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液相色谱/电喷雾电离离子阱串联质谱法对棕榈酰肉碱进行高精度同位素分析

High-precision isotopic analysis of palmitoylcarnitine by liquid chromatography/electrospray ionization ion-trap tandem mass spectrometry.

作者信息

Guo ZengKui, Yarasheski Kevin, Jensen Michael D

机构信息

Endocrine Research Unit, Mayo Foundation, Rochester, MN 55905, USA.

出版信息

Rapid Commun Mass Spectrom. 2006;20(22):3361-6. doi: 10.1002/rcm.2753.

Abstract

Single quadrupole gas chromatography/mass spectrometry (GC/MS) has been widely used for isotopic analysis in metabolic investigations using stable isotopes as tracers. However, its inherent shortcomings prohibit it from broader use, including low isotopic precision and the need for chemical derivatization of the analyte. In order to improve isotopic detection power, liquid chromatography/electrospray ionization ion-trap tandem mass spectrometry (LC/ESI-itMS2) has been evaluated for its isotopic precision and chemical sensitivity for the analysis of [13C]palmitoylcarnitine. Over the enrichment range of 0.4-10 MPE (molar % excess), the isotopic response of LC/ESI-itMS2 to [13C]palmitoylcarnitine was linear (r = 1.00) and the average isotopic precision (standard deviation, SD) was 0.11 MPE with an average coefficient of variation (CV) of 5.6%. At the lower end of isotopic enrichments (0.4-0.9 MPE), the isotopic precision was 0.05 MPE (CV = 8%). Routine analysis of rat skeletal muscle [13C4]palmitoylcarnitine demonstrated an isotopic precision of 0.03 MPE for gastrocnemius (n = 16) and of 0.02 MPE for tibialis anterior (n = 16). The high precision enabled the detection of a small (0.08 MPE) but significant (P = 0.01) difference in [13C4]palmitoylcarnitine enrichments between the two muscles, 0.51 MPE (CV = 5.8%) and 0.43 MPE (CV = 4.6%), respectively. Therefore, the system demonstrated an isotopic lower detection limit (LDL) of < or =0.1 MPE (2 x SD) that has been impossible previously with other organic mass spectrometry instruments. LC/ESI-itMS2 systems have the potential to advance metabolic investigations using stable isotopes to a new level by significantly increasing the isotopic solving power.

摘要

单四极杆气相色谱/质谱联用仪(GC/MS)已广泛应用于以稳定同位素为示踪剂的代谢研究中的同位素分析。然而,其固有的缺点限制了它的更广泛应用,包括同位素精度低以及分析物需要进行化学衍生化。为了提高同位素检测能力,已对液相色谱/电喷雾电离离子阱串联质谱仪(LC/ESI-itMS2)分析[13C]棕榈酰肉碱的同位素精度和化学灵敏度进行了评估。在0.4 - 10 MPE(摩尔百分比过量)的富集范围内,LC/ESI-itMS2对[13C]棕榈酰肉碱的同位素响应呈线性(r = 1.00),平均同位素精度(标准偏差,SD)为0.11 MPE,平均变异系数(CV)为5.6%。在同位素富集的较低端(0.4 - 0.9 MPE),同位素精度为0.05 MPE(CV = 8%)。对大鼠骨骼肌[13C4]棕榈酰肉碱的常规分析表明,腓肠肌(n = 16)的同位素精度为0.03 MPE,胫前肌(n = 16)的同位素精度为0.02 MPE。高精度使得能够检测到两块肌肉之间[13C4]棕榈酰肉碱富集的微小差异(0.08 MPE)但具有显著性(P = 0.01),分别为0.51 MPE(CV = 5.8%)和0.43 MPE(CV = 4.6%)。因此,该系统显示出同位素检测下限(LDL)≤0.1 MPE(2×SD),这在以前使用其他有机质谱仪器时是不可能的。LC/ESI-itMS2系统有可能通过显著提高同位素解析能力,将使用稳定同位素的代谢研究推进到一个新的水平。

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