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Traumatic brain injury induces region-specific glutamate metabolism changes as measured by multiple mass spectrometry methods.

JL Sowers | ML Sowers | AS Shavkunov | BE Hawkins | P Wu | DS DeWitt | DS Prough | K Zhang
iScience | 2021 Oct 22

The release of excess glutamate following traumatic brain injury (TBI) results in glutamate excitotoxicity and metabolic energy failure. Endogenous mechanisms for reducing glutamate concentration in the brain parenchyma following TBI are poorly understood. Using multiple mass spectrometry approaches, we examined TBI-induced changes to glutamate metabolism. We present evidence that glutamate concentration can be reduced by glutamate oxidation via a "truncated" tricarboxylic acid cycle coupled to the urea cycle. This process reduces glutamate levels, generates carbon for energy metabolism, leads to citrulline accumulation, and produces nitric oxide. Several key metabolites are identified by metabolomics in support of this mechanism and the locations of these metabolites in the injured hemisphere are demonstrated by MALDI-MS imaging. The results of this study establish the advantages of multiple mass spectrometry approaches and provide insights into glutamate metabolism following TBI that could lead to improved treatment approaches.

Pubmed ID: 34622161

TBI Model

  • Fluid percussion injury model
  • Parasagittal fluid-percussion injury
  • Animal Information

  • Species: rat
  • Strain: Sprague–Dawley
  • Age (weeks): No age reported
  • Weight (grams): 250 - 400
  • Assessments

    High-resolution mass spectrometry imaging, MALDI-MS imaging

    TBI model parameters

  • Impact Depth (mm): No information available
  • Impact Duration (ms): No information available
  • Impact Velocity (m/s): No information available
  • Impactor Tip: No information available
  • Device Name

    fluid percussion trauma device

    Associated Datasets

    DOI:10.34945/F50P40

    Associated Protocols

    No information available