Lomneth R, Gruenstein E I
Department of Biochemistry and Molecular Biology, University of Cincinnati Medical School, Ohio 45267-0522.
Am J Physiol. 1989 Oct;257(4 Pt 1):C817-24. doi: 10.1152/ajpcell.1989.257.4.C817.
Swelling of astrocytes in the brain is a major cause of the morbidity and mortality associated with stroke and head trauma. Using a human astrocytoma cell line (UC-11MG) as a model system, we studied cell volume changes caused by ATP depletion under conditions mimicking hypoxia. ATP levels were reduced to less than 10% of control using the metabolic inhibitors KCN or antimycin in combination with glucose deprivation. This was sufficient to eliminate ouabain-sensitive 86Rb+ uptake, indicating the Na+-K+-adenosinetriphosphatase was not operating. Furosemide-sensitive 86Rb+ uptake was reduced by approximately 60%, indicating Na+-K+-2Cl- cotransport was also sensitive to ATP loss. ATP depletion resulted in a 30-40% reduction of cell volume within 60 min. ATP depletion also resulted in a net loss of intracellular K+. This loss of K+ could be blocked by Ba2+, indicating the K+ loss was through a conductive channel. When the net K+ loss was blocked by Ba2+, the volume decrease was also prevented. The cells remained viable throughout the time period as judged by exclusion of ethidium bromide by 99% of the cells and recovery of ATP levels to 75% of control within 60 min. We conclude that ATP depletion, following inhibition of glycolysis and oxidative phosphorylation, causes astrocytes to shrink because of a more rapid loss of K+ than uptake of Na+. Thus it appears that ATP depletion alone is not sufficient to account for the rapid phase of astrocytic swelling observed during cerebral ischemia.
脑内星形胶质细胞肿胀是与中风和头部创伤相关的发病和死亡的主要原因。我们使用人星形细胞瘤细胞系(UC - 11MG)作为模型系统,研究了在模拟缺氧条件下ATP耗竭引起的细胞体积变化。使用代谢抑制剂KCN或抗霉素结合葡萄糖剥夺,将ATP水平降低至对照的10%以下。这足以消除哇巴因敏感的86Rb +摄取,表明钠钾ATP酶未起作用。速尿敏感的86Rb +摄取减少了约60%,表明钠钾氯共转运也对ATP丧失敏感。ATP耗竭导致60分钟内细胞体积减少30 - 40%。ATP耗竭还导致细胞内钾净流失。这种钾流失可被Ba2 +阻断,表明钾流失是通过一个传导通道。当Ba2 +阻断钾净流失时,体积减少也得到阻止。通过99%的细胞排除溴化乙锭以及60分钟内ATP水平恢复到对照的75%判断,细胞在整个时间段内保持存活。我们得出结论,在糖酵解和氧化磷酸化受到抑制后,ATP耗竭导致星形胶质细胞收缩,因为钾的流失比钠的摄取更快。因此,似乎仅ATP耗竭不足以解释脑缺血期间观察到的星形胶质细胞肿胀的快速阶段。