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参与脑钙和钾稳态的血脑屏障机制。

Blood-brain barrier mechanisms involved in brain calcium and potassium homeostasis.

作者信息

Keep R F, Ulanski L J, Xiang J, Ennis S R, Lorris Betz A

机构信息

Department of Surgery (Neurosurgery), University of Michigan, R5605 Kresge I, Ann Arbor, MI 48109-0532,

出版信息

Brain Res. 1999 Jan 9;815(2):200-5. doi: 10.1016/s0006-8993(98)01155-x.

Abstract

This study examined the potential roles of the plasma membrane Ca2+-ATPase (PMCA) at the blood-CSF and blood-brain barriers in brain Ca2+ homeostasis and blood-brain barrier Na+/K+-ATPase subunits in brain K+ homeostasis. During dietary-induced hypo- and hypercalcemia (0.59+/-0.06 and 1.58+/-0.12 mM [Ca2+]) there was no significant change in choroid plexus PMCA (Western Blots) compared to normocalcemic rats (plasma [Ca2+]: 1.06+/-0.11 mM). In contrast, PMCA in cerebral microvessels isolated from hypocalcemic rats was 150% greater than that in controls (p<0.001). Comparison of the alpha3 subunit of Na+/K+-ATPase from cerebral microvessels isolated from hypo-, normo- and hyperkalemic rats (2.3+/-0.1, 3.9+/-0.1 and 7. 2+/-0.6 mM [K+]) showed a 75% reduction in the amount of this isoform during hyperkalemia. None of the other Na+/K+-ATPase isoforms varied with plasma [K+]. These results suggest that both PMCA and the alpha3 subunit of Na+/K+-ATPase at the blood-brain barrier play a role in maintaining a constant brain microenvironment during fluctuations in plasma composition.

摘要

本研究探讨了血脑屏障和血脑脊液屏障处的质膜Ca2+ -ATP酶(PMCA)在脑Ca2+ 稳态中的潜在作用,以及血脑屏障Na+/K+-ATP酶亚基在脑K+ 稳态中的潜在作用。在饮食诱导的低钙血症和高钙血症期间([Ca2+]分别为0.59±0.06和1.58±0.12 mM),与正常血钙大鼠(血浆[Ca2+]:1.06±0.11 mM)相比,脉络丛PMCA(蛋白质免疫印迹法)无显著变化。相反,从低钙血症大鼠分离的脑微血管中的PMCA比对照组高150%(p<0.001)。对从低钾血症、正常血钾和高钾血症大鼠([K+]分别为2.3±0.1、3.9±0.1和7.2±0.6 mM)分离的脑微血管中Na+/K+-ATP酶α3亚基的比较显示,在高钾血症期间该亚型的量减少了75%。其他Na+/K+-ATP酶亚型均不随血浆[K+]变化。这些结果表明,血脑屏障处的PMCA和Na+/K+-ATP酶α3亚基在血浆成分波动期间维持恒定的脑微环境中均发挥作用。

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