Liu Rong, Ruan Yanjiao, Liu Zhongqiu, Gong Lingzhi
Joint Laboratory for Translational Cancer Research of Chinese Medicine of the Ministry of Education of the People's Republic of China, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong Province, 510006, PR China.
International Institute for Translational Chinese Medicine, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong Province, 510006, PR China.
Rapid Commun Mass Spectrom. 2019 Apr 15;33(7):697-709. doi: 10.1002/rcm.8386.
Hexafluoroisopropanol (HFIP) has been widely used as a counter anion in the mobile phase for ion-pairing reversed-phase liquid chromatography/mass spectrometry (IP-RP-LC/MS) analysis of oligonucleotides. However, researchers are still searching for improvements to counter anions for LC/MS analysis of oligonucleotides. This study aimed to find alternatives to HFIP for analyzing oligonucleotides.
The study was performed using an Agilent 1290 ultra-high-performance liquid chromatography (UHPLC) system coupled to an Agilent 6540 mass spectrometer by using an oligonucleotide BEH C18 column (100 × 2.1 mm, 1.7 μm). Buffer systems containing ion-pairing reagents (triethylamine, tripropylamine, hexylamine, dimethylbutylamine, diisopropylethylamine, N,N-dimethylcyclohexylamine, and octylamine) and fluoroalcohols (HFIP and hexafluoro-2-methyl-2-propanol (HFTP)) were compared chromatographically and mass spectrometrically.
Results showed that HFTP has better desalting ability than HFIP, but both HFIP and HFTP have comparable effects on the separation of oligonucleotides sized from 10mer to 40mer for most of ion-pairing reagents, with the exception of triethylamine and N,N-dimethylcyclohexylamine, where HFIP performed better than HFTP.
The choice of fluoroalcohols in IP-RP-LC/MS analysis of oligonucleotides depends on the type of ion-pairing reagents used in the mobile phase. As a guideline, we would recommend to use either HA-HFIP or HA-HFTP for small oligonucleotides, but TPA-HFTP for large oligonucleotides for IP-RP-LC/MS analysis of synthetic oligonucleotides.
六氟异丙醇(HFIP)已被广泛用作离子对反相液相色谱/质谱(IP-RP-LC/MS)分析寡核苷酸时流动相中的抗衡阴离子。然而,研究人员仍在寻找用于寡核苷酸LC/MS分析的抗衡阴离子的改进方法。本研究旨在寻找HFIP的替代品以分析寡核苷酸。
本研究使用安捷伦1290超高效液相色谱(UHPLC)系统与安捷伦6540质谱仪联用,采用寡核苷酸BEH C18柱(100×2.1 mm,1.7μm)。对含有离子对试剂(三乙胺、三丙胺、己胺、二甲基丁胺、二异丙基乙胺、N,N-二甲基环己胺和辛胺)和氟代醇(HFIP和六氟-2-甲基-2-丙醇(HFTP))的缓冲系统进行了色谱和质谱比较。
结果表明,HFTP的脱盐能力比HFIP好,但对于大多数离子对试剂,HFIP和HFTP对10聚体至40聚体大小的寡核苷酸的分离效果相当,三乙胺和N,N-二甲基环己胺除外,其中HFIP的表现优于HFTP。
在寡核苷酸的IP-RP-LC/MS分析中,氟代醇的选择取决于流动相中使用的离子对试剂的类型。作为指导原则,对于合成寡核苷酸的IP-RP-LC/MS分析,我们建议对于小寡核苷酸使用HA-HFIP或HA-HFTP,但对于大寡核苷酸使用TPA-HFTP。