Related Experiment Video
Updated: Jun 8, 2026

Electromagnetic Controlled Closed-Head Model of Mild Traumatic Brain Injury in Mice
Published on: September 28, 2022
Methamphetamine potentiates behavioral and electrochemical responses after mild traumatic brain injury in mice
Hui Shen1, Brandon K Harvey, Yung-Hsiao Chiang
1National Institute on Drug Abuse, NIH, Baltimore, MD, USA.
Abstract:
We previously demonstrated that high doses of methamphetamine (MA) exacerbate damage induced by severe brain trauma. The purpose of the present study was to examine if MA, at low dosage, affected abnormalities in locomotor activity and dopamine turnover in a mouse model of mild traumatic brain injury (mTBI). Adult male CD1 mice were treated with MA (5 mg/kgi.p.) or vehicle 30-min prior to mTBI, conducted by dropping a 30 g metal weight onto the temporal skull, anterior the right ear. At 15 min after mTBI, animals were put into locomotor activity chambers for up to 72 h. During the first 3 h, mTBI alone, compared with vehicle control, did not alter total distance travelled. Treatment with MA significantly increased locomotor activity in the control animals during the first 3 h; mTBI reduced MA-induced hyperactivity. In contrast, at 2 and 3 days after injury, mTBI or MA alone reduced locomotor activity. Co-treatment with MA and mTBI further reduced this activity, suggesting a differential and temporal behavioral interaction between MA and mTBI during acute and subacute phases after injury. Dopamine and DOPAC levels in striatal tissue were analyzed using HPLC-ECD. At 1h after mTBI or injection, DA was not altered but DOPAC level and DOPAC/DA turnover ratios were significantly reduced. Co-treatment with MA further reduced the DOPAC/DA ratio. At 36 h after injury, mTBI increased tissue DA levels, but reduced DOPAC levels and DOPAC/DA ratios. Co-treatment with MA further reduced DOPAC/DA ratios in striatum. In conclusion, our data suggest that low dosage of MA worsens the suppression of locomotor responses and striatal dopamine turnover after mTBI.
Insights
Low-dose methamphetamine (MA) worsens locomotor deficits and dopamine turnover abnormalities following mild traumatic brain injury (mTBI) in mice. This suggests MA negatively impacts recovery from mTBI.
Area of Science:
- Neuroscience
- Pharmacology
- Traumatology
Background:
- High-dose methamphetamine (MA) exacerbates severe brain trauma damage.
- Mild traumatic brain injury (mTBI) can cause lasting neurological deficits.
Purpose of the Study:
- To investigate the effects of low-dose MA on locomotor activity and dopamine turnover after mTBI in mice.
Main Methods:
- Adult male mice received MA (5 mg/kg) or vehicle before mTBI induction.
- Locomotor activity was monitored for 72 hours post-injury.
- Striatal dopamine and DOPAC levels were analyzed using HPLC-ECD.
Main Results:
- MA alone increased locomotor activity initially, but mTBI reduced this MA-induced hyperactivity.
- Both mTBI and MA alone reduced locomotor activity at later time points (days 2-3).
- Co-treatment with MA and mTBI further suppressed locomotor activity and dopamine turnover (DOPAC/DA ratio) in the striatum.
Conclusions:
- Low-dose MA exacerbates suppressed locomotor responses after mTBI.
- MA worsens alterations in striatal dopamine turnover following mTBI.
- These findings highlight a complex temporal interaction between MA and mTBI.

