Characterisation of Antisense Oligonucleotides by Ion-Pair Reversed-Phase UHPLC-HRMS: Method development using Design of Experiments

IF 2 3区 化学 Q3 BIOCHEMICAL RESEARCH METHODS
Antonio Triolo, Fabiana Tavani, Prisca Barnini, Sandra Furlanetto, Serena Orlandini
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引用次数: 0

Abstract

The quality control of therapeutic antisense oligonucleotides (ASOs) poses significant analytical challenges due to the complexity of their synthesis and degradation processes and the need to ensure the safety and efficacy of active pharmaceutical ingredients (APIs). In this study, an ion-pair reversed-phase ultra-high-performance liquid chromatography–high-resolution mass spectrometry (IP-RP-UHPLC-HRMS) method based on Orbitrap technology was developed using fomivirsen (FMV) and tofersen (TFR) as model compounds. A preliminary scouting phase was dedicated to selecting the type of ion-pair reagent and MS parameters settings (sheath gas, auxiliary gas temperature and S-lens), based on MS spectrum quality (charge state distribution, presence of adducts and in-source fragments), MS signal height and chromatographic peak shape. Design of Experiments (DoE) through response surface methodology was employed to evaluate the effects of the following factors in depth: concentration of the ion pair reagent N,N-diisopropylethylamine and of 1,1,1,3,3,3-hexafluoroisopropanol in the mobile phase and elution gradient slope. The responses selected were the UV height and baseline width of the main peak of the APIs, as well as the resolutions between selected impurities from their extracted MS chromatograms. A multidimensional space (sweet spot) was defined in which the response requirements were met, enabling multicriteria optimisation and the set-up of two distinct IP-RP-UHPLC-MS methods for FMV and TFR characterisation, based on shared mobile phase components and MS parameters. All four FMV impurities and 13 out of 15 detected TFR impurities were identified above 0.1%. DoE approach has been demonstrated to be an effective tool for achieving a balance between sensitivity and selectivity in the analysis of ASOs, identifying optimum conditions tailored to oligonucleotide type and ion-pair agent and paving the way for more structured development processes, as recommended by recent regulatory requirements for pharmaceutical analytical procedure development.

Abstract Image

离子对反相UHPLC-HRMS表征反义寡核苷酸:基于实验设计的方法开发。
治疗性反义寡核苷酸(ASOs)由于其合成和降解过程的复杂性以及需要确保活性药物成分(api)的安全性和有效性,对其质量控制提出了重大的分析挑战。本研究建立了一种基于Orbitrap技术的离子对反相超高效液相色谱-高分辨率质谱(IP-RP-UHPLC-HRMS)方法,以fomivirsen (FMV)和tofersen (TFR)为模型化合物。根据质谱质量(电荷状态分布、加合物和源内碎片的存在)、质谱信号高度和色谱峰形状,初步筛选阶段致力于选择离子对试剂的类型和质谱参数设置(鞘气、辅助气温度和s透镜)。采用响应面法设计实验(DoE),深入考察了离子对试剂N,N-二异丙乙胺和1,1,1,3,3,3-六氟异丙醇在流动相中的浓度和洗脱梯度斜率的影响。所选择的响应是原料药的紫外高度和主峰基线宽度,以及所选杂质在其提取的质谱图中的分辨率。定义了一个满足响应要求的多维空间(最佳点),实现了多标准优化,并基于共享的流动相成分和质谱参数建立了两种不同的IP-RP-UHPLC-MS方法,用于FMV和TFR表征。所有四种FMV杂质和15种检测到的TFR杂质中的13种都在0.1%以上。DoE方法已被证明是一种有效的工具,可以在ASOs分析中实现灵敏度和选择性之间的平衡,确定适合寡核苷酸类型和离子对试剂的最佳条件,并为更结构化的开发过程铺平道路,正如最近对药物分析程序开发的监管要求所推荐的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Mass Spectrometry
Journal of Mass Spectrometry 化学-光谱学
CiteScore
5.10
自引率
0.00%
发文量
84
审稿时长
1.5 months
期刊介绍: The Journal of Mass Spectrometry publishes papers on a broad range of topics of interest to scientists working in both fundamental and applied areas involving the study of gaseous ions. The aim of JMS is to serve the scientific community with information provided and arranged to help senior investigators to better stay abreast of new discoveries and studies in their own field, to make them aware of events and developments in associated fields, and to provide students and newcomers the basic tools with which to learn fundamental and applied aspects of mass spectrometry.
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