Department of Analytical Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Akademika Heyrovského 1203, 500 05 Hradec Králové, Czech Republic.
Department of Pharmacology and Toxicology, Faculty of Pharmacy in Hradec Králové, Charles University, Akademika Heyrovského 1203, 500 05 Hradec Králové, Czech Republic.
Molecules. 2021 Apr 7;26(8):2123. doi: 10.3390/molecules26082123.
Two new ultra-high performance liquid chromatography (UHPLC) methods for analyzing 21 selected antivirals and their metabolites were optimized, including sample preparation step, LC separation conditions, and tandem mass spectrometry detection. Micro-solid phase extraction in pipette tips was used to extract antivirals from the biological material of Hanks balanced salt medium of pH 7.4 and 6.5. These media were used in experiments to evaluate the membrane transport of antiviral drugs. Challenging diversity of physicochemical properties was overcome using combined sorbent composed of C and ion exchange moiety, which finally allowed to cover the whole range of tested antivirals. For separation, reversed-phase (RP) chromatography and hydrophilic interaction liquid chromatography (HILIC), were optimized using extensive screening of stationary and mobile phase combinations. Optimized RP-UHPLC separation was carried out using BEH Shield RP18 stationary phase and gradient elution with 25 mmol/L formic acid in acetonitrile and in water. HILIC separation was accomplished with a Cortecs HILIC column and gradient elution with 25 mmol/L ammonium formate pH 3 and acetonitrile. Tandem mass spectrometry (MS/MS) conditions were optimized in both chromatographic modes, but obtained results revealed only a little difference in parameters of capillary voltage and cone voltage. While RP-UHPLC-MS/MS exhibited superior separation selectivity, HILIC-UHPLC-MS/MS has shown substantially higher sensitivity of two orders of magnitude for many compounds. Method validation results indicated that HILIC mode was more suitable for multianalyte methods. Despite better separation selectivity achieved in RP-UHPLC-MS/MS, the matrix effects were noticed while using both chromatographic modes leading to signal enhancement in RP and signal suppression in HILIC.
两种新的超高效液相色谱 (UHPLC) 方法用于分析 21 种选定的抗病毒药物及其代谢物,包括样品制备步骤、LC 分离条件和串联质谱检测。微固相萃取在移液器吸头中用于从 pH 值为 7.4 和 6.5 的汉克平衡盐介质的生物材料中提取抗病毒药物。这些介质用于实验中评估抗病毒药物的膜转运。使用由 C 和离子交换部分组成的组合吸附剂克服了物理化学性质的挑战性多样性,最终允许涵盖所有测试的抗病毒药物。对于分离,使用固定相和流动相组合的广泛筛选来优化反相 (RP) 色谱和亲水相互作用液相色谱 (HILIC)。优化的 RP-UHPLC 分离使用 BEH Shield RP18 固定相和 25 mmol/L 甲酸在乙腈和水中的梯度洗脱进行。HILIC 分离使用 Cortecs HILIC 柱和 25 mmol/L 甲酸铵 pH 3 和乙腈的梯度洗脱进行。在两种色谱模式下都优化了串联质谱 (MS/MS) 条件,但得到的结果仅显示在毛细管电压和锥形电压参数上略有差异。虽然 RP-UHPLC-MS/MS 表现出优越的分离选择性,但 HILIC-UHPLC-MS/MS 对许多化合物表现出高两个数量级的灵敏度。方法验证结果表明,HILIC 模式更适合多分析物方法。尽管在 RP-UHPLC-MS/MS 中实现了更好的分离选择性,但在使用两种色谱模式时都注意到了基质效应,导致 RP 中的信号增强和 HILIC 中的信号抑制。