Kiss Ladislau, Bier Jens, Röder Yasmin, Weissmann Norbert, Grimminger Friedrich, Seeger Werner
Biochemie Med. II, University of Giessen Lung Center (UGLC), Department of Internal Medicine, Justus Liebig University, Germany.
Anal Bioanal Chem. 2008 Oct;392(4):717-26. doi: 10.1007/s00216-008-2308-1. Epub 2008 Aug 19.
Despite first evidence for the cytochrome P450-mediated enantioselective biosynthesis and activity of cis-epoxyeicosatrienoic acids (EETs), as yet little is known about the stereospecifity of EET generation and physiology, because the existing chiral methods are time consuming, labor intensive, and not sensitive enough. We present a method for highly sensitive, direct, and simultaneous chiral analysis of all eight EET enantiomers consisting of (i) solid-phase extraction, (ii) reversed-phase high-performance liquid chromatographic purification followed by (iii) consecutive regio- and enantiomeric separation of the four underivatized EET regioisomers within one chromatographic run employing capillary tandem column chiral-phase liquid chromatography with (iv) reliable dual online photodiode array and gentle electrospray ionization tandem mass spectrometric identification and quantitation of the eluting optical antipodes. This one-step, simple, expeditious, and highly sensitive measurement allows profiling of all eight EET enantiomers at once, thus avoiding substance loss and enabling high sample throughput. Limits of quantification in the low picogram range were achieved by the use of capillary columns with typical high quantitative sensitivity instead of conventional columns with low chromatographic signal intensity employed by previous methods. Application to tissue homogenates demonstrated the suitability of this approach for routine and reliable "enantioprofiling" of free endogenous EETs, i.e., EETs not esterified into cellular membrane phospholipids, typically occurring at very low concentrations. The technique can readily be employed for preparative purification of enantiomers in the microgram range using large-inner-diameter columns.
尽管首次有证据表明细胞色素P450介导顺式环氧二十碳三烯酸(EETs)的对映选择性生物合成及活性,但目前对于EET生成的立体特异性和生理学仍知之甚少,因为现有的手性方法耗时、费力且灵敏度不够。我们提出了一种对所有八种EET对映体进行高灵敏度、直接和同时手性分析的方法,该方法包括:(i)固相萃取,(ii)反相高效液相色谱纯化,随后(iii)在一次色谱运行中,采用毛细管串联柱手性相液相色谱对四种未衍生化的EET区域异构体进行连续的区域和对映体分离,(iv)通过可靠的双在线光电二极管阵列以及温和的电喷雾电离串联质谱对洗脱的旋光对映体进行鉴定和定量。这种一步式、简单、快速且高灵敏度的测量方法能够一次性对所有八种EET对映体进行分析,从而避免了物质损失并实现了高样品通量。通过使用具有典型高定量灵敏度的毛细管柱而非先前方法中使用的色谱信号强度低的常规柱,实现了低皮克范围内的定量限。将该方法应用于组织匀浆,证明了该方法适用于游离内源性EETs(即未酯化到细胞膜磷脂中的EETs,其浓度通常非常低)的常规且可靠的“对映体分析”。该技术可轻松用于使用大内径柱对微克级对映体进行制备纯化。