Astrocytic contributions to bioenergeties of cerebral ischemia

被引:125
作者
Dienel, GA [1 ]
Hertz, L
机构
[1] Univ Arkansas Med Sci, Dept Neurol, Slot 830,4301 W Markham St,Shorey Bldg,Room 715, Little Rock, AR 72205 USA
[2] China Med Univ, Coll Basic Med Sci, Shenyang, Peoples R China
关键词
astrocyte; oxygen-glucose deprivation; ischemia; lactate; energetics;
D O I
10.1002/glia.20157
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
Astrocytes are multifunctional cells that interact with neurons and other astrocytes in signaling and metabolic functions, and their resistance to pathophysiological conditions can help restrict loss of tissue after an ischemic event provided adequate nutrients are supplied to support their requirements. Astrocytes have substantial oxidative capacity and mechanisms to upregulate glycolytic capability when respiration is impaired. An astrocytic enzyme that synthesizes a powerful activator of glycolysis is not present in neurons, endowing astrocytes with the ability to sustain ATP production under restrictive conditions. The monocarboxylic acid transporter (MCT) isoforms predominating in astrocytes are optimized to facilitate very large increases in lactate flux as lactate concentration increases within (1-3 mM) and above (> 3 mM) the normal range. In sharp contrast, the major neuronal MCT serves as a barrier to increased transmembrane transport as lactate rises above 1 mM, restricting both entry and efflux. Lactate can serve as fuel during recovery from ischemia but direct evidence that lactate is oxidized by neurons (vs. astrocytes) to maintain synaptic function is lacking. Astrocytes have critical roles in regulation of ionic homeostasis and control of extracellular glutamate levels, and spreading depression associated with ischemia places high demands on energy supplies in astrocytes and contributes to metabolic exhaustion and demise. Disruption of Ca2+ homeostasis, generation of oxygen free radicals and nitric oxide, and mitochondrial depolarization contribute to astrocyte death during and after a metabolic insult. Novel pharmaceutical agents targeted to astrocytes and hyperoxic therapy that restores penumbral oxygen level during energy failure might improve postischemic outcome. (c) 2005 Wiley-Liss, Inc.
引用
收藏
页码:362 / 388
页数:27
相关论文
共 340 条
[1]
REDISTRIBUTION OF GLUTAMATE AND GLUTAMINE IN SLICES OF HUMAN NEOCORTEX EXPOSED TO COMBINED HYPOXIA AND GLUCOSE DEPRIVATION INVITRO [J].
AAS, JE ;
BERGJOHNSEN, J ;
HEGSTAD, E ;
LAAKE, JH ;
LANGMOEN, IA ;
OTTERSEN, OP .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1993, 13 (03) :503-515
[2]
HYPOGLYCEMIC BRAIN INJURY .1. METABOLIC AND LIGHT MICROSCOPIC FINDINGS IN RAT CEREBRAL-CORTEX DURING PROFOUND INSULIN-INDUCED HYPOGLYCEMIA AND IN THE RECOVERY PERIOD FOLLOWING GLUCOSE-ADMINISTRATION [J].
AGARDH, CD ;
KALIMO, H ;
OLSSON, Y ;
SIESJO, BK .
ACTA NEUROPATHOLOGICA, 1980, 50 (01) :31-41
[3]
N-METHYL-D-ASPARTATE ANTAGONISTS - READY FOR CLINICAL-TRIAL IN BRAIN ISCHEMIA [J].
ALBERS, GW ;
GOLDBERG, MP ;
CHOI, DW .
ANNALS OF NEUROLOGY, 1989, 25 (04) :398-403
[4]
Nitric oxide switches on glycolysis through the AMP protein kinase and 6-phosphofructo-2-kinase pathway [J].
Almeida, A ;
Moncada, S ;
Bolaños, JP .
NATURE CELL BIOLOGY, 2004, 6 (01) :45-U9
[5]
AMERMORI T, 1986, NEUROSCI LETT, V71, P323
[6]
Effects of glucose and PaO2 modulation on cortical intracellular acidosis, NADH redox state, and infarction in the ischemic penumbra [J].
Anderson, RE ;
Tan, WK ;
Martin, HS ;
Meyer, FB .
STROKE, 1999, 30 (01) :160-170
[7]
[Anonymous], ADV MOL CEL
[8]
The effect of potassium on the glucolysis of brain tissue with reference to the Pasteur effect. [J].
Ashford, CA ;
Dixon, KC .
BIOCHEMICAL JOURNAL, 1935, 29 :157-168
[9]
LACTATE COMPARTMENTATION IN HIPPOCAMPAL SLICES - EVIDENCE FOR A TRANSPORTER [J].
ASSAF, HM ;
RICCI, AJ ;
WHITTINGHAM, TS ;
LAMANNA, JC ;
RATCHESON, RA ;
LUST, WD .
METABOLIC BRAIN DISEASE, 1990, 5 (03) :143-154
[10]
SENSITIVITY OF GUINEA-PIG HIPPOCAMPAL GRANULE CELL FIELD POTENTIALS TO HEXOSES INVITRO - AN EFFECT ON CELL EXCITABILITY [J].
BACHELARD, HS ;
COX, DWG ;
DROWER, J .
JOURNAL OF PHYSIOLOGY-LONDON, 1984, 352 (JUL) :91-102