UP-REGULATION OF GLUCOSE-METABOLISM IN KUPFFER CELLS FOLLOWING INFUSION OF TUMOR-NECROSIS-FACTOR

被引:28
作者
SPOLARICS, Z
BAGBY, GJ
LANG, CH
SPITZER, JJ
机构
[1] Department of Physiology, Louisiana State University, Medical Center, New Orleans
关键词
D O I
10.1042/bj2780515
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
Alterations of glucose metabolism and the oxidation of glutamine and palmitate were studied, by using specifically labelled substrates, in freshly isolated Kupffer cells and hepatic endothelial cells after infusion in vivo of human recombinant tumour necrosis factor-alpha (TNF; 7.5 x 10(5) IU/30 min per kg body wt., intravenously). Cells were incubated in a medium containing 5 mM-glucose, 0.4 mM-palmitate, 1 mM-lactate and 0.5 mM-glutamine. Administration of TNF in vivo increased glucose use in Kupffer cells by 70%. Glucose oxidation in the tricarboxylic acid cycle and flux in the Embden-Meyerhof (EM) pathway were elevated by 40 and 80% respectively. Treatment in vitro with 1-mu-M-phorbol 12-myristate 13-acetate (PMA) resulted in a similar percentage increase in glucose use by Kupffer cells prepared from either saline- or TNF-treated rats. However, PMA increased the activity of the hexose monophosphate shunt (HMS) by 3- and 10-fold in cells isolated from saline- or TNF-infused animals respectively. A phagocyte stimulus in vitro, opsonized zymosan, increased glucose use by 30% and doubled the flux through the HMS in Kupffer cells from saline-infused animals. The activity of the HMS in response to zymosan was increased by 400% after TNF treatment. In endothelial cells, basal glucose utilization was not altered by TNF treatment. PMA increased HMS activity in endothelial cells to a similar degree after saline or TNF infusion. Zymosan, however, increased HMS activity only in endothelial cells from TNF-treated rats. Oxidation of palmitate or glutamine was not affected by TNF treatment either under basal conditions or after challenge in vitro. Our data indicate that, after phagocytosis in vitro or protein kinase C activation, glucose use and flux through the HMS increase in Kupffer cells. This is accompanied by increased glycolytic flux, with no changes in glucose oxidation in the tricarboxylic acid cycle. After TNF exposure, followed by a secondary stimulus, the enhanced glucose use by Kupffer cells is primarily channelled through the HMS pathway. These data suggest that the increased glucose use in vivo by Kupffer cells found after immune-stimulated conditions may subserve primarily the increased need for NADPH and HMS intermediates.
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页码:515 / 519
页数:5
相关论文
共 43 条
[1]   GLUTAMINE AND GLUCOSE-METABOLISM IN HUMAN PERIPHERAL LYMPHOCYTES [J].
ARDAWI, MSM .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1988, 37 (01) :99-103
[2]   ACTIVE OXYGEN SPECIES AND THE FUNCTIONS OF PHAGOCYTIC LEUKOCYTES [J].
BADWEY, JA ;
KARNOVSKY, ML .
ANNUAL REVIEW OF BIOCHEMISTRY, 1980, 49 :695-726
[3]  
BAGBY GJ, 1988, CIRC SHOCK, V24, P111
[4]   SUPEROXIDE ANION GENERATION IN THE LIVER DURING THE EARLY STAGE OF ENDOTOXEMIA IN RATS [J].
BAUTISTA, AP ;
MESZAROS, K ;
BOJTA, J ;
SPITZER, JJ .
JOURNAL OF LEUKOCYTE BIOLOGY, 1990, 48 (02) :123-128
[5]  
BEUTLER B, 1990, LYMPHOKINES IMMUNE R, P199
[6]  
Brouwer A, 1988, LIVER BIOL PATHOBIOL, P665
[7]   LOCAL GLUTAMINE-METABOLISM IN WOUNDS AND INFLAMMATION [J].
CALDWELL, MD .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1989, 38 (08) :34-39
[8]   MONOKINE REGULATION OF GLUCOSE TRANSPORTER MESSENGER-RNA IN L6 MYOTUBES [J].
CORNELIUS, P ;
LEE, MD ;
MARLOWE, M ;
PEKALA, PH .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1989, 165 (01) :429-436
[9]   GLYCOLYTIC AND GLUCONEOGENIC ENZYME-ACTIVITIES IN PARENCHYMAL AND NON-PARENCHYMAL CELLS FROM MOUSE LIVER [J].
CRISP, DM ;
POGSON, CI .
BIOCHEMICAL JOURNAL, 1972, 126 (04) :1009-+
[10]  
English D., 1974, J IMMUNOL METHODS, V5, P294