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首页> 外文期刊>Neurochemical Research >Determination of Oxidative Glucose Metabolism In Vivo in the Young Rat Brain Using Localized Direct-Detected 13C NMR Spectroscopy
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Determination of Oxidative Glucose Metabolism In Vivo in the Young Rat Brain Using Localized Direct-Detected 13C NMR Spectroscopy

机译:局部直接检测 13 C NMR光谱法测定年轻大鼠脑中的氧化葡萄糖代谢

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摘要

Determination of oxidative metabolism in the brain using in vivo 13C NMR spectroscopy (13C MRS) typically requires repeated blood sampling throughout the study to measure blood glucose concentration and fractional enrichment (input function). However, drawing blood from small animals, such as young rats, placed deep inside the magnet is technically difficult due to their small total blood volume. In the present study, a custom-built animal holder enabled temporary removal of the animal from the magnet for blood collection, followed by accurate repositioning in the exact presampling position without degradation of B0 shimming. 13C label incorporation into glutamate C4 and C3 positions during a 120 min [1,6-13C2] glucose infusion was determined in 28-day-old rats (n = 4) under α-chloralose sedation using localized, direct-detected in vivo 13C MRS at 9.4T. The tricarboxylic acid cycle activity rate (V TCA) determined using a one-compartment metabolic modeling was 0.67 ± 0.13 μmol/g/min, a value comparable to previous ex vivo studies. This methodology opens the avenue for in vivo measurements of brain metabolic rates using 13C MRS in small animals.
机译:使用体内 13 C NMR光谱法( 13 C MRS)测定大脑中的氧化代谢通常需要在整个研究过程中重复进行血液采样以测量血糖浓度和部分富集(输入功能)。然而,由于它们的总血液量很小,从磁铁内部深处的小动物(例如幼鼠)中抽血在技术上是困难的。在本研究中,定制的动物固定器能够从磁体中临时取出动物进行血液采集,然后在准确的预采样位置进行准确的重新定位,而不会降低B 0 匀场。在28分钟内确定了在120分钟内[1,6- 13 C 2 ]葡萄糖输注过程中 13 C标签掺入谷氨酸C4和C3的位置天龄的大白鼠(n = 4)在9.4T下使用局部直接检测的体内 13 C MRS进行α-氯醛糖镇静。使用一室代谢模型测定的三羧酸循环活性速率(V TCA )为0.67±0.13μmol/ g / min,该值与以前的离体研究相当。该方法为在小动物中使用 13 C MRS进行体内脑代谢率测量提供了途径。

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