Chimie-Toxicologie Analytique et Cellulaire, EA 4463, Université Paris Descartes, Sorbonne Paris Cité, Faculté des Sciences Pharmaceutiques et Biologiques, 75006 Paris, France.
Anal Bioanal Chem. 2012 Dec;404(10):3049-59. doi: 10.1007/s00216-012-6396-6. Epub 2012 Sep 27.
Cholesterol and oxysterols are involved as key compounds in the development of severe neurodegenerative diseases and in neuroinflammation processes. Monitoring their concentration changes under pathological conditions is of interest to get insights into the role of lipids in diseases. For numerous years, liquid chromatography coupled to mass spectrometry has been the method of choice for metabolites identification and quantification in biological samples. However, sterols and oxysterols are relatively apolar molecules poorly adapted to electrospray ionization (ESI). To circumvent this drawback, we developed a novel and robust analytical method involving derivatization of these analytes in cholesteryl N-4-(N,N-dimethylamino)phenyl carbamates under alkaline conditions followed by ultra-performance liquid chromatography-high resolution mass spectrometry analysis (UPLC-HRMS). Optimized UPLC conditions led to the separation of a mixture of 11 derivatized sterols and oxysterols especially side chain substituted derivatives after 6 min of chromatographic run. High sensitivity time-of-flight mass analysis allowed analytes to be detected in the nanomolar range. The method was validated for the analysis of oxysterols and sterols in mice brain in respect of linearity, limits of quantification, accuracy, precision, analyte stability, and recovery according to the Food and Drug Administration (FDA) guidelines. The developed method was successfully applied to investigate the impact of lipopolysaccharide (LPS) treatment on the rat cerebral steroidome.
胆固醇和氧化固醇是严重神经退行性疾病发展和神经炎症过程中的关键化合物。监测它们在病理条件下的浓度变化有助于深入了解脂质在疾病中的作用。多年来,液相色谱-质谱联用一直是生物样品中代谢物鉴定和定量的首选方法。然而,固醇和氧化固醇是相对非极性的分子,不适合电喷雾电离(ESI)。为了克服这一缺点,我们开发了一种新的、强大的分析方法,即在碱性条件下将这些分析物衍生为胆甾基 N-4-(N,N-二甲基氨基)苯氨基甲酰基化合物,然后进行超高效液相色谱-高分辨质谱分析(UPLC-HRMS)。优化的 UPLC 条件可在 6 分钟的色谱运行后分离出 11 种衍生化固醇和氧化固醇的混合物,特别是侧链取代的衍生物。高灵敏度飞行时间质谱分析可在纳摩尔范围内检测到分析物。该方法根据食品和药物管理局(FDA)的指南,在分析小鼠脑内的氧化固醇和固醇时进行了线性、定量下限、准确度、精密度、分析物稳定性和回收率的验证。所开发的方法成功地应用于研究脂多糖(LPS)处理对大鼠大脑类固醇组的影响。