Literature DB >> 18410518

Region-selective alterations of glucose oxidation and amino acid synthesis in the thiamine-deficient rat brain: a re-evaluation using 1H/13C nuclear magnetic resonance spectroscopy.

Darren Navarro1, Claudia Zwingmann, Roger F Butterworth.   

Abstract

Thiamine deficiency provides an effective model of selective neuronal cell death. (1)H and (13)C-NMR was used to investigate the effects of thiamine deficiency on the synthesis of amino acids derived from [1-(13)C]glucose in vulnerable (medial thalamus; MT) compared to non-vulnerable (frontal cortex; FC) brain regions. Following 11 days of thiamine deficiency, a time-point associated with the absence of significant neuronal cell death, regional concentrations of glutamate, glutamine and GABA remained unaffected in FC and MT; however, decreased levels of aspartate in MT at this time-point were a predictor of regional vulnerability. De novo synthesis of glutamate and GABA were unaffected at 11 days of thiamine deficiency, while synthesis of [2-(13)C]aspartate was significantly impaired. Glucose loading, which has been shown to exacerbate symptoms in patients with thiamine deficiency, resulted in further decreases of TCA cycle flux and reduced de novo synthesis of glutamate, aspartate and GABA in thiamine-deficient (TD) rats. Isotopomer analysis revealed that impaired TCA cycle flux and decreased aspartate synthesis due to thiamine deficiency occurred principally in neurons. Glucose loading deteriorated TD-related decreases in TCA cycle flux, and concomitantly reduced synthesis of aspartate and glutamate in MT.

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Year:  2008        PMID: 18410518     DOI: 10.1111/j.1471-4159.2008.05410.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  10 in total

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Authors:  Beatriz Pardo; Tiago B Rodrigues; Laura Contreras; Miguel Garzón; Irene Llorente-Folch; Keiko Kobayashi; Takeyori Saheki; Sebastian Cerdan; Jorgina Satrústegui
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6.  Focal thalamic degeneration from ethanol and thiamine deficiency is associated with neuroimmune gene induction, microglial activation, and lack of monocarboxylic acid transporters.

Authors:  Liya Qin; Fulton T Crews
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7.  Whole Brain Mapping of Neurons Innervating Extraorbital Lacrimal Glands in Mice and Rats of Both Genders.

Authors:  Ying Zhai; Min Li; Zhu Gui; Yeli Wang; Ting Hu; Yue Liu; Fuqiang Xu
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8.  Plasma Biomarkers for Monitoring Brain Pathophysiology in FMR1 Premutation Carriers.

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9.  Delayed Influence of Spinal Cord Injury on the Amino Acids of NO Metabolism in Rat Cerebral Cortex Is Attenuated by Thiamine.

Authors:  Alexandra Boyko; Alexander Ksenofontov; Sergey Ryabov; Lyudmila Baratova; Anastasia Graf; Victoria Bunik
Journal:  Front Med (Lausanne)       Date:  2018-01-15

10.  Premutation in the Fragile X Mental Retardation 1 (FMR1) Gene Affects Maternal Zn-milk and Perinatal Brain Bioenergetics and Scaffolding.

Authors:  Eleonora Napoli; Catherine Ross-Inta; Gyu Song; Sarah Wong; Randi Hagerman; Louise W Gane; Jennifer T Smilowitz; Flora Tassone; Cecilia Giulivi
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  10 in total

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