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基于药效团、3D-QSAR、分子对接和分子动力学模拟研究的小分子胰脂肪酶抑制剂的结构导向设计与优化。

Structure-guided Design and Optimization of small Molecules as Pancreatic Lipase Inhibitors using Pharmacophore, 3D-QSAR, Molecular Docking, and Molecular Dynamics Simulation Studies.

机构信息

Department of Applied Science, Indian Institute of Information Technology Allahabad, Prayagraj, Uttar Pradesh 211015, India.

出版信息

Curr Comput Aided Drug Des. 2023;19(4):258-277. doi: 10.2174/1573409919666230103144045.

Abstract

BACKGROUND

Obesity has now become a global issue due to the increase in the population of obese people. It also substantially impacts the individual's social, financial, and psychological well-being, which may contribute to depression. Being overweight induces many metabolic and chronic disorders, urging many researchers to focus on developing the drug for obesity treatment. Pancreatic lipase inhibitors and natural product/compound-derived pancreatic lipase inhibitors have recently received much attention because of their structural variety and low toxicity.

OBJECTIVE

This study aimed to build pharmacophores and QSAR for analyzing the necessary structure of pancreatic lipase inhibitors and designing new molecules with the best activity.

METHODS

Ligand-based pharmacophore modeling and Atom-Based 3D-QSAR were carried out using the PHASE module of Schrodinger to determine the critical structural properties necessary for pancreatic lipase (PL) inhibitory activity. A total of 157 phytoconstituents and a standard drug, orlistat, were selected for the present study. Considering the important features for pancreatic lipase inhibition, 15 new molecules were designed and subjected to molecular docking studies and molecular dynamics simulations. The activity of designed molecules was predicted using the Atom- Based QSAR tool of the PHASE module.

RESULTS

The top docked score molecule is structure-7 with a docking score of -6.094 Kcal/mol, whereas the docking score of orlistat and tristin is -3.80Kcal/mol and -5.63Kcal/mol, respectively.

CONCLUSION

The designed molecules have a high docking score and good stability, are in the desirable ADME range and are derived from natural products, so they might be used as lead molecules for anti-obesity drug development.

摘要

背景

由于肥胖人群的增加,肥胖现已成为全球性问题。它还严重影响个人的社会、经济和心理健康,可能导致抑郁。超重会引起许多代谢和慢性疾病,促使许多研究人员专注于开发肥胖治疗药物。由于结构多样性和低毒性,胰脂肪酶抑制剂和天然产物/化合物衍生的胰脂肪酶抑制剂最近受到了广泛关注。

目的

本研究旨在构建药效团和定量构效关系(QSAR),以分析胰脂肪酶抑制剂的必要结构,并设计具有最佳活性的新分子。

方法

使用 Schrodinger 的 PHASE 模块进行基于配体的药效团建模和基于原子的 3D-QSAR,以确定胰脂肪酶(PL)抑制活性所必需的临界结构特性。共有 157 种植物成分和一种标准药物奥利司他被选为本研究。考虑到对胰脂肪酶抑制的重要特征,设计了 15 种新分子,并进行了分子对接研究和分子动力学模拟。使用 PHASE 模块的基于原子的 QSAR 工具预测设计分子的活性。

结果

得分最高的对接分子是结构-7,对接得分为-6.094 Kcal/mol,而奥利司他和曲司汀的对接得分分别为-3.80 Kcal/mol 和-5.63 Kcal/mol。

结论

设计的分子具有较高的对接得分和良好的稳定性,处于理想的 ADME 范围内,并且源自天然产物,因此它们可能被用作抗肥胖药物开发的先导分子。

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