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以α-葡萄糖苷酶和葡萄糖激酶为药理靶点的苄基苯并咪唑酮衍生物作为潜在药物的设计、合成及评价

Design, synthesis, , and evaluation of benzylbenzimidazolone derivatives as potential drugs on α-glucosidase and glucokinase as pharmacological targets.

作者信息

Santos-Ballardo Cress Lumadhar, Montes-Ávila Julio, Rendon-Maldonado José Guadalupe, Ramos-Payan Rosalio, Montaño Sarita, Sarmiento-Sánchez Juan I, Acosta-Cota Selene de Jesús, Ochoa-Terán Adrián, Bastidas-Bastidas Pedro de Jesús, Osuna-Martínez Ulises

机构信息

Facultad de Ciencias Químico Biológicas, Universidad Autónoma de Sinaloa México

Facultad de Ingeniería Civil, Universidad Autónoma de Sinaloa México.

出版信息

RSC Adv. 2023 Jul 12;13(31):21153-21162. doi: 10.1039/d3ra02916f.

Abstract

Benzimidazolones have shown biological activities, including antihyperglycemic and hypoglycemic, by inhibiting or activating of α-glu and GK. The aim of this study is the rational design of compounds using assays to delimitate the selection of structures to synthesize and the evaluation of benzimidazolone derivatives in blood glucose control. A docking of 23 benzimidazolone derivatives was performed; selecting the compounds with better profiles to synthesize by microwave-irradiation/conventional heat and evaluate in enzymatic evaluation. Compounds 2k, 2m, 2r, and 2s presented the best profiles, showing good affinity energy (-10.9 to -8.6 kcal mol) and binding with catalytic-amino acids. They were synthesized at 70 °C and 24 h using DMF as the solvent and potassium carbonate (yield: 22-38%). The results with α-glu showed moderate inhibition of 2k (14 ± 1.23-29 ± 0.45), 2m (12 ± 2.21-36 ± 0.30), 2r (7 ± 2.21-13 ± 1.34), and 2s (11 ± 0.74-35 ± 2.95) at evaluated concentrations (0.1 to 100 μg mL). The GK activation assay showed an enzymatic activity increase; compound 2k increased 1.31 and 2.83 more than normal activity, 2m (2.13-fold), 2s (2.86 and 3.74-fold) at 100 and 200 μg mL respectively. The present study showed that the 2s derivative presents moderate potential as an α-glu inhibitor and a good activator potential of GK, suggesting that this compound is a good candidate for blood glucose control through antihyperglycemic and hypoglycemic mechanisms.

摘要

苯并咪唑酮已显示出生物活性,包括通过抑制或激活α-葡萄糖苷酶(α-glu)和葡萄糖激酶(GK)来实现降血糖和低血糖作用。本研究的目的是通过实验合理设计化合物,以确定用于合成的结构选择,并评估苯并咪唑酮衍生物在血糖控制方面的效果。对23种苯并咪唑酮衍生物进行了对接;选择具有更好特性的化合物,通过微波辐射/传统加热法进行合成,并在酶活性评估中进行评价。化合物2k、2m、2r和2s表现出最佳特性,显示出良好的亲和能(-10.9至-8.6千卡/摩尔)并与催化氨基酸结合。它们在70℃下以N,N-二甲基甲酰胺(DMF)为溶剂、碳酸钾为原料反应24小时合成(产率:22%-38%)。α-葡萄糖苷酶实验结果表明,在评估浓度(0.1至100微克/毫升)下,化合物2k(14±1.23-29±0.45)、2m(12±2.21-36±0.30)、2r(7±2.21-13±1.34)和2s(11±0.74-35±2.95)表现出中等程度的抑制作用。葡萄糖激酶激活实验显示酶活性增加;在100和200微克/毫升时,化合物2k分别比正常活性增加1.31倍和2.83倍,2m增加2.13倍,2s增加2.86倍和3.74倍。本研究表明,2s衍生物作为α-葡萄糖苷酶抑制剂具有中等潜力,作为葡萄糖激酶的良好激活剂具有潜力,表明该化合物通过降血糖和低血糖机制控制血糖是一个很好的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/553d/10337652/fab45c9a988d/d3ra02916f-f1.jpg

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