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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Dynamic measurements of cerebral pentose phosphate pathway activity in vivo using (1,6-13C2,6,6-2H2)glucose and microdialysis.
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Dynamic measurements of cerebral pentose phosphate pathway activity in vivo using (1,6-13C2,6,6-2H2)glucose and microdialysis.

机译:使用(1,6-13C2,6,6-2H2)葡萄糖和微透析技术动态测量体内脑戊糖磷酸途径的活性。

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Cerebral pentose phosphate pathway (PPP) activity has been linked to NADPH-dependent anabolic pathways, turnover of neurotransmitters, and protection from oxidative stress. Research on this potentially important pathway has been hampered, however, because measurement of regional cerebral PPP activity in vivo has not been possible. Our efforts to address this need focused on the use of a novel isotopically substituted glucose molecule, [1,6-13C2,6,6-2H2]glucose, in conjunction with microdialysis techniques, to measure cerebral PPP activity in vivo, in freely moving rats. Metabolism of [1,6-13C2,6,6-2H2]glucose through glycolysis produces [3-13C]lactate and [3-13C,3,3-2H2]lactate, whereas metabolism through the PPP produces [3-13C,3,3-2H2]lactate and unlabeled lactate. The ratios of these lactate isotopomers can be quantified using gas chromatography/mass spectrometry (GC/MS) for calculation of PPP activity, which is reported as the percentage of glucose metabolized to lactate that passed through the PPP. Following addition of [1,6-13C2,6,6-2H2]glucose to the perfusate, labeled lactate was easily detectable in dialysate using GC/MS. Basal forebrain and intracerebral 9L glioma PPP values (mean +/- SD) were 3.5 +/- 0.4 (n = 4) and 6.2 +/- 0.9% (n = 4), respectively. Furthermore, PPP activity could be stimulated in vivo by addition of phenazine methosulfate, an artificial electron acceptor for NADPH, to the perfusion stream. These results show that the activity of the PPP can now be measured dynamically and regionally in the brains of conscious animals in vivo.
机译:脑戊糖磷酸途径(PPP)的活性已与NADPH依赖的合成代谢途径,神经递质的更新和氧化应激的保护相关联。但是,由于无法在体内测量区域性脑PPP活性,因此阻碍了对该潜在重要途径的研究。为了满足这一需求,我们的工作集中在使用新型同位素取代的葡萄糖分子[1,6-13C2,6,6-2H2]葡萄糖结合微透析技术来测量自由移动的体内脑PPP活性大鼠。通过糖酵解代谢[1,6-13C2,6,6-2H2]葡萄糖产生[3-13C]乳酸和[3-13C,3,3-2H2]乳酸,而通过PPP代谢产生[3-13C, 3,3-2H2]乳酸和未标记的乳酸。可以使用气相色谱/质谱法(GC / MS)定量这些乳酸同工异构体的比例,以计算PPP活性,该活性报告为通过PPP代谢为乳酸的葡萄糖的百分比。向灌注液中添加[1,6-13C2,6,6-2H2]葡萄糖后,可以使用GC / MS在透析液中轻松检测到标记的乳酸。基底前脑和脑内9L胶质瘤PPP值(平均+/- SD)分别为3.5 +/- 0.4(n = 4)和6.2 +/- 0.9%(n = 4)。此外,可以通过向灌注流中添加甲磺酸吩嗪(NADPH的人工电子受体)在体内刺激PPP活性。这些结果表明,现在可以在体内清醒动物的大脑中动态和局部地测量PPP的活性。

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