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Fructose-1,6-bisphosphate does not preserve ATP in hypoxic-ischemic neonatal cerebrocortical slices.

机译:1,6-二磷酸果糖不能在缺氧缺血性新生儿脑皮质切片中保留ATP。

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摘要

Fructose-1,6-bisphosphate (FBP), an endogenous intracellular metabolite in glycolysis, was found in many preclinical studies to be neuroprotective during hypoxia-ischemia (HI) when administered exogenously. We looked for HI neuroprotection from FBP in a neonatal rat brain slice model, using 14.1 T (1)H/(31)P/(13)C NMR spectroscopy of perchloric acid slice extracts to ask: 1) if FBP preserves high energy phosphates during HI; and 2) if exogenous [1-(13)C]FBP enters cells and is glycolytically metabolized to [3-(13)C]lactate. We also asked: 3) if substantial superoxide production occurs during and after HI, thinking such might be treatable by exogenous FBP's antioxidant effects. Superfused P7 rat cerebrocortical slices (350 mum) were treated with 2 mM FBP before and during 30 min of HI, and then given 4 h of recovery with an FBP-free oxygenated superfusate. Slices were removed before HI, at the end of HI, and at 1 and 4 h after HI. FBP did not improve high energy phosphate levels or change (1)H metabolite profiles. Large increases in [3-(13)C]lactate were seen with (13)C NMR, but the lactate fractional enrichment was always (1.1+/-0.5)%, implying that all of lactate's (13)C was natural abundance (13)C, that none was from metabolism of (13)C-FBP. FBP had no effect on the fluorescence of ethidium produced from superoxide oxidation of hydroethidine. Compared to control slices, ethidium fluorescence was 25% higher during HI and 50% higher at the end of recovery. Exogenous FBP did not provide protection or enter glycolysis. Its use as an antioxidant might be worth studying at higher FBP concentrations.
机译:在许多临床前研究中发现,果糖-1,6-二磷酸果糖(FBP)是糖酵解中的一种内源性细胞内代谢产物,如果进行外源性给药,在缺氧缺血(HI)期间具有神经保护作用。我们使用高氯酸切片提取物的14.1 T(1)H /(31)P /(13)C NMR光谱法在新生大鼠脑切片模型中寻找FBP的HI神经保护作用,以询问:1)FBP是否保留了高能磷酸盐HI期间; 2)如果外源的[1-(13)C] FBP进入细胞并被糖酵解为[3-(13)C]乳酸盐。我们还问:3)在HI期间和之后是否产生大量的超氧化物,认为外源FBP的抗氧化作用可以解决。在HI之前和30分钟之内,用2 mM FBP处理超融合的P7大鼠脑皮质切片(350毫米),然后用不含FBP的含氧超融合液恢复4 h。在HI之前,HI结束时以及HI后1和4小时将切片取出。 FBP不能提高高能磷酸盐水平或改变(1)H代谢产物的分布。用(13)C NMR可以观察到[3-(13)C]乳酸盐的大量增加,但是乳酸盐的分数富集始终为(1.1 +/- 0.5)%,这意味着所有的乳酸盐(13)C都是自然丰度( 13)C,没有一个是来自(13)C-FBP的代谢。 FBP对氢乙啶超氧化物氧化产生的乙锭的荧光没有影响。与对照切片相比,乙锭荧光在HI期间高25%,在恢复结束时高50%。外源性FBP不提供保护或进入糖酵解。在较高的FBP浓度下,将其用作抗氧化剂可能值得研究。

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