School of Pharmaceutical Sciences, University of Geneva, CMU─Rue Michel Servet 1, Geneva 4 1211, Switzerland.
Institute of Pharmaceutical Sciences of Western Switzerland, University of Geneva, CMU─Rue Michel Servet 1, Geneva 4 1211, Switzerland.
Anal Chem. 2024 Jun 18;96(24):9994-10002. doi: 10.1021/acs.analchem.4c01384. Epub 2024 Jun 10.
Therapeutic oligonucleotides (ONs) commonly incorporate phosphorothioate (PS) modifications. These introduce chiral centers and generate ON diastereomers. The increasing number of ONs undergoing clinical trials and reaching the market has led to a growing interest to better characterize the ON diastereomer composition, especially for small interfering ribonucleic acids (siRNAs). In this study, and for the first time, we identify higher-order structures as the major cause of ON diastereomer separation in hydrophilic interaction chromatography (HILIC). We have used conformational predictions and melting profiles of several representative full-length ONs to first analyze ON folding and then run mass spectrometry and HILIC to underpin the link between their folding and diastereomer separation. On top, we show how one can either enhance or suppress diastereomer separation depending on chromatographic settings, such as column temperature, pore size, stationary phase, mobile-phase ionic strength, and organic modifier. This work will significantly facilitate future HILIC-based characterization of PS-containing ONs; e.g., enabling monitoring of batch-to-batch diastereomer distributions in full-length siRNAs, a complex task that is now for the first time shown as possible on this delicate class of therapeutic double-stranded ONs.
治疗性寡核苷酸 (ONs) 通常包含硫代磷酸酯 (PS) 修饰。这些修饰引入手性中心并产生 ON 对映异构体。越来越多的 ONs 正在进行临床试验并进入市场,这导致人们越来越有兴趣更好地表征 ON 对映异构体的组成,特别是对于小干扰核糖核酸 (siRNAs)。在这项研究中,我们首次将高阶结构确定为亲水性相互作用色谱 (HILIC) 中 ON 对映异构体分离的主要原因。我们使用几种代表性全长 ON 的构象预测和熔融曲线首先分析 ON 的折叠,然后进行质谱和 HILIC 分析,以证明它们的折叠与对映异构体分离之间的联系。在此基础上,我们展示了如何根据色谱条件(如柱温、孔径、固定相、流动相离子强度和有机改性剂)来增强或抑制对映异构体的分离。这项工作将极大地促进基于 HILIC 的 PS 修饰 ONs 的后续表征;例如,能够监测全长 siRNAs 中批间对映异构体分布,这是一项复杂的任务,现在首次在这一精细的治疗性双链 ON 类中显示出了这种可能性。