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Integrated MALDI-MS imaging and LC–MS techniques for visualizing spatiotemporal metabolomic dynamics in a rat stroke model

机译:集成的MALDI-MS成像和LC-MS技术用于可视化大鼠卒中模型中的时空代谢组动力学

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摘要

Spatiotemporal information about biomolecules is indispensable for precise pathological analysis, but it remains largely unclear. Here we show a novel analytical platform combing mass spectrometry imaging (MSI) with its complementary technique, liquid chromatography–mass spectrometry (LC–MS), to elucidate more comprehensive metabolic behaviors, with spatiotemporal information, in tissues. Analysis of a rat transient middle cerebral artery occlusion (MCAO) brain tissue after ischemia–reperfusion was performed to characterize the detailed metabolomic response to pathological alterations. To compare the spatially resolved metabolic state between ischemic and contralateral hemispheres of the MCAO brain, coronally sliced tissues were subjected to MSI. We also measured the metabolites extracted from three different cerebral regions, including whole cortex (CTX), hippocampus (HI) and corpus striatum (CPu), by LC–MS. In the ischemic hemisphere, significant metabolic changes at the CTX and CPu were observed after reperfusion, while not at the HI. A region-specific metabolic behavior was observed in amino acid and nucleotide metabolism, as well as in the TCA cycle. Correlation between MSI and LC–MS data was relatively high in the CTX and CPu. Combination of both MS platforms visualized the diverse spatiotemporal metabolic dynamics during pathological progress. Thus, our proposed strategy will contribute to the understanding of the complex pathogenesis of ischemia–reperfusion.Electronic supplementary materialThe online version of this article (doi:10.1007/s11306-013-0588-8) contains supplementary material, which is available to authorized users.
机译:对于精确的病理分析,有关生物分子的时空信息是必不可少的,但目前仍不清楚。在这里,我们展示了一个结合质谱成像(MSI)和其互补技术液相色谱-质谱(LC-MS)的新型分析平台,以阐明组织中具有时空信息的更全面的代谢行为。对缺血再灌注后的大鼠短暂性中脑动脉闭塞(MCAO)脑组织进行分析,以表征对病理改变的详细代谢组学反应。为了比较MCAO脑缺血半侧和对侧半球的空间分辨代谢状态,对冠状切片组织进行了MSI处理。我们还通过LC-MS测量了从三个不同大脑区域(包括整个皮层(CTX),海马(HI)和纹状体(CPu))提取的代谢物。在缺血性半球中,再灌注后在CTX和CPu处观察到明显的代谢变化,而在HI处则没有。在氨基酸和核苷酸代谢以及TCA循环中观察到区域特定的代谢行为。在CTX和CPu中,MSI和LC-MS数据之间的相关性相对较高。两个MS平台的组合可视化病理过程中的各种时空代谢动力学。因此,我们提出的策略将有助于理解缺血-再灌注的复杂发病机理。电子补充材料本文的在线版本(doi:10.1007 / s11306-013-0588-8)包含补充材料,授权用户可以使用。 。

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