Development and validation of an assay for the quantification of 11 nucleotides using LC/LC-electro spray ionization-MS

被引:86
作者
Klawitter, Jost [1 ]
Schmitz, Volker
Klawitter, Jelena
Leibfritz, Dieter
Christians, Uwe
机构
[1] Univ Colorado, Hlth Sci Ctr, Dept Anesthesiol, Denver, CO 80262 USA
[2] Univ Bremen, Inst Organ Chem, D-28334 Bremen, Germany
关键词
automated sample preparation; column switching; nucleotides; LC-MS; energy metabolism; tissue concentrations; ATP;
D O I
10.1016/j.ab.2007.03.018
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A unique quantitative high-performance liquid chromatography-mass spectrometry (HPLC-MS) method to investigate the energy state in cells and tissues was developed and validated using a chromatographic method designed to (i) separate and quantify more than 11 nucleotides without the use of phosphate buffer and (ii) minimize the potential ion suppression common to other nucleotide methods. Several commonly used extraction methods were compared based on absolute recoveries and reproducibilities. Perchloric acid (PCA) extraction yielded the highest recoveries (75-86%) and showed the best reproducibility (coefficient of variation = 2.5-9.5%). Our assay, which included PCA extraction, online desalting, separation of the high-energy phosphates on a C18 reversed-phase column using a methanol/dibutylammonium formate gradient, and detection of negative ions in the single ion mode, met all predefined acceptance criteria for the quantification of AMP, ADP, ATP, CDP, CTP, FAD, GDP, GTP, UDP, and UTP. Detection limits ranged from 0.25 pmol on-column (FAD) to 4 pmol (NAD+). Assay development also included validation of tissue sample collection procedures. ATP/ADP concentrations and the resulting energy charge in kidney tissues are very sensitive to hypoxia, with significant decreases occurring within seconds. Avoidance of hypoxia during tissue retrieval is critical, and in vivo freeze clamping compares favorably with other tissue collection techniques. (c) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:230 / 239
页数:10
相关论文
共 23 条
[1]  
Ashcroft SJH, 1997, ADV EXP MED BIOL, V426, P73
[2]   What determines the intracellular ATP concentration [J].
Ataullakhanov, FI ;
Vitvitsky, VM .
BIOSCIENCE REPORTS, 2002, 22 (5-6) :501-511
[3]  
AU JLS, 1989, CLIN CHEM, V35, P48
[4]  
Begley TP, 2001, VITAM HORM, V61, P103
[5]  
BEURLINGHARBURY C, 1990, THROMB HAEMOSTASIS, V63, P286
[6]   Quantification of intracellular metabolites in Escherichia coli K12 using liquid chromatographic-electrospray ionization tandem mass spectrometric techniques [J].
Buchholz, A ;
Takors, R ;
Wandrey, C .
ANALYTICAL BIOCHEMISTRY, 2001, 295 (02) :129-137
[7]   Cyclic nucleotide-dependent protein kinases: Intracellular receptors for cAMP and cGMP action [J].
Francis, SH ;
Corbin, JD .
CRITICAL REVIEWS IN CLINICAL LABORATORY SCIENCES, 1999, 36 (04) :275-328
[8]   Analysis of intracellular nucleoside triphosphate levels in normal and tumor cell lines by high-performance liquid chromatography [J].
Huang, D ;
Zhang, YH ;
Chen, XG .
JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, 2003, 784 (01) :101-109
[9]  
HUBER R, 1988, J CHROMATOGR LIBRA A, V39, P81
[10]   Bioluminometric assay of ATP in mouse brain: Determinant factors for enhanced test sensitivity [J].
Khan, HA .
JOURNAL OF BIOSCIENCES, 2003, 28 (04) :379-382