Repetitive mild traumatic brain injury in a mouse model produces learning and memory deficits accompanied by

Benoit Mouzon1, Helena Chaytow, Gogce Crynen

  • 1Roskamp Institute, Sarasota, Florida, USA. bmouzon@rfdn.org

Journal of Neurotrauma
|August 21, 2012
PubMed

Insights

Repetitive mild traumatic brain injuries (mTBIs) cause significant cognitive and motor deficits in mice. This study presents a reproducible, non-invasive model for studying cumulative mTBI effects and associated brain pathology.

Area of Science:

  • Neuroscience
  • Neurology
  • Pathology

Background:

  • Mild traumatic brain injury (mTBI) is the most common brain injury.
  • Few non-invasive studies investigate repetitive mTBI effects in rodent models.

Purpose of the Study:

  • To establish and compare behavioral and pathological consequences of single (s-mTBI) versus repetitive (r-mTBI) in a mouse model.
  • To provide a reproducible, non-invasive platform for studying repetitive mTBI.

Main Methods:

  • Mice received either a single mTBI or five mTBIs at 48-hour intervals using an electromagnetic controlled impactor.
  • Behavioral testing included rotarod and Barnes Maze for motor and cognitive function.
  • Histological analysis assessed cell loss, reactive gliosis, and axonal injury (APP immunoreactivity).

Main Results:

  • Single mTBI caused transient motor and cognitive deficits.
  • Repetitive mTBI resulted in more significant, persistent deficits and increased reactive gliosis in the hippocampus and cortex.
  • Axonal injury was observed in both groups, but was more pronounced after repetitive mTBI.
  • Focal injury was noted in the brainstem and cerebellum in repetitively injured animals.

Conclusions:

  • The developed mouse model is reproducible, simple, and non-invasive for studying mTBI.
  • Repetitive mTBI leads to cumulative behavioral impairments and increased neuropathology compared to single mTBI.
  • This model is suitable for exploring the mechanisms and consequences of repetitive mTBI relevant to human injuries.

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