Vaishnavi Sanjay Patil, Bhavika Kapil Seth, Hemchandra K Chaudhari
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引用次数: 0
摘要
阿格列汀是一种口服降糖药选择性二肽基肽酶-4 (DPP-4)酶抑制剂。抑制DPP-4可通过阻止胰高血糖素样肽(GLP-1)和葡萄糖依赖性胰岛素多肽(GIP)的降解,从而提高胰高血糖素激素的水平(Andukuriet al., 2009)。主要目的是研究adme的预测和实验性质,比较它们,检查预测的靶标,并了解SwissADME在设计其他药物分子中的应用。(Joshi et al., 2022)将ADME预测在线工具SwissADME与Swiss Target prediction一起用于了解药物靶标。此外,我们从现有的科学文献中获得了实验数据。对人二肽基肽酶IV (DPP-4)进行了分子对接研究。我们发现了预测数据和实验数据之间的相似性;然而,一些误差取决于测试条件。结果将在文章的前半部分进行解释。我们描述了预测阿格列汀的ADME性质,并基于结果,我们可以得出结论,这些工具可以类似地用于预测其他药物分子。它还可以根据预测数据重新配置和生产几种不同的药物配方。
In silico ADME and target prediction studies of Alogliptin as drug molecule.
Alogliptin is an oral hypoglycemic agent selective inhibitor of the dipeptidyl peptidase-4 (DPP-4) enzyme. Inhibition of DPP-4 increases the levels of the incretin hormones glucagon-like peptide 1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP) by preventing their degradation. The main goal is to study the predicted and experimental properties of absorption, distribution, metabolism, and elimination (ADME), compare them, examine predicted targets, and understand the use of SwissADME in designing other drug molecules. SwissADME, an online tool for ADME prediction, was used together with Swiss Target Prediction to understand drug targets. In addition, we obtained experimental data from the available scientific literature. Molecular docking studies against human DPP-4 were also conducted. We found similarities between the predicted and experimental data; however, some errors depended on the test conditions. The results are interpreted in the first half of the article. We describe the predicted ADME properties of Alogliptin, and based on the results, we can conclude that these tools can be used to predict other drug molecules similarly. It can also reconfigure and manufacture several different formulations of the drug based on predictive data.
期刊介绍:
Drug Metabolism Reviews consistently provides critically needed reviews of an impressive array of drug metabolism research-covering established, new, and potential drugs; environmentally toxic chemicals; absorption; metabolism and excretion; and enzymology of all living species. Additionally, the journal offers new hypotheses of interest to diverse groups of medical professionals including pharmacologists, toxicologists, chemists, microbiologists, pharmacokineticists, immunologists, mass spectroscopists, as well as enzymologists working in xenobiotic biotransformation.