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采用集成在线-离线自上而下串联质谱平台对一种低水平未知同型降解产物进行表征。

Characterization of a low-level unknown isomeric degradation product using an integrated online-offline top-down tandem mass spectrometry platform.

机构信息

Structure Elucidation Group, Global Process & Analytical Chemistry, Merck Research Laboratories , 556 Morris Ave., Summit, New Jersey 07901, United States.

出版信息

Anal Chem. 2013 Oct 1;85(19):8964-7. doi: 10.1021/ac401911n. Epub 2013 Sep 20.

Abstract

An integrated online-offline platform was developed combining automated online LC-MS fraction collection, continuous accumulation of selected ions (CASI), and offline top-down electron capture dissociation (ECD) tandem mass spectrometry experiments to identify a low-level, unknown isomeric degradant in a formulated drug product during an accelerated stability study. By identifying the diagnostic ions of the isoaspartic acid (isoAsp), the top-down ECD experiment showed that the Asp9 in exenatide was converted to isoAsp9 to form the unknown isomeric degradant. The platform described here provides an accurate, straightforward, and low limit of detection method for the analysis of Asp isomerization as well as other potential low-level degradants in therapeutic polypeptides and proteins. It is especially useful for unstable and time-sensitive degradants and impurities.

摘要

开发了一个集成的在线-离线平台,将自动在线 LC-MS 馏分收集、连续选择离子累积(CASI)和离线自上而下的电子俘获解离(ECD)串联质谱实验相结合,以在加速稳定性研究中鉴定配方药物产品中的低水平未知异构降解产物。通过鉴定异天冬氨酸(isoAsp)的诊断离子,自上而下的 ECD 实验表明,艾塞那肽中的 Asp9 转化为 isoAsp9 形成未知的异构降解产物。这里描述的平台为分析治疗性多肽和蛋白质中的 Asp 异构化以及其他潜在低水平降解产物提供了一种准确、直接且检测限低的方法。它特别适用于不稳定和对时间敏感的降解产物和杂质。

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