Literature DB >> 34411978

Novel tetrahydrobenzo[b]thiophen-2-yl)urea derivatives as novel α-glucosidase inhibitors: Synthesis, kinetics study, molecular docking, and in vivo anti-hyperglycemic evaluation.

Hong-Xu Xie1, Juan Zhang1, Yue Li1, Jin-He Zhang1, Shan-Kui Liu1, Jie Zhang2, Hua Zheng2, Gui-Zhou Hao3, Kong-Kai Zhu4, Cheng-Shi Jiang5.   

Abstract

α-Glucosidase inhibitors, which can inhibit the digestion of carbohydrates into glucose, are one of important groups of anti-type 2 diabetic drugs. In the present study, we report our effort on the discovery and optimization of α-glucosidase inhibitors with tetrahydrobenzo[b]thiophen-2-yl)urea core. Screening of an in-house library revealed a moderated α-glucosidase inhibitors, 5a, and then the following structural optimization was performed to obtain more efficient derivatives. Most of these derivatives showed increased inhibitory activity against α-glucosidase than the parental compound 5a (IC50 of 26.71 ± 1.80 μM) and the positive control acarbose (IC50 of 258.53 ± 1.27 μM). Among them, compounds 8r (IC50 = 0.59 ± 0.02 μM) and 8s (IC50 = 0.65 ± 0.03 μM) were the most potent inhibitors, and showed selectivity over α-amylase. The direct binding of both compounds with α-glucosidase was confirmed by fluorescence quenching experiments. Kinetics study revealed that these compounds were non-competitive inhibitors, which was consistent with the molecular docking results that compounds 8r and 8s showed high preference to bind to the allosteric site instead of the active site of α-glucosidase. In addition, compounds 8r and 8s were not toxic (IC50 > 100 μM) towards LO2 and HepG2 cells. Finally, the in vivo anti-hyperglycaemic activity assay results indicated that compounds 8r could significantly decrease the level of plasma glucose and improve glucose tolerance in SD rats treated with sucrose. The present study provided the tetrahydrobenzo[b]thiophen-2-yl)urea chemotype for developing novel α-glucosidase inhibitors against type 2 diabetes.
Copyright © 2021 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Anti-hyperglycaemic activity; Molecular docking; Non-competitive inhibitor; Tetrahydrobenzo[b]thiophen-2-yl)urea; Type 2 diabetes; α-Glucosidase inhibitors

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Substances:

Year:  2021        PMID: 34411978     DOI: 10.1016/j.bioorg.2021.105236

Source DB:  PubMed          Journal:  Bioorg Chem        ISSN: 0045-2068            Impact factor:   5.275


  2 in total

1.  Synthesis and Evaluation of 1,3,5-Triaryl-2-Pyrazoline Derivatives as Potent Dual Inhibitors of Urease and α-Glucosidase Together with Their Cytotoxic, Molecular Modeling and Drug-Likeness Studies.

Authors:  Rabia Mehmood; Amina Sadiq; Reem I Alsantali; Ehsan Ullah Mughal; Meshari A Alsharif; Nafeesa Naeem; Asif Javid; Munirah M Al-Rooqi; Gul-E-Saba Chaudhry; Saleh A Ahmed
Journal:  ACS Omega       Date:  2022-01-20

2.  Design, synthesis, and in silico studies of quinoline-based-benzo[d]imidazole bearing different acetamide derivatives as potent α-glucosidase inhibitors.

Authors:  Milad Noori; Ali Davoodi; Aida Iraji; Navid Dastyafteh; Minoo Khalili; Mehdi Asadi; Maryam Mohammadi Khanaposhtani; Somayeh Mojtabavi; Mehdi Dianatpour; Mohammad Ali Faramarzi; Bagher Larijani; Massoud Amanlou; Mohammad Mahdavi
Journal:  Sci Rep       Date:  2022-08-18       Impact factor: 4.996

  2 in total

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