Competition between glucose and lactate as oxidative energy substrates in both neurons and astrocytes: a comparative NMR study
- 21 September 2006
- journal article
- research article
- Published by Wiley in European Journal of Neuroscience
- Vol. 24 (6) , 1687-1694
- https://doi.org/10.1111/j.1460-9568.2006.05056.x
Abstract
Competition between glucose and lactate as oxidative energy substrates was investigated in both primary cultures of astrocytes and neurons using physiological concentrations (1.1 mm for each). Glucose metabolism was distinguished from lactate metabolism by using alternatively labelled substrates in the medium ([1‐13C]glucose + lactate or glucose + [3‐13C]lactate). After 4 h of incubation, 1H and 13C‐NMR spectra were realized on perchloric acid extracts of both cells and culture media. For astrocytic cultures, spectra showed that amino acids (glutamine and alanine) were more labelled in the glucose‐labelled condition, indicating that glucose is a better substrate to support oxidative metabolism in these cells. The opposite was observed on spectra from neuronal cultures, glutamate being much more labelled in the lactate‐labelled condition, confirming that neurons consume lactate preferentially as an oxidative energy substrate. Analysis of glutamine and glutamate peaks (singlets or multiplets) also suggests that astrocytes have a less active oxidative metabolism than neurons. In contrast, they exhibit a stronger glycolytic metabolism than neurons as indicated by their high lactate production yield. Using a mathematical model, we have estimated the relative contribution of exogenous glucose and lactate to neuronal oxidative metabolism. Under the aforementioned conditions, it represents 25% for glucose and 75% for lactate. Altogether, these results obtained on separate astrocytic and neuronal cultures support the idea that lactate, predominantly produced by astrocytes, is used as a supplementary fuel by neurons in vivo already under resting physiological conditions.Keywords
This publication has 43 references indexed in Scilit:
- The redox switch/redox coupling hypothesisNeurochemistry International, 2006
- Glutamate Mediates Acute Glucose Transport Inhibition in Hippocampal NeuronsJournal of Neuroscience, 2004
- Regulation of glial metabolism studied by 13C‐NMRNMR in Biomedicine, 2003
- Cell‐specific expression pattern of monocarboxylate transporters in astrocytes and neurons observed in different mouse brain cortical cell culturesJournal of Neuroscience Research, 2003
- α‐cyano‐4‐hydroxycinnamate decreases both glucose and lactate metabolism in neurons and astrocytes: Implications for lactate as an energy substrate for neuronsJournal of Neuroscience Research, 2001
- NMR spectroscopic study on the metabolic fate of [3-13C]alanine in astrocytes, neurons, and cocultures: Implications for glia-neuron interactions in neurotransmitter metabolismGlia, 2000
- Compartmentation of Lactate and Glucose Metabolism in C6 Glioma CellsJournal of Biological Chemistry, 1998
- Selective Distribution of Lactate Dehydrogenase Isoenzymes in Neurons and Astrocytes of Human BrainJournal of Cerebral Blood Flow & Metabolism, 1996
- [1‐13C]Glucose metabolism in rat cerebellar granule cells and astrocytes in primary cultureEuropean Journal of Biochemistry, 1993
- Lactate release from cultured astrocytes and neurons: A comparisonGlia, 1988