The metabolism of 14C-glucose by neurons and astrocytes in brain subregions following focal cerebral ischemia in rats

被引:32
作者
Thoren, AE
Helps, SC
Nilsson, M
Sims, NR
机构
[1] Flinders Univ S Australia, Sch Med, Dept Med Biochem, Adelaide, SA 5001, Australia
[2] Flinders Univ S Australia, Ctr Neurosci, Adelaide, SA 5001, Australia
[3] Univ Gothenburg, Inst Clin Neurosci, Arvid Carlsson Inst Neurosci, Gothenburg, Sweden
关键词
astrocytes; energy metabolites; focal ischemia; glucose metabolism; lactate; neurons;
D O I
10.1111/j.1471-4159.2006.03778.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To provide insights into the effects of temporary focal ischemia on the function of neurons and astrocytes in vivo, we measured the incorporation of radiolabel from [U-C-14]glucose into both glutamate and glutamine in brain subregions at 1 h of reperfusion following occlusion of the middle cerebral artery for 2 or 3 h. Under the experimental conditions used, C-14-glutamate is mainly produced in neurons whereas C-14-glutamine is generated in astrocytes from C-14-glutamate of both neuronal and astrocytic origin. Radiolabel incorporation into both amino acids was greatly decreased. The change in C-14-glutamate accumulation provides strong evidence for substantial reductions in neuronal glucose metabolism. The resulting decrease in delivery of C-14-glutamate from the neurons to astrocytes was probably also the major contributor to the change in C-14-glutamine content. These alterations probably result in part from a marked depression of glycolytic activity in the neurons, as suggested by previous studies assessing deoxyglucose utilization. Alterations in C-14-glucose metabolism were not restricted to tissue that would subsequently become infarcted. Thus, these changes did not inevitably lead to death of the affected cells. The ATP : ADP ratio and phosphocreatine content were essentially preserved during recirculation following 2 h of ischemia and showed at most only moderate losses in some subregions following 3 h of ischemia. This retention of energy reserves despite the decreases in C-14-glucose metabolism in neurons suggests that energy needs were substantially reduced in the post-ischemic brain. Marked increases in tissue lactate accumulation during recirculation, particularly following 3 h of ischemia, provided evidence that impaired pyruvate oxidation probably also contributed to the altered C-14-glucose metabolism. These findings indicate the presence of complex changes in energy metabolism that are likely to greatly influence the responses of neurons and astrocytes to temporary focal ischemia.
引用
收藏
页码:968 / 978
页数:11
相关论文
共 50 条
  • [41] Uncoupling Protein 2 (UCP2) Function in the Brain as Revealed by the Cerebral Metabolism of (1-13C)-Glucose
    Contreras, Laura
    Rial, Eduardo
    Cerdan, Sebastian
    Satrustegui, Jorgina
    NEUROCHEMICAL RESEARCH, 2017, 42 (01) : 108 - 114
  • [42] Effects of 17 beta-estradiol on glucose transporter 1 expression and endothelial cell survival following focal ischemia in the rats
    Shi, J
    Zhang, YQ
    Simpkins, JW
    EXPERIMENTAL BRAIN RESEARCH, 1997, 117 (02) : 200 - 206
  • [43] The role of glucose in brain injury following the combination of lipopolysaccharide or lipoteichoic acid and hypoxia-ischemia in neonatal rats
    Eklind, S
    Arvidsson, P
    Hagberg, H
    Mallard, C
    DEVELOPMENTAL NEUROSCIENCE, 2004, 26 (01) : 61 - 67
  • [44] Regional changes in cerebral extracellular glucose and lactate concentrations following severe cortical impact injury and secondary ischemia in rats
    Krishnappa, IK
    Contant, CF
    Robertson, CS
    JOURNAL OF NEUROTRAUMA, 1999, 16 (03) : 213 - 224
  • [45] Metabolism of [1,6-13C]glucose in the cerebellum of 18-day-old rats: Comparison with cerebral metabolism
    Ferreira, Gustavo C.
    Karimi, Arman J.
    Waddell, Jaylyn
    McKenna, Mary C.
    JOURNAL OF NEUROCHEMISTRY, 2021, 157 (06) : 1946 - 1962
  • [46] Inhibition of nitric oxide synthase with 7-nitroindazole does not modify early metabolic recovery following focal cerebral ischemia in rats
    Helps, Stephen C.
    Sims, Neil R.
    NEUROCHEMICAL RESEARCH, 2007, 32 (4-5) : 663 - 670
  • [47] Inhibition of Nitric Oxide Synthase with 7-Nitroindazole does not Modify Early Metabolic Recovery Following Focal Cerebral Ischemia in Rats
    Stephen C. Helps
    Neil R. Sims
    Neurochemical Research, 2007, 32 : 663 - 670
  • [48] Induction of vascular endothelial growth factor receptor-3 expression in perivascular cells of the ischemic core following focal cerebral ischemia in rats
    Shin, Yoo-Jin
    Park, Jang-Mi
    Cho, Jeong Min
    Cha, Jung-Ho
    Kim, Seong Yun
    Lee, Mun-Yong
    ACTA HISTOCHEMICA, 2013, 115 (02) : 170 - 177
  • [49] Effects of constraint-induced movement therapy on brain glucose metabolism in a rat model of cerebral ischemia: a micro PET/CT study
    Li, Ying-Ying
    Zhang, Bei
    Yu, Ke-Wei
    Li, Ce
    Xie, Hong-Yu
    Bao, Wei-Qi
    Kong, Yan-Yan
    Jiao, Fang-Yang
    Guan, Yi-Hui
    Bai, Yu-Long
    INTERNATIONAL JOURNAL OF NEUROSCIENCE, 2018, 128 (08) : 736 - 745
  • [50] Spatio-Temporal Distribution of Inflammatory Reaction and Expression of TLR2/4 Signaling Pathway in Rat Brain Following Permanent Focal Cerebral Ischemia
    Tu, Xian-kun
    Yang, Wei-zhong
    Shi, Song-sheng
    Wang, Chun-hua
    Zhang, Guo-liang
    Ni, Tian-rui
    Chen, Chun-mei
    Wang, Rui
    Jia, Jian-wen
    Song, Qi-min
    NEUROCHEMICAL RESEARCH, 2010, 35 (08) : 1147 - 1155