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电刺激和哇巴因对豚鼠大脑皮层切碎组织中L-[U-¹⁴C]缬氨酸摄取和流出的影响。

The effect of electrical stimulation and ouabain on the uptake and efflux of L-[U-14C] valine in chopped tissue from guinea-pig cerebral cortex.

作者信息

Jones C T, Banks P

出版信息

Biochem J. 1970 Aug;118(5):801-10. doi: 10.1042/bj1180801.

Abstract
  1. Chopped tissue from guinea-pig cerebral cortex carried out an energy-dependent accumulation of l-[(14)C]valine. 2. The uptake was dependent on the extracellular concentration of Na(+) and was markedly inhibited by ouabain (20mum). The extent of the inhibition of uptake by ouabain was also Na(+)-dependent. 3. The accumulation of labelled valine was not directly dependent on the ATP and creatine phosphate contents of the slices. 4. Electrical stimulation increased the rate of [(14)C]valine uptake at first but ultimately led to a net loss of the label so that the amount of label present in the tissue was lower than in the controls. 5. The rate of loss of label during prolonged stimulation was dependent on the extracellular concentration of Na(+). 6. The efflux of labelled valine from slices preloaded at 164mm-Na(+) was studied at 164, 80 and 40mm-Na(+) with and without electrical stimulation or ouabain. 7. Lowering the Na(+) concentration or adding ouabain increased the rate of efflux. 8. Electrical stimulation had little effect on the rate of efflux at first but ultimately led to a more complete loss of label from the tissue than occurred in the control. A kinetic analysis of the efflux curves was attempted.
摘要
  1. 豚鼠大脑皮层的切碎组织对L-[(14)C]缬氨酸进行了能量依赖性积累。2. 摄取依赖于细胞外Na(+)浓度,并被哇巴因(20μM)显著抑制。哇巴因对摄取的抑制程度也依赖于Na(+)。3. 标记缬氨酸的积累并不直接依赖于切片中的ATP和磷酸肌酸含量。4. 电刺激起初增加了[(14)C]缬氨酸的摄取速率,但最终导致标记物净损失,使得组织中存在的标记物量低于对照组。5. 长时间刺激期间标记物的损失速率依赖于细胞外Na(+)浓度。6. 在有或无电刺激或哇巴因的情况下,研究了在164、80和40mM-Na(+)条件下预先加载于164mM-Na(+)的切片中标记缬氨酸的流出。7. 降低Na(+)浓度或添加哇巴因会增加流出速率。8. 电刺激起初对流出速率影响不大,但最终导致组织中标记物的损失比对照组更完全。尝试对流出曲线进行动力学分析。

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