Suppr超能文献

通过 Meerwein 反应进行气相衍生化,用于活性药物成分中环氧化物的选择性和灵敏 LC-MS 分析。

Gas-phase derivatization via the Meerwein reaction for selective and sensitive LC-MS analysis of epoxides in active pharmaceutical ingredients.

机构信息

API Chemistry and Analysis, Product Development, GlaxoSmithKline, 709 Swedeland Road, King of Prussia, PA 19406, USA.

出版信息

J Pharm Biomed Anal. 2011 Dec 15;56(5):1106-11. doi: 10.1016/j.jpba.2011.07.044. Epub 2011 Aug 5.

Abstract

A gas-phase derivatization strategy is reported by using the gas-phase Meerwein reaction for rapid and direct LC-MS analysis of epoxides, which are potential genotoxic impurities (GTIs) in active pharmaceutical ingredients (APIs). This class-selective ion/molecule reaction occurs between epoxides and the ethylnitrilium ion (CH(3)-C≡NH↔CH(3)-C=NH) that is generated by atmospheric pressure ionizations (when acetonitrile is used as the mobile phase). Density functional theory (DFT) calculations at the B3LYP/6-311+G(d,p) level show that the gas-phase Meerwein reaction is thermodynamically favorable. Commonly used atmospheric pressure ionization techniques including ESI, APCI and APPI were evaluated for optimal formation of the Meerwein reaction products. APCI appears to be the method of choice since it offers better sensitivity and more robust detection under typical LC-MS instrumentation conditions. Quantitative analysis of epoxides can be achieved by either single ion monitoring (SIM) or multiple reaction monitoring (MRM) of the Meerwein reaction products. We demonstrate herein quantitative analysis of two potential GTIs of SB797313 and SB719133 in APIs. The validated methods afford excellent linearity (r(2)≥0.999), sensitivity (LOD≤1 ppm by w/w in 10 mg/mL APIs) and recovery (ranging from 92% to 102%), as well as accuracy (≤2.8% difference) and precision (≤2.2% RSD) based on injections of six prepared standards. This novel strategy is particularly useful when a target analyte is difficult to be directly analyzed by LC-MS (e.g. due to poor ionization) or unstable in the course of solution-phase derivatization.

摘要

报道了一种通过气相间 Meerwein 反应对潜在遗传毒性杂质(GTI)在原料药(API)中的环氧化物进行快速直接的 LC-MS 分析的气相衍生化策略。该类选择性离子/分子反应发生在环氧化物与大气压电离(当乙腈用作流动相时)生成的乙基亚硝鎓离子(CH(3)-C≡NH↔CH(3)-C=NH)之间。在 B3LYP/6-311+G(d,p)水平下进行的密度泛函理论(DFT)计算表明,气相 Meerwein 反应在热力学上是有利的。评估了常用的大气压电离技术,包括 ESI、APCI 和 APPI,以优化 Meerwein 反应产物的形成。APCI 似乎是首选方法,因为它在典型的 LC-MS 仪器条件下提供更好的灵敏度和更稳健的检测。可以通过 Meerwein 反应产物的单离子监测(SIM)或多重反应监测(MRM)来实现环氧化物的定量分析。我们在此证明了在 API 中对 SB797313 和 SB719133 的两种潜在 GTIs 的定量分析。验证后的方法提供了极好的线性(r(2)≥0.999)、灵敏度(在 10mg/mL API 中,LOD≤1ppm)和回收率(在 92%至 102%之间),以及准确度(≤2.8%的差异)和精密度(≤2.2%RSD)基于 6 个制备标准品的进样。当目标分析物难以直接通过 LC-MS 进行分析(例如,由于电离不良)或在溶液相衍生化过程中不稳定时,这种新策略特别有用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验