Life Sciences Mass Spectrometry, Department of Inorganic and Analytical Chemistry, University of Geneva, 24 Quai Ernest Ansermet, CH-1211, Geneva 4, Switzerland.
Shimadzu Research Laboratory, Wharfside, Trafford Wharf Road, Manchester, M17 1GP, UK.
Anal Bioanal Chem. 2022 Oct;414(24):7243-7252. doi: 10.1007/s00216-022-04276-0. Epub 2022 Aug 17.
The effect of LC mobile phase composition and flow rate (2-50 µL/min) on mobility behavior in vacuum differential mobility spectrometry (vDMS) was investigated for electrosprayed isobaric antidepressant drugs (AD); amitriptyline, maprotiline, venlafaxine; and structurally related antidepressants nortriptyline, imipramine, and desipramine. While at 2 µL/min, no difference in compensation voltage was observed with methanol and acetonitrile, at 50 µL/min, acetonitrile used for LC elution of analytes enabled the selectivity of the mobility separation to be improved. An accurate and sensitive method could be developed for the quantification of six AD drugs in human plasma using trap/elute micro-LC setup hyphenated to vDMS with mass spectrometric detection in the selected ion monitoring mode. The assay was found to be linear over three orders of magnitude, and the limit of quantification was of 25 ng/mL for all analytes. The LC-vDMS-SIM/MS method was compared to a LC-MRM/MS method, and in both cases, inter-assay precisions were lower than 12.5 and accuracies were in the range 91.5-110%, but with a four times reduced analysis time (2 min) for the LC-vDMS-SIM/MS method. This work illustrates that with vDMS, the LC mobile phase composition can be used to tune the ion mobility separation and to improve assay selectivity without additional hardware.
研究了 LC 流动相组成和流速(2-50 μL/min)对电喷雾等压抗抑郁药(AD);阿米替林、马普替林、文拉法辛;以及结构相关的抗抑郁药去甲替林、丙咪嗪和去甲丙咪嗪在真空差分迁移谱(vDMS)中的迁移行为的影响。当流速为 2 μL/min 时,甲醇和乙腈的补偿电压没有差异,而在 50 μL/min 时,用于 LC 洗脱分析物的乙腈可提高迁移分离的选择性。采用阱/洗脱微 LC 装置与 vDMS 联用,并采用选择离子监测模式的质谱检测,建立了一种灵敏、准确的测定人血浆中六种 AD 药物的方法。该方法的线性范围为三个数量级,所有分析物的定量下限均为 25 ng/mL。LC-vDMS-SIM/MS 方法与 LC-MRM/MS 方法进行了比较,在这两种情况下,批内精密度均低于 12.5%,准确度在 91.5-110%范围内,但 LC-vDMS-SIM/MS 方法的分析时间缩短了四倍(2 分钟)。这项工作表明,通过 vDMS,可以使用 LC 流动相组成来调整离子迁移分离,并提高分析物选择性,而无需额外的硬件。