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首页> 外文期刊>Developmental Neuroscience >Greater resistance and lower contribution of free radicals to hypoxic neurotoxicity in immature rat brain compared to adult brain as revealed by dynamic changes in glucose metabolism.
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Greater resistance and lower contribution of free radicals to hypoxic neurotoxicity in immature rat brain compared to adult brain as revealed by dynamic changes in glucose metabolism.

机译:葡萄糖代谢的动态变化表明,与成年大脑相比,未成熟大鼠大脑中的自由基对缺氧性神经毒性的抵抗力更高,贡献更低。

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Seven-day-old rat brain slices were incubated at 36C in oxygenated Krebs-Ringer solution containing [(18)F]2-fluoro-2-deoxy-D-glucose ([(18)F]FDG), and serial two-dimensional time-resolved images of [(18)F]FDG uptake by the slices were obtained. The Gjedde-Patlak graphical method was applied to the image data, and the duration limit of hypoxia loading that allowed recovery of the fractional rate constant (k3*) of [(18)F]FDG (proportional to the cerebral glucose metabolic rate) after hypoxia loading to the unloaded control level was 50 min, and MK-801 as an N-methyl-D-aspartate antagonist had neuroprotective effects, but PBN as a free radical scavenger was ineffective. In our previous study in adult (7-week-old) rat brains [Murata et al., Exp Neurol 2000, 164:269-279], the limit of the hypoxia loading time was 20 min, and both MK-801 and PBN were effective. In the immature rat brains, the ratio of aerobic glucose metabolism to the total glucose metabolism was low compared with the adult rat brains, suggesting only a slight involvement of free radicals in hypoxic neurotoxicity. These data suggest that the higher resistance of immature brains to hypoxia compared to that of adult brains is attributable to a lower involvement of free radicals due to a lower aerobic glucose metabolic rate.
机译:将七天大的大鼠脑切片在含[(18)F] 2-氟-2-脱氧-D-葡萄糖([(18)F] FDG)和系列2的含氧Krebs-Ringer溶液中于36°C孵育。获得了[(18)F] FDG被切片摄取的三维时间分辨图像。将Gjedde-Patlak图形方法应用于图像数据,并在缺氧负荷持续时间极限后恢复[(18)F] FDG的分数速率常数(k3 *)(与脑葡萄糖代谢率成比例)缺氧负荷至无负荷对照水平为50分钟,作为N-甲基-D-天冬氨酸拮抗剂的MK-801具有神经保护作用,但PBN作为自由基清除剂无效。在我们先前对成年(7周龄)大鼠脑的研究中[Murata等,Exp Neurol 2000,164:269-279],缺氧负荷时间的限制为20分钟,MK-801和PBN是有效的。在未成熟的大鼠大脑中,有氧葡萄糖代谢与总葡萄糖代谢之比与成年大鼠大脑相比较低,这表明自由基对低氧神经毒性的影响很小。这些数据表明,与成年大脑相比,未成熟大脑对缺氧的更高抵抗力归因于较低的有氧葡萄糖代谢率,从而自由基的参与度更低。

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