Ammonia, Like K+, Stimulates the Na+, K+, 2 Cl− Cotransporter NKCC1 and the Na+,K+-ATPase and Interacts with Endogenous Ouabain in Astrocytes

被引:0
作者
Leif Hertz
Liang Peng
Dan Song
机构
[1] China Medical University,Laboratory of Brain Metabolic Diseases, Institute of Metabolic Disease Research and Drug Development
来源
Neurochemical Research | 2015年 / 40卷
关键词
Ammonia; Astrocyte; Na; ,K; -ATPase; NKCC1 cotransporter; Potassium; Cell swelling;
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学科分类号
摘要
Brain edema during hepatic encephalopathy or acute liver failure as well as following brain ischemia has a multifactorial etiology, but it is a dangerous and occasionally life-threatening complication because the brain is enclosed in the rigid skull. During ischemia the extracellular K+ concentration increases to very high levels, which when energy becomes available during reperfusion stimulate NKCC1, a cotransporter driven by the transmembrane ion gradients established by the Na+,K+-ATPase and accumulating Na+, K+ and 2 Cl− together with water. This induces pronounced astrocytic swelling under pathologic conditions, but NKCC1 is probably also activated, although to a lesser extent, during normal brain function. Redistribution of ions and water between extra- and intracellular phases does not create brain edema, which in addition requires uptake across the blood–brain barrier. During hepatic encephalopathy and acute liver failure a crucial factor is the close resemblance between K+ and NH4+ in their effects not only on NKCC1 and Na+,K+-ATPase but also on Na+,K+-ATPase-induced signaling by endogenous ouabains. These in turn activate production of ROS and nitrosactive agents which slowly sensitize NKCC1, explaining why cell swelling and brain edema generally are delayed under hyperammonemic conditions, although very high ammonia concentrations can cause immediate NKCC1 activation.
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页码:241 / 257
页数:16
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共 540 条
[11]  
Matsuoka Y(2010)Ammonium influx pathways into astrocytes and neurones of hippocampal slices J Neurochem 115 1123-1136
[12]  
Hossmann KA(1984)Intense furosemide-sensitive potassium accumulation in astrocytes in the presence of pathologically high extracellular potassium levels J Cereb Blood Flow Metab 4 301-304
[13]  
Jayakumar AR(1989)Potassium-stimulated calcium uptake in astrocytes and its potent inhibition by nimodipine J Neurosci Res 22 209-215
[14]  
Liu M(1991)Effects of potassium on anion and cation contents of primary cultures of mouse astrocytes and neurons Neurochem Res 16 1275-1283
[15]  
Moriyama M(1992)Effect of elevated potassium on the ion content of mouse astrocytes and neurons Can J Physiol Pharmacol 70 S263-S268
[16]  
Ramakrishnan R(2013)Requirement of glycogenolysis for uptake of increased extracellular K Neurochem Res 38 472-485
[17]  
Forbush B(1985) in astrocytes: potential implications for K Brain Res 340 333-340
[18]  
Reddy PV(1985) homeostasis and glycogen usage in brain Brain Res 361 125-134
[19]  
Norenberg MD(2014)Differences in cation transport properties of primary astrocyte cultures from mouse and rat brain Glia 62 608-622
[20]  
Jayakumar AR(2006)Furosemide- and bumetanide-sensitive ion transport and volume control in primary astrocyte cultures from rat brain Am J Physiol Regul Integr Comp Physiol 291 R1-R25