Comprehensive profiling of ceramides in human serum by liquid chromatography coupled to tandem mass spectrometry combining data independent/dependent acquisition modes

化学 色谱法 串联质谱法 鞘脂 质谱法 液相色谱-质谱法 选择性反应监测 固相萃取 生物化学
作者
Diego Luque-Córdoba,M. Calderón-Santiago,Oriol A. Rangel‐Zúñiga,Antonio Camargo,José López‐Miranda,Feliciano Priego‐Capote
出处
期刊:Analytica Chimica Acta [Elsevier BV]
卷期号:1287: 342115-342115 被引量:2
标识
DOI:10.1016/j.aca.2023.342115
摘要

Ceramides are sphingolipids with a structural function in the cell membrane and are involved in cell differentiation, proliferation and apoptosis. Recently, these chemical species have been pointed out as potential biomarkers in different diseases, due to their abnormal levels in blood. In this research, we present an overall strategy combining data-independent and dependent acquisitions (DIA and DDA, respectively) for identification, confirmation, and quantitative determination of ceramides in human serum. By application of liquid chromatography–tandem mass spectrometry (LC–MS/MS) method in DIA mode we identified 49 ceramides including d18:1, d18:0, d18:2, d16:1, d17:1 and t18:0 species. Complementary, quantitative determination of ceramides was based on a high-throughput and fully automated method consisting of solid-phase extraction on-line coupled to LC–MS/MS in DDA to improve analytical features avoiding the errors associated to sample processing. Quantitation limits were at pg mL−1 level, the intra-day and between-days variability were below 20 and 25 %, respectively; and the accuracy, expressed as bias, was always within ±25 %. The proposed method was tested with the CORDIOPREV cohort in order to obtain a qualitative and quantitative profiling of ceramides in human serum. This characterization allowed identifying d18:1 ceramides as the most concentrated with 70.8% of total concentration followed by d18:2 and d18:0 with 13.0 % and 8.8 %, respectively. Less concentrated ceramides, d16:1, d17:1 and t18:0, reported a 7.1 % of the total content. Combination of DIA and DDA LC–MS/MS analysis enabled to profile qualitative and quantitatively ceramides in human serum.
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