首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >In situ 3D magnetic resonance metabolic imaging of microwave-irradiated rodent brain: a new tool for metabolomics research.
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In situ 3D magnetic resonance metabolic imaging of microwave-irradiated rodent brain: a new tool for metabolomics research.

机译:微波辐射啮齿动物大脑的原位3D磁共振代谢成像:代谢组学研究的新工具。

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摘要

The rapid elevation in rat brain temperature achieveable with focused beam microwave irradiation (FBMI) leads to a permanent inactivation of enzymes, thereby minimizing enzyme-dependent post-mortem metabolic changes. An additional characteristic of FBMI is that the NMR properties of the tissue are close to those of the in vivo condition and remain so for at least 12 h. These features create an opportunity to develop magnetic resonance spectroscopy and imaging on microwave-irradiated samples into a technique with a resolution, coverage and sensitivity superior to any experiment performed directly in vivo. Furthermore, when combined with pre-FBMI infusion of (13)C-labeled substrates, like [1-(13)C]-glucose, the technique can generate maps of metabolic fluxes, like the tricarboxylic acid and glutamate-glutamine neurotransmitter cycle fluxes at an unprecedented spatial resolution.
机译:聚焦束微波辐射(FBMI)可实现大鼠脑温度的快速升高,从而导致酶永久失活,从而最大程度地减少了依赖酶的验尸代谢变化。 FBMI的另一个特征是组织的NMR特性接近体内条件,并保持至少12 h。这些功能为将磁共振波谱和对微波辐照样品进行成像提供了机会,使其具有比直接在体内进行的任何实验均具有更高的分辨率,覆盖范围和灵敏度的技术。此外,当结合FBMI预先注入(13)C标记的底物(如[1-(13)C]-葡萄糖)时,该技术可以生成代谢通量图,如三羧酸和谷氨酸-谷氨酰胺神经递质循环通量以空前的空间分辨率。

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