POTASSIUM-DEPENDENT CALCIUM INFLUX IN ACUTELY ISOLATED HIPPOCAMPAL ASTROCYTES

被引:75
作者
DUFFY, S [1 ]
MACVICAR, BA [1 ]
机构
[1] UNIV CALGARY,DEPT NEUROSCI,CALGARY T2N 4N1,AB,CANADA
基金
英国医学研究理事会;
关键词
D O I
10.1016/0306-4522(94)90059-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Potassium depolarization can increase the intracellular ionized calcium concentration ([Ca2+](i)) of cultured astrocytes, but it is not known if astrocytes that have matured in the intact CNS also exhibit voltage-dependent [Ca2+](i) signalling. To address this issue, fluorometric measurements of [Ca2+](i) were obtained from astrocytes acutely isolated from young adult rat hippocampus. In control artificial cerebrospinal fluid containing 5 mM [K+](0), average resting [Ca2+](i) was 195 nM. Elevation of [K+](0) to 50 mM caused [Ca2+](i) to increase 150 nM to 1 mu M above resting levels. The threshold [K+](0) necessary to evoke an elevation in [Ca2+](i) was 20-25 mM, and the magnitude of the [Ca2+](i) signal grew progressively with increasing [K+](0) (up to 50 mM). These [Ca2+](i) increases were blocked completely by removal of external Ca2+, and markedly suppressed by the calcium channel blockers verapamil (30 mu M and greater) and Co2+ (1 mM). Neither reversal of Na+-Ca2+ exchange, nor Ca2+-activated Ca2+ release, nor Ca2+ influx through stretch-activated channels contributed to the [Ca2+](i) increase. These results suggest that [K+](0)-evoked [Ca2+](i) signals are mediated by influx through voltage-gated calcium channels. In contrast to results from cultured astrocytes and acutely isolated neurons, these [Ca2+](i) increases were insensitive to dihydropyridine compounds. We conclude that increases in interstitial [K+], observed in situ during several pathological conditions, trigger voltage-dependent [Ca-2+](i) signals in astroglial cells. This may constitute an important form of neuron-to-glial communication.
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页码:51 / 61
页数:11
相关论文
共 52 条
[1]  
ARBONES L, 1990, MOL PHARMACOL, V37, P921
[2]   POTASSIUM ACTIVITY IN CEREBRAL-CORTEX IN RATS DURING PROGRESSIVE SEVERE HYPOGLYCEMIA [J].
ASTRUP, J ;
NORBERG, K .
BRAIN RESEARCH, 1976, 103 (02) :418-423
[3]   CALCIUM CALMODULIN-DEPENDENT PROTEIN-KINASE ACTIVITY IN PRIMARY ASTROCYTE CULTURES [J].
BABCOCKATKINSON, E ;
NORENBERG, MD ;
NORENBERG, LOB ;
NEARY, JT .
GLIA, 1989, 2 (02) :112-118
[4]  
BARRES BA, 1989, J NEUROSCI, V9, P3169
[5]   ION CHANNEL EXPRESSION BY WHITE MATTER GLIA - THE TYPE-1 ASTROCYTE [J].
BARRES, BA ;
KOROSHETZ, WJ ;
CHUN, LLY ;
COREY, DP .
NEURON, 1990, 5 (04) :527-544
[6]   KINETICS OF EXTRACELLULAR POTASSIUM CHANGES DURING HYPOXIA AND ANOXIA IN CAT CEREBRAL-CORTEX [J].
BLANK, WF ;
KIRSHNER, HS .
BRAIN RESEARCH, 1977, 123 (01) :113-124
[7]   ELECTROPHYSIOLOGICAL PROPERTIES OF REACTIVE GLIAL-CELLS IN THE KAINATE-LESIONED HIPPOCAMPAL SLICE [J].
BURNARD, DM ;
CRICHTON, SA ;
MACVICAR, BA .
BRAIN RESEARCH, 1990, 510 (01) :43-52
[8]   EFFECTS OF EXTRACELLULAR POTASSIUM ON GLYCOGEN STORES OF ASTROCYTES INVITRO [J].
CAMBRAYDEAKIN, M ;
PEARCE, B ;
MORROW, C ;
MURPHY, S .
JOURNAL OF NEUROCHEMISTRY, 1988, 51 (06) :1846-1851
[9]   EXTRACELLULAR POTASSIUM INFLUENCES DNA AND PROTEIN SYNTHESES AND GLIAL FIBRILLARY ACIDIC PROTEIN EXPRESSION IN CULTURED GLIAL-CELLS [J].
CANADY, KS ;
ALIOSMAN, F ;
RUBEL, EW .
GLIA, 1990, 3 (05) :368-374
[10]  
CLARK B, 1992, J NEUROSCI, V12, P664