Regional alterations in an excitatory amino-acid transporter, blood flow, and glucose metabolism after middle cerebral artery occlusion in the rat

被引:9
作者
Gomi, S [1 ]
Karp, A [1 ]
Greenberg, JH [1 ]
机构
[1] Univ Penn, Dept Neurol, Cerebrovasc Res Ctr, Philadelphia, PA 19104 USA
关键词
glutamate transporter; cerebral blood flow; cerebral glucose metabolism; focal ischemia; middle cerebral artery occlusion;
D O I
10.1007/s002219900252
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A rise in the extracellular concentration of excitatory amino acids (EAA) plays a pivotal role in ischemic brain injury. EAA concentrations are regulated by uptake mechanisms through high-affinity EAA transporters. Since EAA uptake is energy-dependent, it is a matter of interest to explore the relationship between the EAA transporter and derangement of flow-metabolism during ischemia. We examined the regional changes in EAA transporters after permanent occlusion of the middle cerebral artery in rats by in vitro autoradiography using [H-3]-D-aspartate as a ligand, and correlated these changes to the local cerebral blood flow (LCBF) and local cerebral glucose metabolism (LCMRglc) determined by in vivo double-labeled autoradiography. The values of specific binding of [H-3]-D-aspartate decreased maximally by 20% in the ischemic core. The magnitude of the reduction in specific binding correlated well with the changes in LCBF and LCMRglc. In half of the regions with LCMRglc between 80 and 120% of the intact side, the values of the specific binding were relatively preserved, while in the remainder of the regions in the ischemic hemisphere, with LCMRglc ranging from 40 to 160% of the intact side, there was a reduction in specific binding. These results suggest that energy failure and the related perturbation caused by ischemia can decrease EAA uptake capacity, leading to further deterioration.
引用
收藏
页码:521 / 528
页数:8
相关论文
共 42 条
[1]   MECHANISM OF ARACHIDONIC-ACID LIBERATION DURING ISCHEMIA IN GERBIL CEREBRAL-CORTEX [J].
ABE, K ;
KOGURE, K ;
YAMAMOTO, H ;
IMAZAWA, M ;
MIYAMOTO, K .
JOURNAL OF NEUROCHEMISTRY, 1987, 48 (02) :503-509
[2]   AUTORADIOGRAPHIC CHARACTERIZATION OF PUTATIVE EXCITATORY AMINO-ACID-TRANSPORT SITES [J].
ANDERSON, KJ ;
MONAGHAN, DT ;
BRIDGES, RJ ;
TAVOULARIS, AL ;
COTMAN, CW .
NEUROSCIENCE, 1990, 38 (02) :311-322
[3]   ARACHIDONIC-ACID AS A MESSENGER IN THE CENTRAL-NERVOUS-SYSTEM [J].
ATTWELL, D ;
MILLER, B ;
SARANTIS, M .
SEMINARS IN THE NEUROSCIENCES, 1993, 5 (03) :159-169
[4]   ARACHIDONIC-ACID INDUCES A PROLONGED INHIBITION OF GLUTAMATE UPTAKE INTO GLIAL-CELLS [J].
BARBOUR, B ;
SZATKOWSKI, M ;
INGLEDEW, N ;
ATTWELL, D .
NATURE, 1989, 342 (6252) :918-920
[5]   ELEVATION OF THE EXTRACELLULAR CONCENTRATIONS OF GLUTAMATE AND ASPARTATE IN RAT HIPPOCAMPUS DURING TRANSIENT CEREBRAL-ISCHEMIA MONITORED BY INTRACEREBRAL MICRODIALYSIS [J].
BENVENISTE, H ;
DREJER, J ;
SCHOUSBOE, A ;
DIEMER, NH .
JOURNAL OF NEUROCHEMISTRY, 1984, 43 (05) :1369-1374
[6]   BLOOD-BRAIN-BARRIER PERMEABILITY AND BRAIN CONCENTRATION OF SODIUM, POTASSIUM, AND CHLORIDE DURING FOCAL ISCHEMIA [J].
BETZ, AL ;
KEEP, RF ;
BEER, ME ;
REN, XD .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1994, 14 (01) :29-37
[7]   FOCAL BRAIN ISCHEMIA IN THE RAT - METHODS FOR REPRODUCIBLE NEOCORTICAL INFARCTION USING TANDEM OCCLUSION OF THE DISTAL MIDDLE CEREBRAL AND IPSILATERAL COMMON CAROTID ARTERIES [J].
BRINT, S ;
JACEWICZ, M ;
KIESSLING, M ;
TANABE, J ;
PULSINELLI, W .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1988, 8 (04) :474-485
[8]   CORRELATION BETWEEN AMINO-ACID RELEASE AND NEUROPATHOLOGIC OUTCOME IN RAT-BRAIN FOLLOWING MIDDLE CEREBRAL-ARTERY OCCLUSION [J].
BUTCHER, SP ;
BULLOCK, R ;
GRAHAM, DI ;
MCCULLOCH, J .
STROKE, 1990, 21 (12) :1727-1733
[9]   A MODEL OF FOCAL ISCHEMIC STROKE IN THE RAT - REPRODUCIBLE EXTENSIVE CORTICAL INFARCTION [J].
CHEN, ST ;
HSU, CY ;
HOGAN, EL ;
MARICQ, H ;
BALENTINE, JD .
STROKE, 1986, 17 (04) :738-743
[10]   EXCITOTOXIC CELL-DEATH [J].
CHOI, DW .
JOURNAL OF NEUROBIOLOGY, 1992, 23 (09) :1261-1276