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August 14, 20251 citations

Diffuse traumatic brain injury in mice is associated with a transient mismatch of cerebral blood flow and energy metabolism.

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SASertan ArkanMGMichael GottschalkSASaema Ansar

Key Points

  • Diffuse traumatic brain injury caused a temporary drop in cerebral blood flow within one day after injury.
  • Mitochondrial respiration and reactive oxygen species levels remained largely unchanged at one and seven days post-injury.
  • MRI showed no significant changes in hippocampal volume or cell death after the injury in mice.
  • Delayed changes in certain metabolites in the hippocampus could explain functional impairments in this TBI model.

Abstract

Axonal injuries commonly contribute to poor functional outcomes following traumatic brain injury (TBI). To assess cerebral blood flow (CBF) and energy metabolic disturbances in a TBI model of widespread axonal injury, we exposed 105 adult mice to the central (midline) fluid percussion injury (cFPI) diffuse TBI model, or sham injury, and used 9.4 T magnetic resonance (MR) arterial spin labeling (ASL), cortical and hippocampal mitochondrial respiration, and hippocampal MR spectroscopy at 1- and 7-days post-injury (dpi). Widespread, bilateral CBF reductions were observed at day 1 dpi, changes that were normalized by 7 dpi. However, cortical and hippocampal mitochondrial respiration and reactive oxygen species (ROS) production was not significantly altered at 1 and 7 dpi. Moreover, hippocampal volumes, evaluated by MRI, were not altered by cFPI, and by immunohistochemistry only a few apoptotic hippocampal cells were observed. By MRS, evidence of delayed (7 dpi) membrane disruption (phosphocholine and glycerophosphocholine) and glutamate/glutamine increase were observed. While widespread traumatic axonal pathology associated with functional impairments is observed in this TBI model, early CBF alterations were transient and did not translate into significant energy metabolic disturbances. Instead, the delayed hippocampal metabolite changes observed by MRS may contribute to the functional impairment observed in this diffuse TBI model.

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Cite This Study

Arkan et al. (2025) studied this question.

synapsesocial.com/papers/689fc6852abb084d53ed2420https://doi.org/10.1177/0271678x251364136
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Metabolic Diaschisis in Mild Traumatic Brain Injury2024 · 3 citations
  2. 2Exploring the Metabolic Impact of Traumatic Brain Injury in CCI Mouse Models: A Focus on Early and Prolonged Injury Responses2026
  3. 3The Injury Progression in Acute Blast-Induced Mild Traumatic Brain Injury in Rats Reflected by Diffusion Tensor Imaging and Immunohistochemical Examination2024
  4. 4Exploring Pericontusional Temporal Metabolomic Changes after Controlled Cortical Impact in Mice2026
  5. 5Hippocampal Bioenergetics and Metabolic Profiling Identifies Fatty Acid Oxidation as a Potential Therapeutic Target in Traumatic Brain Injury2026