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随着衰老,大鼠脑线粒体和突触体对钙的摄取减少。

Reduced calcium uptake by rat brain mitochondria and synaptosomes in response to aging.

作者信息

Leslie S W, Chandler L J, Barr E M, Farrar R P

出版信息

Brain Res. 1985 Mar 11;329(1-2):177-83. doi: 10.1016/0006-8993(85)90523-2.

Abstract

Synaptosomes were isolated from cerebral cortex of 3-, 18- and 24-month-old male, Fisher 344 rats and 45Ca2+ uptake was measured at 1, 3, 5, 15 and 30 s time periods following 65 mM KCl depolarization. Identical experiments were performed in which 5 mM KCl was added to examine age-related changes in resting 45Ca2+ accumulation by synaptosomes. Both 'fast-' and 'slow-phase' voltage-dependent 45Ca2+ uptake were significantly reduced in synaptosomes from 18- and 24- vs 3-month-old rats. No age-related change in resting (5 mM KCl) 45Ca2+ accumulation was observed. ATP-dependent and respiration-linked 45Ca2+ uptake was examined in mitochondria isolated from whole brains of 3- and 28-month-old male, hooded Long-Evans rats. Both ATP-dependent and glutamate-malate-ADP stimulated 45Ca2+ uptake by mitochondria were markedly reduced in response to aging. Respiratory control ratios were the same for 3- and 28-month-old mitochondria, suggesting that the decrement in 45Ca2+ uptake was not caused by an age-related decline in respiratory activity of mitochondria. The results of this study show that both voltage-dependent calcium entry into presynaptic nerve terminals and calcium uptake by mitochondria in brain decline with advanced aging. Age-related changes in cytosolic calcium levels could underlie, at least in part, cellular decrements in brain observed with aging.

摘要

从3个月、18个月和24个月大的雄性Fisher 344大鼠的大脑皮层中分离出突触体,并在65 mM KCl去极化后的1、3、5、15和30秒时间段测量45Ca2+摄取。进行了相同的实验,其中添加5 mM KCl以检查突触体静息45Ca2+积累的年龄相关变化。与3个月大的大鼠相比,18个月和24个月大的大鼠的突触体中,“快速”和“缓慢”相电压依赖性45Ca2+摄取均显著降低。未观察到静息(5 mM KCl)45Ca2+积累的年龄相关变化。在从3个月和28个月大的雄性带帽Long-Evans大鼠的全脑中分离出的线粒体中,检测了ATP依赖性和呼吸相关的45Ca2+摄取。随着衰老,线粒体对ATP依赖性和谷氨酸-苹果酸-ADP刺激的45Ca2+摄取均显著降低。3个月和28个月大的线粒体的呼吸控制率相同,这表明45Ca2+摄取的减少不是由线粒体呼吸活性的年龄相关下降引起的。本研究结果表明,随着衰老的进展,突触前神经末梢的电压依赖性钙内流和大脑中线粒体的钙摄取均下降。细胞溶质钙水平的年龄相关变化可能至少部分是衰老过程中观察到的大脑细胞功能减退的基础。

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