ISCHEMIC BRAIN SLICE GLUCOSE-UTILIZATION - EFFECTS OF SLICE THICKNESS, ACIDOSIS, AND K+

被引:26
作者
NEWMAN, GC [1 ]
HOSPOD, FE [1 ]
SCHISSEL, SL [1 ]
机构
[1] VET ADM MED CTR,NEUROL SERV,NORTHPORT,NY 11768
关键词
ACIDOSIS; BRAIN SLICE; GLUCOSE UTILIZATION; ISCHEMIA; POTASSIUM;
D O I
10.1038/jcbfm.1991.80
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Brain slices of varying thickness were used to modify retention of metabolic products in an in vitro model of ischemia. Past and present results reveal increased anaerobic glycolysis in 660-mu-m slices with accumulation of lactate as slice thickness reaches 1,000-um-m. Brain slice glucose utilization and lactate content were measured in buffers of various extracellular K + levels and pH in 540-, 660-, and 1,000-mu-m slices. Acidosis suppresses glucose utilization at all slice thickness without affecting tissue lactate. Studies of 2-deoxyglucose metabolites establish that the suppression of glucose utilization by acidosis is due entirely to inhibition of glucose phosphorylation without any effect on glucose uptake into tissue. The inhibition is reversible after 45 min at pH 6.1. The experiments with acidosis also suggest that persistent energy demands continue to stimulate phosphofructokinase despite the low pH so that glycolysis continues, with potential for injury. Increasing K + increases glucose utilization and tissue lactate at all three thicknesses. Correlations of glucose utilization with lactate accumulation support the possibility that high K + may exert a dual influence on the tissue metabolism, not only stimulating glucose utilization by inducing depolarization but also by influencing the removal of metabolic products.
引用
收藏
页码:398 / 406
页数:9
相关论文
共 49 条
[11]   ANOXIA INCREASES POTASSIUM CONDUCTANCE IN HIPPOCAMPAL NERVE-CELLS [J].
HANSEN, AJ ;
HOUNSGAARD, J ;
JAHNSEN, H .
ACTA PHYSIOLOGICA SCANDINAVICA, 1982, 115 (03) :301-310
[12]   EXTRACELLULAR PH, POTASSIUM, AND CALCIUM ACTIVITIES IN PROGRESSIVE ISCHEMIA OF RAT CORTEX [J].
HARRIS, RJ ;
SYMON, L .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1984, 4 (02) :178-186
[13]   CATION ACTIVITIES IN REVERSIBLE ISCHEMIA OF CAT BRAIN [J].
HOSSMANN, KA ;
SAKAKI, S ;
ZIMMERMANN, V .
STROKE, 1977, 8 (01) :77-81
[14]   CALCIUM AND LONG-TERM TRANSMISSION DAMAGE FOLLOWING ANOXIA IN DENTATE GYRUS AND CA1 REGIONS OF THE RAT HIPPOCAMPAL SLICE [J].
KASS, IS ;
LIPTON, P .
JOURNAL OF PHYSIOLOGY-LONDON, 1986, 378 :313-334
[15]   PROLONGED EXPOSURE TO HIGH POTASSIUM CONCENTRATION RESULTS IN IRREVERSIBLE LOSS OF SYNAPTIC TRANSMISSION IN HIPPOCAMPAL TISSUE-SLICES [J].
KAWASAKI, K ;
CZEH, G ;
SOMJEN, GG .
BRAIN RESEARCH, 1988, 457 (02) :322-329
[16]   P-31 NUCLEAR MAGNETIC-RESONANCE ANALYSIS OF BRAIN .2. EFFECTS OF OXYGEN DEPRIVATION ON ISOLATED PERFUSED AND NONPERFUSED RAT-BRAIN [J].
KOPP, SJ ;
KRIEGLSTEIN, J ;
FREIDANK, A ;
RACHMAN, A ;
SEIBERT, A ;
COHEN, MM .
JOURNAL OF NEUROCHEMISTRY, 1984, 43 (06) :1716-1731
[17]   HYDROGEN-ION BUFFERING DURING COMPLETE BRAIN ISCHEMIA [J].
KRAIG, RP ;
PULSINELLI, WA ;
PLUM, F .
BRAIN RESEARCH, 1985, 342 (02) :281-290
[18]   HYDROGEN-IONS KILL BRAIN AT CONCENTRATIONS REACHED IN ISCHEMIA [J].
KRAIG, RP ;
PETITO, CK ;
PLUM, F ;
PULSINELLI, WA .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1987, 7 (04) :379-386
[19]  
LEBLOND J, 1989, J NEUROPHYSIOL, V62, P1
[20]   PO-2-DEPENDENT DISTRIBUTION OF POTASSIUM IN HIPPOCAMPAL SLICES OF THE GUINEA-PIG [J].
LIPINSKI, HG ;
BINGMANN, D .
BRAIN RESEARCH, 1986, 380 (02) :267-275