首页> 美国卫生研究院文献>Proceedings of the Japan Academy. Series B Physical and Biological Sciences >Conversion of brain cytosol profile from fetal to adult type during the perinatal period: Taurine-NAA exchange
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Conversion of brain cytosol profile from fetal to adult type during the perinatal period: Taurine-NAA exchange

机译:围产期从胎儿型到成人型的脑细胞溶胶谱转换:牛磺酸-NAA交换

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摘要

Mammals face drastic environmental changes at birth. Appropriate adjustments of various systems must take place rapidly to accommodate this once in a life time event. The brain undergoes significant adjustments as well, the most obvious of which is in its need to meet the drastic increase in energy consumption at the neuronal cell membrane due to the explosive increase in neural activities after birth. Actual changes were found to be taken place in two systems, namely, acid base balance control and cytosolic energy transport. The adjustments are accomplished by converting cytosol microenvironment from a taurine rich fetal type environment to an N-acetyl-aspartate (NAA) rich adult type environment during the post-natal period. High concentrations of taurine are necessary to provide effective buffering in the fetal brain, because the fetus cannot utilize the adult type of pCO2 dependent acid–base balance control system, namely respiration driven pCO2 changes. To accommodate the significantly higher demand of energy consumption at the membrane due to the increased neuronal activities, taurine has to be replaced by NAA, since the latter facilitates HEP transport from mitochondria to the membrane by passive diffusion.
机译:哺乳动物在出生时面临着剧烈的环境变化。必须迅速进行各种系统的适当调整,以在生命周期中一次适应这种情况。大脑也经历了重大的调整,最明显的是由于出生后神经活动的爆炸性增加,需要满足神经元细胞膜能量消耗的急剧增加。发现实际的变化发生在两个系统中,即酸碱平衡控制和胞质能量传递。通过在出生后将胞浆微环境从富含牛磺酸的胎儿型环境转变为富含N-乙酰天冬氨酸(NAA)的成人型环境来完成调整。高浓度的牛磺酸是在胎儿大脑中提供有效缓冲所必需的,因为胎儿无法利用成年类型的依赖pCO2的酸碱平衡控制系统,即呼吸驱动的pCO2变化。为了适应由于增加的神经元活动而引起的膜能量消耗的显着更高的需求,牛磺酸必须被NAA代替,因为后者可以促进HEP通过被动扩散从线粒体到膜的运输。

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