Price Kristin E, Vandaveer Shannon S, Lunte Craig E, Larive Cynthia K
Department of Chemistry, University of Kansas, Lawrence, KS 66045, USA.
J Pharm Biomed Anal. 2005 Aug 10;38(5):904-9. doi: 10.1016/j.jpba.2005.02.034.
The concentration of low molecular weight compounds in tissues can yield valuable information about the metabolic state of an organism. Studies of changes in the metabolic state or metabonomics can reflect disease pathways, drug action, or toxicity. This research aims to develop a new approach, tissue targeted metabonomics. Microdialysis sampling and microcoil NMR analysis are employed to compare basal and ischemic metabolic states of various tissues (blood, brain, and heart) of Sprague-Dawley rats. Microdialysis sampling is localized, making the metabolic profile tissue specific. Coupling to NMR analysis is highly advantageous, because a complete metabolic profile is obtained in a single spectrum. However, small sample volumes and low analyte concentrations make analysis of microdialysis samples challenging. Microcoil NMR uses low sample volumes and has improved mass sensitivity, relative to standard 5 mm probes. The coupling of these techniques is a potentially powerful tool for metabonomics analysis.
组织中低分子量化合物的浓度能够提供有关生物体代谢状态的宝贵信息。对代谢状态变化或代谢组学的研究可以反映疾病途径、药物作用或毒性。本研究旨在开发一种新方法——组织靶向代谢组学。采用微透析采样和微线圈核磁共振分析来比较斯普拉格-道利大鼠不同组织(血液、大脑和心脏)的基础代谢状态和缺血代谢状态。微透析采样具有局部性,使得代谢谱具有组织特异性。与核磁共振分析相结合具有很大优势,因为在单个光谱中就能获得完整的代谢谱。然而,小样本体积和低分析物浓度使得微透析样品的分析具有挑战性。相对于标准的5毫米探头,微线圈核磁共振使用的样本体积较小,并且具有更高的质量灵敏度。这些技术的结合是代谢组学分析的一种潜在强大工具。