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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Formation of glycerol from glucose in rat brain and cultured brain cells. Augmentation with kainate or ischemia.
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Formation of glycerol from glucose in rat brain and cultured brain cells. Augmentation with kainate or ischemia.

机译:由大鼠脑和培养的脑细胞中的葡萄糖形成甘油。海藻酸盐或局部缺血增强。

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An increase in the concentration of glycerol in the ischemic brain is assumed to reflect degradation of phospholipids of plasma membranes. However, glycerol could, theoretically, be formed from glucose, which after glycolytic conversion to dihydroxyacetone phosphate, could be converted to glycerol-3-phosphate and hence to glycerol. We show here that (13)C-labeled glycerol accumulate in incubation media of cultured cerebellar granule cells and astrocytes incubated with [(13)C]glucose, 3 mmol/L, demonstrating the formation of glycerol from glucose. Co-incubation of cerebellar granule cells with kainate, 50 micromol/L, led to increased glucose metabolism and increased accumulation of [(13)C]glycerol. Accumulation of [(13)C]glycerol and its precursor, [(13)C]glycerol-3-phosphate, was evident in brain, but not in serum, of kainate-treated rats that received [U-(13)C]glucose, 5 micromol/g bodyweight, intravenously and survived for 5 min. Global ischemia induced by decapitation also caused accumulation of [(13)C]glycerol and [(13)C]glycerol-3-phosphate. These results show that glycerol can be formed from glucose in brain; they also demonstrate the existence of a cerebral glycerol-3-phosphatase activity. Ischemia-induced increases in brain glycerol may, in part, reflect an altered metabolism of glucose, in which glycerol formation, like lactate formation, acts as a redox sink.
机译:缺血脑中甘油浓度的增加被认为反映了质膜磷脂的降解。然而,从理论上讲,甘油可以由葡萄糖形成,其在糖酵解转化为磷酸二羟基丙酮之后,可以转化为3-磷酸甘油,从而转化为甘油。我们在这里显示,(13)C标记的甘油在培养的小脑颗粒细胞和星形胶质细胞与[(13)C]葡萄糖,3 mmol / L的孵育培养基中蓄积,证明了从葡萄糖形成甘油。小脑颗粒细胞与海藻酸盐(50微摩尔/升)的共孵育导致葡萄糖代谢增加和[(13C)C]甘油积累增加。 [(13)C]甘油及其前体[(13)C]甘油-3-磷酸的积累在接受[U-(13)C]的海藻酸盐治疗的大鼠的大脑中可见,但在血清中不明显。静脉注射葡萄糖,每毫升体重5微摩尔,存活5分钟。断头引起的全脑缺血也引起[(13C)]甘油和[(13C)]甘油-3-磷酸的积累。这些结果表明甘油可以由脑中的葡萄糖形成。他们还证明了脑甘油3磷酸酶活性的存在。缺血引起的脑甘油增加可能部分反映了葡萄糖代谢的改变,其中甘油的形成(如乳酸的形成)起氧化还原沉的作用。

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