首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Kinetic study of benzyl 1-14Cacetate as a potential probe for astrocytic energy metabolism in the rat brain: Comparison with benzyl 2-14Cacetate
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Kinetic study of benzyl 1-14Cacetate as a potential probe for astrocytic energy metabolism in the rat brain: Comparison with benzyl 2-14Cacetate

机译:乙酸苄基1-14C作为大鼠脑中星形细胞能量代谢的潜在探针的动力学研究:与乙酸苄基2-14C的比较

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摘要

Brain uptake of [14C]acetate has been reported to be a useful marker of astrocytic energy metabolism. In addition to uptake values, the rate of radiolabeled acetate washout from the brain appears to reflect CO2 exhaustion and oxygen consumption in astrocytes. We measured the time–radioactivity curves of benzyl [1-14C]acetate ([1-14C]BA), a lipophilic probe of [1-14C]acetate, and compared it with that of benzyl [2-14C]acetate ([2-14C]BA) in rat brains. The highest brain uptake was observed immediately after injecting either [1-14C]BA or [2-14C]BA, and both subsequently disappeared from the brain in a single-exponential manner. Estimated [1-14C]BA washout rates in the cerebral cortex and cerebellum were higher than those of [2-14C]BA. These results suggested that [1-14C]BA could be a useful probe for estimating the astrocytic oxidative metabolism. The [1-14C]BA washout rate in the cerebral cortex of immature rats was lower than that of mature rats. An autoradiographic study showed that the washout rates of [1-14C]BA from the rat brains of a lithium–pilocarpine-induced status epilepticus model were not significantly different from the values in control rat brains except for the medial septal nucleus. These results implied that the enhancement of amino acid turnover rate rather than astrocytic oxidative metabolism was increased in status epilepticus.
机译:据报道大脑摄取[ 14 C]乙酸盐是星形细胞能量代谢的有用标志。除了摄取值以外,放射性标记的醋酸盐从大脑中清除的速率似乎还反映了星形胶质细胞中的CO2消耗和氧气消耗。我们测量了[1- 14 C]乙酸苄酯([1- 14 C] BA)的时间-放射性曲线,这是一种[1- 14 C]乙酸酯,并将其与大鼠脑中[2- 14 C]乙酸苄酯([2- 14 C] BA)进行比较。注射[1- 14 C] BA或[2- 14 C] BA后立即观察到最高的大脑摄取,随后两者都一次消失。指数的方式。估计[1- 14 C] BA在大脑皮层和小脑的清除率高于[2- 14 C] BA。这些结果表明[1- 14 C] BA可能是估算星形细胞氧化代谢的有用探针。未成熟大鼠大脑皮层中的[1- 14 C] BA清除率低于成熟大鼠。放射自显影研究表明,锂-毛果芸香碱诱发的状态癫痫模型大鼠脑中[1- 14 C] BA的清除率与对照大鼠脑中的值没有显着差异。内侧中隔核。这些结果表明,在癫痫持续状态下氨基酸转换率的提高而不是星形细胞氧化代谢的提高。

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