Li Li, Leone Tony, Foley Joe P, Welch Christopher J
Analytical Sciences, Merck & Co., Inc, West Point, PA, 19486, United States; Drexel University, Department of Chemistry, Philadelphia, PA, 19104, United States.
Formulation Sciences, Merck & Co., Inc, West Point, PA, 19486, United States.
J Chromatogr A. 2017 Jun 2;1500:84-88. doi: 10.1016/j.chroma.2017.04.008. Epub 2017 Apr 8.
Small interfering RNA (siRNA) therapeutics have received significant interest in recent years owing to their ability to elicit sequence-specific gene knockdown and subsequent suppression of protein expression. Chemical modifications can improve the hydrolytic stability and susceptibility of siRNAs to enzymatic degradation. One commonly used modification to improve hydrolytic stability, the replacement of the native phosphodiester linkage with a phosphorothioate moiety, introduces an additional phosphorous stereocenter into the molecule, resulting in the formation of diastereomers. The chromatographic separation of stereoisomeric siRNAs containing such phosphothioates is a challenging problem, especially when multiple phosphothioates are present within a modified siRNA duplex giving rise to multiple stereoisomers. In this study, we report an investigation into the use of an ion-pairing reversed phase UHPLC (or IP-RP UHPLC) method for the baseline separation of closely related diastereomers of an Apo-B gene targeting siRNA duplex under denaturing conditions. The related siRNA species consist of two diastereomers from the sense strand and the two pairs of diastereomers from the antisense strand. Key chromatographic parameters critical to stereoisomer separation are highlighted, including the structure of the ion-pairing agent, chemical composition of the stationary phase, and organic modifier. The method was applied to the separation of an siRNA stressed with iodine and demonstrated satisfactory selectivity for the parent siRNA and the desulfurization product.
近年来,小分子干扰RNA(siRNA)疗法因其能够引发序列特异性基因敲低并随后抑制蛋白质表达而备受关注。化学修饰可以提高siRNA的水解稳定性以及对酶促降解的敏感性。一种常用的提高水解稳定性的修饰方法是用硫代磷酸酯部分取代天然磷酸二酯键,这会在分子中引入一个额外的磷立体中心,从而导致非对映异构体的形成。含有此类硫代磷酸酯的立体异构siRNA的色谱分离是一个具有挑战性的问题,尤其是当修饰的siRNA双链体中存在多个硫代磷酸酯从而产生多个立体异构体时。在本研究中,我们报告了一项关于使用离子对反相超高效液相色谱法(或IP-RP UHPLC)在变性条件下对靶向载脂蛋白B基因的siRNA双链体的紧密相关非对映异构体进行基线分离的研究。相关的siRNA种类包括来自正义链的两种非对映异构体以及来自反义链的两对非对映异构体。突出了对立体异构体分离至关重要的关键色谱参数,包括离子对试剂的结构、固定相的化学组成和有机改性剂。该方法应用于碘处理的siRNA的分离,并对亲本siRNA和脱硫产物表现出令人满意的选择性。