Department of Chemistry, Sardar Vallabhbhai National Institute of Technology, Surat, Gujarat, 395007, India.
Department of Pharmaceutical Chemistry, Prof. Ravindra Nikam College of Pharmacy, Gondur, Dhule, Maharashtra, 424002, India.
Mol Divers. 2024 Jun;28(3):1681-1695. doi: 10.1007/s11030-023-10683-x. Epub 2023 Jun 21.
Novel pyrrolo[2,3-d]pyrimidine-based analogues were designed, synthesized, and evaluated for their ability to inhibit the α-amylase enzyme in order to treat diabetes. In vitro antidiabetic analysis demonstrated excellent antidiabetic action for compounds 5b, 6c, 7a, and 7b, with IC values in the 0.252-0.281 mM range. At a 200 μg/mL concentration, the exceptional percent inhibition values for compounds 5a, 5b, 5d, and 6a varied from 97.79 ± 2.86% to 85.56 ± 4.13% overperforming the standard (acarbose). Molecular docking of all compounds performed with Bacillus paralicheniformis α-amylase enzyme. The most active compounds via in vitro and non-toxic via in silico ADMET and molecular docking analysis, hybrids 6c, 7a, and 7b displayed binding affinity from - 8.2 and - 8.5 kcal/mol. Molecular dynamic simulations of most active compound 5b and 7a investigated into the active sites of the Bacillus paralicheniformis α-amylase enzyme for a 100-ns indicating the stability of hybrid-protein complex. Consistent RGyr values for the two complexes under study further suggest that the system's proteins are closely packed in the dynamic state. Synthesized analogs' in vitro biological assessments, ADMET, molecular docking, and MD modelling reveal that 5b, 6c, 7a, and 7b hybrid analogs may be employed in the development of future antidiabetic drugs.
新型吡咯并[2,3-d]嘧啶类化合物被设计、合成并评估其抑制α-淀粉酶的能力,以期治疗糖尿病。体外抗糖尿病分析表明,化合物 5b、6c、7a 和 7b 具有出色的抗糖尿病作用,IC 值在 0.252-0.281mM 范围内。在 200μg/mL 浓度下,化合物 5a、5b、5d 和 6a 的异常百分抑制值从 97.79±2.86%到 85.56±4.13%不等,优于标准品(阿卡波糖)。所有化合物均与地衣芽孢杆菌α-淀粉酶进行分子对接。通过体外和非毒性的 ADMET 和分子对接分析,最活跃的化合物 6c、7a 和 7b 显示出结合亲和力为-8.2 和-8.5kcal/mol。对最活跃的化合物 5b 和 7a 的分子动力学模拟研究了地衣芽孢杆菌α-淀粉酶的活性部位 100ns,表明了杂合蛋白复合物的稳定性。研究中的两个复合物的一致 RGyr 值进一步表明,系统中的蛋白质在动态状态下紧密堆积。合成类似物的体外生物学评估、ADMET、分子对接和 MD 建模表明,5b、6c、7a 和 7b 杂合类似物可用于开发未来的抗糖尿病药物。