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Tumor necrosis factor alpha and Fas receptor contribute to cognitive deficits independent of cell death after concussive traumatic brain injury in mice.

J Khuman | WP Meehan | X Zhu | J Qiu | U Hoffmann | J Zhang | E Giovannone | EH Lo | MJ Whalen
Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism | 2011 Feb

Tumor necrosis factor alpha (TNFα) and Fas receptor contribute to cell death and cognitive dysfunction after focal traumatic brain injury (TBI). We examined the role of TNFα/Fas in postinjury functional outcome independent of cell death in a novel closed head injury (CHI) model produced with weight drop and free rotational head movement in the anterior-posterior plane. The CHI produced no cerebral edema or blood-brain barrier damage at 24 to 48 hours, no detectable cell death, occasional axonal injury (24 hours), and no brain atrophy or hippocampal cell loss (day 60). Microglia and astrocytes were activated (48 to 72 hours). Tumor necrosis factor-α mRNA, Fas mRNA, and TNFα protein were increased in the brain at 3 to 6 hours after injury (P<0.001 versus sham injured). In wild-type (WT) mice, CHI produced hidden platform (P=0.009) and probe deficits (P=0.001) in the Morris water maze versus sham. Surprisingly, injured TNFα/Fas knockout (KO) mice performed worse in hidden platform trials (P=0.036) but better in probe trials than did WT mice (P=0.0001). Administration of recombinant TNFα to injured TNFα/Fas KO mice reduced probe trial performance to that of WT. Thus, TNFα/Fas influence cognitive deficits independent of cell death after CHI. Therapies targeting TNFα/Fas together may be inappropriate for patients with concussive TBI.

Pubmed ID: 20940727

TBI Model

  • Weight-drop model
  • Weight-drop
  • Animal Information

  • Species: mouse
  • Strain: C57/BL6
  • Age (weeks): 10.9 - 17.4
  • Weight (grams): 25 - 30
  • Assessments

    (wet–dry)/wet brain weight method, Blood–Brain Barrier Permeability, Chronic Brain Tissue Loss, Histochemical, Injured Cell Counts, Morris Water Maze, Nuclear Factor-κB Transcription Factor Assay, Quantitative Real-Time Reverse Transcriptase PCR, Tumor Necrosis Factor-α Enzyme-Linked Immunosorbent Assay, Wire-Grip Test, immunohistochemical, light microscopy

    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

    No information available

    Associated Datasets

    No information available

    Associated Protocols

    No information available