Section of Pharmaceutical Chemistry, Punjab University College of Pharmacy, University of the Punjab, Allama Iqbal Campus, Lahore, Pakistan.
Section of Phamarcognosy, Punjab University College of Pharmacy, University of the Punjab, Allama Iqbal Campus, Lahore, Pakistan.
J Biomol Struct Dyn. 2024 Sep;42(15):8009-8023. doi: 10.1080/07391102.2023.2242503. Epub 2023 Aug 7.
Isolation of bioactive compounds from plants and their therapeutic evaluation is crucial in the pursuit of novel phytochemicals and contributes an indispensable role in drug discovery and design. The literature has documented the hypolipidemic effect of numerous species. Taking that into consideration, the current study was designed to isolate, purify and evaluate the antihyperlipidemic potential of leaves of Wall. For the first time, the bioassay-guided isolation led to the separation of 3 compounds that were identified by spectroscopic techniques as o-phthalic acid bis-(2-ethyl decyl)-ester (1), bis (2-ethyloctyl) phthalate (2), and 1,2 benzenedicarboxylic acid bis(2-methyl heptyl) ester (3). Lipase inhibition assay was utilized to scrutinize the antihyperlipidemic potential of methanolic extract fractions and subsequently isolated compounds. Further, the isolated compounds were employed for studies molecular docking, molecular mechanics with generalized born and surface area solvation (MM-GBSA), and MD simulations with Pancreatic Lipase Colipase (PDB ID: 1LPB). Molecular docking and MM-GBSA of isolated compounds were employed to explain the mode of binding between the protein-ligand complex and binding free energy calculation, respectively. Since compound (3) displayed the best docking score of -6.689 kcal/mol as compared to orlistat -5.529 kcal/mol with PDB: 1LPB. So, it was chosen for MD simulations to evaluate ligand stability and flexibility of the complex which was validated by the fluctuation of α-carbon chain, root mean square deviation (RMSD), root mean square fluctuation (RMSF), and type of interactions involved which authenticated the lipase inhibitory potential. Overall, and results validated that compound (3) could be exploited as a promising pancreatic lipase inhibitor.Communicated by Ramaswamy H. Sarma.
从植物中分离具有生物活性的化合物并对其进行治疗评估对于寻找新的植物化学物质至关重要,并且在药物发现和设计中发挥着不可或缺的作用。文献记载了许多种植物的降血脂作用。有鉴于此,本研究旨在从 Wall 的叶子中分离、纯化和评估其抗高血脂的潜力。首次采用生物活性导向分离法分离得到 3 种化合物,通过光谱技术鉴定为邻苯二甲酸双-(2-乙基癸基)-酯(1)、邻苯二甲酸双(2-乙基辛基)酯(2)和 1,2-苯二甲酸双(2-甲基庚基)酯(3)。采用脂肪酶抑制试验来仔细研究甲醇提取物级分和随后分离得到的化合物的抗高血脂潜力。此外,还对分离得到的化合物进行了分子对接、广义 Born 和表面面积溶剂化(MM-GBSA)分子力学以及与胰腺脂肪酶辅脂酶(PDB ID:1LPB)的 MD 模拟研究。利用分子对接和 MM-GBSA 研究了分离化合物与蛋白质-配体复合物的结合模式和结合自由能计算。与 PDB:1LPB 的奥利斯他(-5.529 kcal/mol)相比,化合物(3)的对接评分最佳,为-6.689 kcal/mol。因此,选择它进行 MD 模拟以评估配体的稳定性和复合物的灵活性,这通过α-碳原子链的波动、均方根偏差(RMSD)、均方根波动(RMSF)和涉及的相互作用类型得到验证,这些都证明了该化合物具有抑制脂肪酶的潜力。总体而言,和结果验证了化合物(3)可以作为一种有前途的胰腺脂肪酶抑制剂。由 Ramaswamy H. Sarma 传达。