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首页> 外文期刊>Journal of Neuroscience Methods >Ultra fast in vivo microwave irradiation for enhanced metabolic stability of brain biopsy samples during HRMAS NMR analysis.
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Ultra fast in vivo microwave irradiation for enhanced metabolic stability of brain biopsy samples during HRMAS NMR analysis.

机译:超高速体内微波辐射可在HRMAS NMR分析过程中增强脑活检样品的代谢稳定性。

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High resolution magic-angle spinning (HRMAS) NMR spectroscopy is a well established technique for ex vivo metabolite investigations but experimental factors such as ischemic delay or mechanical stress due to continuous spinning deserve further investigations. Cortical brain samples from rats that underwent ultrafast in vivo microwave irradiation (MWp group) were compared to similar samples that underwent standard nitrogen freezing with and without exposure to domestic microwaves (FN and FN+MWd groups). One dimensional (1)H HRMAS NMR spectra were acquired and 16 metabolites of interest were quantified. Within each group 3 samples underwent long lasting acquisition (up to 15 h). Statistically significant differences in metabolite concentrations were observed between groups for metabolites associated to post mortem biochemical changes and/or anaerobic glycolysis including several neurotransmitters. Spectral assessment over time showed a drastic reduction of biochemical variations in both MW groups. Only 2/16 metabolites exhibited significant signal variations after 15 h of continuous spinning and acquisition in the MWp group. This number increased to 10 in the FN group. We confirmed limited anaerobic metabolism and post mortem degradation after ultra fast in vivo MW irradiation. Furthermore, spectra obtained after MWp and MWd irradiation exhibited an extremely stable spectral pattern over extended periods of continuous acquisition.
机译:高分辨率魔角旋转(HRMAS)NMR光谱技术是用于体外代谢物研究的成熟技术,但实验因素(如缺血性延迟或由于连续旋转引起的机械应力)值得进一步研究。将经过超快的体内微波辐照的大鼠(MWp组)的皮质大脑样本与经过标准氮冷冻(有和没有暴露于家用微波的情况下)的相似样本(FN和FN + MWd组)进行了比较。获取一维(1)H HRMAS NMR光谱,并对16种目标代谢物进行定量。在每个组中,3个样品进行了长时间的采集(长达15小时)。在与尸检后生化变化和/或厌氧糖酵解(包括几种神经递质)相关的代谢物之间,观察到代谢物浓度的统计学差异。随着时间的推移,光谱评估显示,两个兆瓦组的生化变化均大大降低。在MWp组中,连续纺丝和采集15 h后,只有2/16代谢物显示出明显的信号变化。在FN组中,该数字增加到10。我们证实了超快的体内MW照射后,厌氧代谢受到限制,验尸后降解。此外,MWp和MWd辐照后获得的光谱在连续采集的延长时间内显示出极其稳定的光谱模式。

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