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Updated: Jul 23, 2025

Modified Mouse Model of Repetitive Mild Traumatic Brain Injury Incorporating Thinned-Skull Window and Fluid Percussion
Published on: April 19, 2024
Mature and Myelinating Oligodendrocytes Are Specifically Vulnerable to Mild Fluid Percussion Injury in Mice
Alexandra A Adams1, Teresa L Wood2, Haesun A Kim1
1Department of Biological Sciences, Physiology, and Neuroscience, New Jersey Medical School, Rutgers University, Newark, New Jersey, USA.
Abstract:
Myelin loss and oligodendrocyte death are well documented in patients with traumatic brain injury (TBI), as well as in experimental animal models after moderate-to-severe TBI. In comparison, mild TBI (mTBI) does not necessarily result in myelin loss or oligodendrocyte death, but causes structural alterations in the myelin. To gain more insight into the impact of mTBI on oligodendrocyte lineage in the adult brain, we subjected mice to mild lateral fluid percussion injury (mFPI) and characterized the early impact (1 and 3 days post-injury) on oligodendrocytes in the corpus callosum using multiple oligodendrocyte lineage markers (platelet-derived growth factor receptor [PDGFR]-α, glutathione S-transferase [GST]-π, CC1, breast carcinoma-amplified sequence 1 [BCAS1], myelin basic protein [MBP], myelin-associated glycoprotein [MAG], proteolipid protein [PLP], and FluoroMyelin™). Two regions of the corpus callosum in relation to the impact site were analyzed: areas near (focal) and anterior (distal) to the impact site. mFPI did not result in oligodendrocyte death in either the focal or distal corpus callosum, nor impact on oligodendrocyte precursors (PDGFR-α+) and GST-π+ oligodendrocyte numbers. In the focal but not distal corpus callosum, mFPI caused a decrease in CC1+ as well as BCAS1+ actively myelinating oligodendrocytes and reduced FluoroMyelin intensity without altering myelin protein expression (MBP, PLP, and MAG). Disruption in node-paranode organization and loss of Nav1.6+ nodes were observed in both the focal and distal regions, even in areas without obvious axonal damage. Altogether, our study shows regional differences in mature and myelinating oligodendrocyte in response to mFPI. Further, mFPI elicits a widespread impact on node-paranode organization that affects regions both close to and remotely located from the site of injury.
Insights
Mild traumatic brain injury (mTBI) impacts myelinating oligodendrocytes and node-paranode organization in specific brain regions. This study reveals early structural changes in myelin and widespread disruption even without axonal damage.
Area of Science:
- Neuroscience
- Cell Biology
- Traumatic Brain Injury Research
Background:
- Traumatic brain injury (TBI) often leads to myelin loss and oligodendrocyte death, particularly in moderate-to-severe cases.
- Mild TBI (mTBI) may cause myelin structural alterations without cell death, necessitating further investigation into its effects on oligodendrocyte lineage.
Purpose of the Study:
- To investigate the early impact of mild TBI on oligodendrocytes and myelin in the adult mouse corpus callosum.
- To characterize regional differences in oligodendrocyte response and myelin integrity following mild lateral fluid percussion injury (mFPI).
Main Methods:
- Mice were subjected to mFPI, and the corpus callosum was analyzed at 1 and 3 days post-injury.
- Oligodendrocyte lineage markers (PDGFR-α, GST-π, CC1, BCAS1) and myelin markers (MBP, PLP, MAG, FluoroMyelin™) were used.
- Node-paranode organization and Nav1.6+ nodes were assessed in focal and distal regions.
Main Results:
- mFPI did not cause oligodendrocyte death or affect oligodendrocyte precursor numbers (PDGFR-α+, GST-π+).
- A decrease in actively myelinating oligodendrocytes (CC1+, BCAS1+) and reduced FluoroMyelin intensity were observed in the focal corpus callosum.
- Disruption in node-paranode organization and loss of Nav1.6+ nodes occurred in both focal and distal regions, irrespective of axonal damage.
Conclusions:
- Mild TBI induces regional differences in mature and myelinating oligodendrocytes within the corpus callosum.
- mFPI causes widespread effects on node-paranode organization, impacting areas both near and remote from the injury site.

