Suppr超能文献

罗沙司他降解杂质的结构特征和计算机毒性预测。

Structural characterization and in silico toxicity prediction of degradation impurities of roxadustat.

机构信息

Department of Pharmaceutical Analysis, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad, India.

Department of Chemical Sciences, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad, India.

出版信息

J Pharm Biomed Anal. 2023 Sep 20;234:115517. doi: 10.1016/j.jpba.2023.115517. Epub 2023 Jun 8.

Abstract

Roxadustat is the first drug approved for anemia due to chronic kidney disease. Drug degradation profile is very crucial for assessing the quality and safety of the drug substances and their formulations. Forced degradation studies are conducted for quick prediction of drug degradation products. Forced degradation of roxadustat was carried out as per ICH guidelines, and nine degradation products (DPs) were observed. These DPs (DP-1 to DP-9) were separated using the reverse phase HPLC gradient method with an XBridge column (250 mm × 4.6 mm, 5 µm). The mobile phase consisted of 0.1% formic acid (solvent A) and acetonitrile (solvent B) at a flow rate of 1.0 ml/min. The chemical structures of all the DPs were proposed by using LC-Q-TOF/MS. DP-4 and DP-5, the two major degradation impurities, were isolated, and NMR was used to confirm their chemical structures. Based on our experiments, the roxadustat was found stable to thermal degradation in solid state and oxidative conditions. However, it was unstable in acidic, basic, and photolytic conditions. A very remarkable observation was made about DP-4 impurity. DP-4 was generated as a common degradation impurity in alkaline hydrolysis, neutral hydrolysis as well as photolysis conditions. DP-4 has a similar molecular mass to roxadustat but is structurally different. DP-4 is chemically, (1a-methyl-6-oxo-3-phenoxy-1,1a,6,6a-tetrahydroindeno [1,2-b] aziridine-6a-carbonyl) glycine. In silico toxicity study was conducted using Dereck software to gain the best knowledge of the drug and its degradation products towards carcinogenicity, mutagenicity, teratogenicity, and skin sensitivity. A further study using molecular docking confirmed the potential interaction of DPs with proteins responsible for toxicity. DP-4 shows a toxicity alert due to the presence of aziridine moiety.

摘要

罗沙司他是首个获批用于治疗慢性肾脏病所致贫血的药物。药物降解谱对于评估药物物质及其制剂的质量和安全性非常重要。强制降解研究可用于快速预测药物降解产物。按照 ICH 指南对罗沙司他进行了强制降解研究,观察到了 9 个降解产物(DP)。使用反相 HPLC 梯度法和 XBridge 柱(250mm×4.6mm,5μm)分离这些 DP(DP-1 至 DP-9)。流动相由 0.1%甲酸(溶剂 A)和乙腈(溶剂 B)组成,流速为 1.0ml/min。所有 DP 的化学结构均通过 LC-Q-TOF/MS 提出。分离出两个主要的降解杂质 DP-4 和 DP-5,并使用 NMR 确认其化学结构。根据我们的实验,罗沙司他在固态和氧化条件下对热降解稳定,但在酸性、碱性和光解条件下不稳定。对 DP-4 杂质进行了非常显著的观察。DP-4 是在碱性水解、中性水解和光解条件下作为常见的降解杂质产生的。DP-4 的分子量与罗沙司他相似,但结构不同。DP-4 是化学上的(1a-甲基-6-氧代-3-苯氧基-1,1a,6,6a-四氢茚并[1,2-b]氮杂环丁烷-6a-羰基)甘氨酸。使用 Dereck 软件进行了计算机毒性研究,以获得关于药物及其降解产物的致癌性、致突变性、致畸性和皮肤敏感性的最佳知识。使用分子对接的进一步研究证实了 DP 与毒性相关蛋白的潜在相互作用。由于存在氮杂环丁烷部分,DP-4 显示出毒性警报。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验