB: 2QMJ) and α-amylase (PDB: 1XCW) complexed with acarbose were adopted for docking investigations for the most active synthesized compounds. The docked compounds were able to inhabit the same space as the acarviosin ring of acarbose. The docking of the most active compounds showed an analogous binding with the active site of α-glucosidase as acarbose. The superior activity of the synthesized compounds against α-glucosidase enzyme than α-amylase enzyme can be rationalized by the weak interaction with the α-amylase. The physiochemical parameters of all synthesized compounds were aligned with Lipinski's rule of five.

摘要

设计并合成了一系列通过亚胺连接基与五元或七元杂环相连的新型磺胺衍生物。所有合成的衍生物均采用多种光谱方法进行表征,包括红外光谱(IR)、核磁共振氢谱(HNMR)和核磁共振碳谱(CNMR)。对每种合成化合物评估了α - 葡萄糖苷酶和α - 淀粉酶抑制活性以及葡萄糖摄取情况。四种磺胺衍生物,即3a、3b、3h和6,对α - 葡萄糖苷酶显示出优异的抑制潜力,其IC值分别为19.39、25.12、25.57和22.02 μM。它们的效力比阿卡波糖高1.05至1.39倍。磺胺衍生物3g、3i和7(EC值分别为1.29、21.38和19.03 μM)表现出显著的葡萄糖摄取活性,其效力比小檗碱高1.62至27倍。采用与阿卡波糖复合的α - 葡萄糖苷酶蛋白(PDB:2QMJ)和α - 淀粉酶(PDB:1XCW)对活性最高的合成化合物进行对接研究。对接的化合物能够占据与阿卡波糖的阿卡里糖环相同的空间。活性最高的化合物与α - 葡萄糖苷酶活性位点的对接显示出与阿卡波糖类似的结合。合成化合物对α - 葡萄糖苷酶的活性优于α - 淀粉酶,这可以通过与α - 淀粉酶的弱相互作用来解释。所有合成化合物的理化参数均符合Lipinski的五规则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36c5/10910856/29995038d4f6/d4ra01060d-f1.jpg

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