Literature DB >> 22186669

Brain lactate metabolism: the discoveries and the controversies.

Gerald A Dienel1.   

Abstract

Potential roles for lactate in the energetics of brain activation have changed radically during the past three decades, shifting from waste product to supplemental fuel and signaling molecule. Current models for lactate transport and metabolism involving cellular responses to excitatory neurotransmission are highly debated, owing, in part, to discordant results obtained in different experimental systems and conditions. Major conclusions drawn from tabular data summarizing results obtained in many laboratories are as follows: Glutamate-stimulated glycolysis is not an inherent property of all astrocyte cultures. Synaptosomes from the adult brain and many preparations of cultured neurons have high capacities to increase glucose transport, glycolysis, and glucose-supported respiration, and pathway rates are stimulated by glutamate and compounds that enhance metabolic demand. Lactate accumulation in activated tissue is a minor fraction of glucose metabolized and does not reflect pathway fluxes. Brain activation in subjects with low plasma lactate causes outward, brain-to-blood lactate gradients, and lactate is quickly released in substantial amounts. Lactate utilization by the adult brain increases during lactate infusions and strenuous exercise that markedly increase blood lactate levels. Lactate can be an 'opportunistic', glucose-sparing substrate when present in high amounts, but most evidence supports glucose as the major fuel for normal, activated brain.

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Year:  2011        PMID: 22186669      PMCID: PMC3390802          DOI: 10.1038/jcbfm.2011.175

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  232 in total

1.  Generalized sensory stimulation of conscious rats increases labeling of oxidative pathways of glucose metabolism when the brain glucose-oxygen uptake ratio rises.

Authors:  Gerald A Dienel; Robert Y Wang; Nancy F Cruz
Journal:  J Cereb Blood Flow Metab       Date:  2002-12       Impact factor: 6.200

2.  Energy metabolism in glutamatergic neurons, GABAergic neurons and astrocytes in primary cultures.

Authors:  L Hertz; J Drejer; A Schousboe
Journal:  Neurochem Res       Date:  1988-07       Impact factor: 3.996

3.  Failure to maintain glycolysis in anoxic nerve terminals.

Authors:  R A Kauppinen; D G Nicholls
Journal:  J Neurochem       Date:  1986-12       Impact factor: 5.372

4.  Glutamine--a major substrate for nerve endings.

Authors:  H F Bradford; H K Ward; A J Thomas
Journal:  J Neurochem       Date:  1978-06       Impact factor: 5.372

5.  The mitochondrial redox state of rat brain.

Authors:  A L Miller; R A Hawkins; R L Veech
Journal:  J Neurochem       Date:  1973-05       Impact factor: 5.372

6.  Role of glutamate in neuron-glia metabolic coupling.

Authors:  Pierre J Magistretti
Journal:  Am J Clin Nutr       Date:  2009-07-01       Impact factor: 7.045

7.  Amobarbital inhibits K(+)-stimulated glucose oxidation in cerebellar granule neurons by two mechanisms.

Authors:  Liang Peng; Leif Hertz
Journal:  Eur J Pharmacol       Date:  2002-06-20       Impact factor: 4.432

Review 8.  Energy substrates for neurons during neural activity: a critical review of the astrocyte-neuron lactate shuttle hypothesis.

Authors:  Ching-Ping Chih; Eugene L Roberts
Journal:  J Cereb Blood Flow Metab       Date:  2003-11       Impact factor: 6.200

9.  Compartmentalized Cerebral Metabolism of [1,6-(13)C]Glucose Determined by in vivo (13)C NMR Spectroscopy at 14.1 T.

Authors:  João M N Duarte; Bernard Lanz; Rolf Gruetter
Journal:  Front Neuroenergetics       Date:  2011-06-06

10.  Neuronal glucose transporter isoform 3 deficient mice demonstrate features of autism spectrum disorders.

Authors:  Y Zhao; C Fung; D Shin; B-C Shin; S Thamotharan; R Sankar; D Ehninger; A Silva; S U Devaskar
Journal:  Mol Psychiatry       Date:  2009-06-09       Impact factor: 15.992

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  182 in total

1.  (13)C metabolic flux analysis in neurons utilizing a model that accounts for hexose phosphate recycling within the pentose phosphate pathway.

Authors:  Hoda M Gebril; Bharathi Avula; Yan-Hong Wang; Ikhlas A Khan; Mika B Jekabsons
Journal:  Neurochem Int       Date:  2015-12-23       Impact factor: 3.921

Review 2.  Crosstalk of Signaling and Metabolism Mediated by the NAD(+)/NADH Redox State in Brain Cells.

Authors:  Ulrike Winkler; Johannes Hirrlinger
Journal:  Neurochem Res       Date:  2015-02-10       Impact factor: 3.996

3.  Glycolysis and oxidative phosphorylation in neurons and astrocytes during network activity in hippocampal slices.

Authors:  Anton I Ivanov; Anton E Malkov; Tatsiana Waseem; Marat Mukhtarov; Svetlana Buldakova; Olena Gubkina; Misha Zilberter; Yuri Zilberter
Journal:  J Cereb Blood Flow Metab       Date:  2013-12-11       Impact factor: 6.200

Review 4.  Astrocytic energetics during excitatory neurotransmission: What are contributions of glutamate oxidation and glycolysis?

Authors:  Gerald A Dienel
Journal:  Neurochem Int       Date:  2013-07-06       Impact factor: 3.921

5.  Neurometabolic coupling between neural activity, glucose, and lactate in activated visual cortex.

Authors:  Baowang Li; Ralph D Freeman
Journal:  J Neurochem       Date:  2015-05-29       Impact factor: 5.372

Review 6.  Bioenergetic regulation of microglia.

Authors:  Soumitra Ghosh; Erika Castillo; Elma S Frias; Raymond A Swanson
Journal:  Glia       Date:  2017-12-08       Impact factor: 7.452

7.  Lactate is an antidepressant that mediates resilience to stress by modulating the hippocampal levels and activity of histone deacetylases.

Authors:  Nabil Karnib; Rim El-Ghandour; Lauretta El Hayek; Patrick Nasrallah; Mohamad Khalifeh; Nour Barmo; Vanessa Jabre; Pascale Ibrahim; Maria Bilen; Joseph S Stephan; Edward B Holson; Rajiv R Ratan; Sama F Sleiman
Journal:  Neuropsychopharmacology       Date:  2019-01-08       Impact factor: 7.853

Review 8.  Interactions in the Metabolism of Glutamate and the Branched-Chain Amino Acids and Ketoacids in the CNS.

Authors:  Marc Yudkoff
Journal:  Neurochem Res       Date:  2016-10-01       Impact factor: 3.996

Review 9.  Neural-metabolic coupling in the central visual pathway.

Authors:  Ralph D Freeman; Baowang Li
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2016-10-05       Impact factor: 6.237

10.  Socially responsive effects of brain oxidative metabolism on aggression.

Authors:  Hongmei Li-Byarlay; Clare C Rittschof; Jonathan H Massey; Barry R Pittendrigh; Gene E Robinson
Journal:  Proc Natl Acad Sci U S A       Date:  2014-08-04       Impact factor: 11.205

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