Orioli Marica, Aldini Giancarlo, Beretta Giangiacomo, Facino Roberto Maffei, Carini Marina
Istituto Chimico Farmaceutico Tossicologico, Faculty of Pharmacy, University of Milan, Viale Abruzzi 42, 20131 Milan, Italy.
J Chromatogr B Analyt Technol Biomed Life Sci. 2005 Nov 15;827(1):109-18. doi: 10.1016/j.jchromb.2005.04.025.
A sensitive, selective, specific and rapid liquid chromatographic-electrospray ionization tandem mass spectrometric assay was developed and validated for the simultaneous determination in skeletal muscle of the Michael adducts between 4-hydroxy-trans-2-nonenal (HNE), one of the most reactive lipid peroxidation-driven unsaturated aldehyde, and glutathione (GSH) and the endogenous histidine-containing dipeptides carnosine (CAR) and anserine (ANS), with the final aim to use conjugated adducts as specific and unequivocal markers of lipid peroxidation. Samples (skeletal muscle homogenates from male rats) were prepared by protein precipitation with 1 vol. of a HClO(4) solution (4.2%; w/v) containing H-Tyr-His-OH as internal standard. The supernatant, diluted (1:1, v/v) in mobile phase, was separated on a Phenomenex Sinergy polar-RP column with a mobile phase of water-acetonitrile-heptafluorobutyric acid (9:1:0.01, v/v/v) at a flow rate of 0.2 ml/min, with a run time of 12 min. Detection was on a triple quadrupole mass spectrometer equipped with an ESI interface operating in positive ionization mode. The acquisitions were in multiple reaction monitoring (MRM) mode using the following precursor-->product ion combinations: H-Tyr-His-OH (IS): m/z 319.2--> 156.5+301.6; GS-HNE: m/z 464.3--> 179.1+308.0; CAR-HNE: m/z 383.1--> 110.1+266.6; ANS-HNE: m/z 397.2--> 109.1+126.1. The method was validated over the concentration ranges 1.5-90 (GS-HNE) and 0.4-40 (CAR-HNE, ANS-HNE) nmoles/g wet tissue, and the LLOQ were 1.25 and 0.33 pmoles injected respectively. The intra- and inter-day precisions (CV%) were <7.38% (<or=10.90% at the LLOQs); intra- and inter-assay accuracy (RE%) was within +/-7.0% for all the concentrations (<or=18% at the LLOQs). The method was applied to quantitate peptide-HNE Michael adducts in rat skeletal muscles exposed to oxidative stress to endogenously generate HNE, and the results indicate that CAR-HNE can be considered as an early, specific and stable marker of lipid peroxidation in excitable tissues.
开发并验证了一种灵敏、选择性高、特异性强且快速的液相色谱 - 电喷雾电离串联质谱分析法,用于同时测定骨骼肌中4 - 羟基 - 反式 - 2 - 壬烯醛(HNE,最具反应活性的脂质过氧化驱动的不饱和醛之一)与谷胱甘肽(GSH)以及内源性含组氨酸二肽肌肽(CAR)和鹅肌肽(ANS)之间的迈克尔加成物,最终目的是将共轭加成物用作脂质过氧化的特异性和明确标记物。样品(雄性大鼠的骨骼肌匀浆)通过用1体积的含H - Tyr - His - OH作为内标物的高氯酸溶液(4.2%;w/v)进行蛋白质沉淀来制备。上清液在流动相中按1:1(v/v)稀释后,在Phenomenex Sinergy polar - RP柱上进行分离,流动相为水 - 乙腈 - 七氟丁酸(9:1:0.01,v/v/v),流速为0.2 ml/min,运行时间为12分钟。检测采用配备电喷雾电离接口并在正离子模式下运行的三重四极杆质谱仪。采集在多反应监测(MRM)模式下进行,使用以下前体→产物离子组合:H - Tyr - His - OH(内标物):m/z 319.2→156.5 + 301.6;GS - HNE:m/z 464.3→179.1 + 308.0;CAR - HNE:m/z 383.1→110.1 + 266.6;ANS - HNE:m/z 397.2→109.1 + 126.1。该方法在1.5 - 90(GS - HNE)和0.4 - 40(CAR - HNE,ANS - HNE)nmol/g湿组织的浓度范围内进行了验证,最低定量限分别为注入1.25和0.33 pmol。日内和日间精密度(CV%)<7.38%(在最低定量限时≤10.90%);所有浓度下的批内和批间准确度(RE%)在±7.0%以内(在最低定量限时≤18%)。该方法应用于定量测定暴露于氧化应激以内源性产生HNE的大鼠骨骼肌中的肽 - HNE迈克尔加成物,结果表明CAR - HNE可被视为可兴奋组织中脂质过氧化的早期、特异性和稳定标记物。