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在高有机含量洗脱条件下通过 WAX HPLC 分离硫代磷酸寡核苷酸杂质。

Separation of phosphorothioate oligonucleotide impurities by WAX HPLC under high organic content elution conditions.

机构信息

Ionis Pharmaceuticals, Carlsbad, CA, 92010, USA.

Ionis Pharmaceuticals, Carlsbad, CA, 92010, USA.

出版信息

Anal Biochem. 2022 Dec 15;659:114956. doi: 10.1016/j.ab.2022.114956. Epub 2022 Oct 18.

DOI:10.1016/j.ab.2022.114956
PMID:36270331
Abstract

The separation of impurities in phosphorothioate diester (PS) oligonucleotides is complicated by (1) the presence of a very large number of diastereoisomers, e.g., 2 for a 20-mer oligonucleotide, (2) peak broadening due to the hydrophobic character of the sulfur atom, and (3) the chemical similarity of the impurities to the parent oligonucleotide and each other. Further difficulties arise due to the chemical nature of oligonucleotides, which display a complex mixture of ionic, hydrophobic, H-bonding, and other functionalities. To minimize hydrophobic interactions and peak broadening due to the PS modification, we have developed a novel method that combines a weak anion exchange (WAX) column with a mobile phase elution system designed to maximize separation by a single ionic/electrostatic interaction. We found that although chaotropes are helpful, the most significant beneficial effect of the hydrophilic WAX column is that high-organic, low-salt mobile phase is required for product elution. Separations are also benefitted by pH gradient effects on stationary phase electrostatic potential and analyte ionization. An extraordinary degree of separation is achieved by the new WAX method in comparison to SAX (strong anion exchange) chromatography. For the first time, the extent of deamination of PS oligonucleotides is directly determined by a chromatography-only method. The approach, representative results, and the mechanisms of separation are discussed.

摘要

磷硫酯二酯 (PS) 寡核苷酸中的杂质分离很复杂,原因有:(1) 存在大量的非对映异构体,例如 20 个碱基的寡核苷酸有 2 种;(2) 由于硫原子的疏水性,峰变宽;(3) 杂质与母寡核苷酸和彼此之间具有化学相似性。由于寡核苷酸的化学性质,还会出现进一步的困难,它们显示出复杂的离子、疏水性、氢键和其他功能的混合物。为了最小化 PS 修饰引起的疏水性相互作用和峰展宽,我们开发了一种新方法,将弱阴离子交换 (WAX) 柱与旨在通过单一离子/静电相互作用最大化分离的流动相洗脱系统相结合。我们发现,尽管变旋剂有帮助,但亲水 WAX 柱的最显著有益效果是需要高有机、低盐的流动相才能洗脱产物。固定相静电势和分析物电离的 pH 梯度效应对分离也有好处。与 SAX(强阴离子交换)色谱相比,新的 WAX 方法实现了极高的分离度。PS 寡核苷酸的脱氨程度首次通过仅基于色谱的方法直接确定。本文讨论了该方法、代表性结果和分离机制。

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