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Synthesis, molecular modelling, and biological evaluation of novel quinoxaline derivatives for treating type II diabetes

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DataCite Commons2024-12-26 更新2024-11-05 收录
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https://tandf.figshare.com/articles/dataset/Synthesis_molecular_modelling_and_biological_evaluation_of_novel_quinoxaline_derivatives_for_treating_type_II_diabetes/27088567/1
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Quinoxalines are benzopyrazine derivatives with significant therapeutic impact in the pharmaceutical industry. They proved to be useful against inflammation, bacterial, fungal, viral infection, diabetes and other applications. Very recently, in January 2024, the FDA approved new quinoxaline containing drug, erdafitinib for treatment of certain carcinomas. Despite the diverse biological activities exhibited by quinoxaline derivatives and the role of secretory phospholipase A2 (sPLA2) in diabetes-related complications, the potential of sPLA2-targeting quinoxaline-based inhibitors to effectively address these complications remains unexplored. Therefore, we designed novel sPLA2- and α-glucosidase-targeting quinoxaline-based heterocyclic inhibitors to regulate elevated post-prandial blood glucose linked to patients with diabetes-related cardiovascular complications. Compounds <b>5a–d</b> and <b>6a–d</b> were synthesised by condensing quinoxaline hydrazides with various aryl sulphonyl chlorides. Biological screening revealed compound <b>6a</b> as a potent sPLA2 inhibitor (IC<sub>50</sub> = 0.0475 µM), whereas compound <b>6c</b> most effectively inhibited α-glucosidase (IC<sub>50</sub> = 0.0953 µM), outperforming the positive control acarbose. Moreover, compound <b>6a</b> was the best inhibitor for both enzymes. Molecular docking revealed pharmacophoric features, highlighting the importance of a sulfonohydrazide moiety in the structural design of these compounds, leading to the development of potent sPLA2 and α-glucosidase inhibitors. Collectively, our findings helped identify promising candidates for developing novel therapeutic agents for treating diabetes mellitus. A small, focused library comprising 8 novel compounds was synthesised using a series of substituted quinoxaline sulfonohydrazide derivatives.All synthesised compounds were tested against phospholipase A2 (sPLA2) and α-glucosidase enzymes.The compounds exhibited activities against α-glucosidase and were potent at nanomolar concentrations against sPLA2 isozymes.Structure-based molecular modelling was employed to rationalise the SAR of the compounds. A small, focused library comprising 8 novel compounds was synthesised using a series of substituted quinoxaline sulfonohydrazide derivatives. All synthesised compounds were tested against phospholipase A2 (sPLA2) and α-glucosidase enzymes. The compounds exhibited activities against α-glucosidase and were potent at nanomolar concentrations against sPLA2 isozymes. Structure-based molecular modelling was employed to rationalise the SAR of the compounds.
提供机构:
Taylor & Francis
创建时间:
2024-09-23
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