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Updated: Jun 6, 2026

A General Method for Evaluating Deep Brain Stimulation Effects on Intravenous Methamphetamine Self-Administration
Published on: January 22, 2016
Methamphetamine causes sustained depression in cerebral blood flow
Oksana Polesskaya1, Jharon Silva, Christine Sanfilippo
1Department of Microbiology and Immunology, the University of Rochester Medical Center, 575 Elmwood Avenue, Rochester, NY 14642, USA.
Abstract:
The use prevalence of the highly addictive psychostimulant methamphetamine (MA) has been steadily increasing over the past decade. MA abuse has been associated with both transient and permanent alterations in cerebral blood flow (CBF), hemorrhage, cerebrovascular accidents and death. To understand MA-induced changes in CBF, we exposed C56BL/6 mice to an acute bolus of MA (5mg/kg MA, delivered IP). This elicited a biphasic CBF response, characterized by an initial transient increase (~ 5 minutes) followed by a prolonged decrease (~ 30 minutes) of approximately 25% relative to baseline CBF--as measured by laser Doppler flowmetry over the somatosensory cortex. To assess if this was due to catecholamine derived vasoconstriction, phentolamine, an α-adrenergic antagonist was administered prior to MA treatment. This reduced the initial increase in CBF but failed to prevent the subsequent, sustained decrease in CBF. Consistent with prior reports, MA caused a transient increase in mean arterial blood pressure, body temperature and respiratory rate. Elevated respiratory rate resulted in hypocapnia. When respiratory rate was controlled by artificially ventilating mice, blood PaCO(2) levels after MA exposure remained unchanged from physiologic levels, and the MA-induced decrease in CBF was abolished. In vivo two-photon imaging of cerebral blood vessels revealed sustained MA-induced vasoconstriction of pial arterioles, consistent with laser Doppler flowmetry data. These findings show that even a single, acute exposure to MA can result in profound changes in CBF, with potentially deleterious consequences for brain function.
Insights
Methamphetamine (MA) acutely decreases cerebral blood flow (CBF) by causing vasoconstriction, even after a single use. This MA-induced CBF reduction is linked to respiratory changes, not direct blood vessel effects.
Area of Science:
- Neuroscience
- Pharmacology
- Toxicology
Background:
- Methamphetamine (MA) use is increasing, with known associations to cerebrovascular damage.
- MA abuse can lead to altered cerebral blood flow (CBF), hemorrhage, and stroke.
Purpose of the Study:
- To investigate the acute effects of MA on CBF in mice.
- To determine the mechanisms underlying MA-induced changes in CBF.
Main Methods:
- C56BL/6 mice were administered a single dose of MA (5mg/kg).
- Cerebral blood flow was measured using laser Doppler flowmetry and in vivo two-photon imaging.
- Pharmacological interventions (phentolamine) and controlled ventilation were used to assess mechanisms.
Main Results:
- MA caused a biphasic CBF response: an initial increase followed by a sustained ~25% decrease.
- The decrease in CBF was linked to MA-induced hypocapnia due to increased respiratory rate.
- Controlling respiration abolished the MA-induced CBF reduction, indicating hypocapnia as the primary driver.
Conclusions:
- Acute MA exposure significantly alters CBF, primarily through MA-induced respiratory changes leading to hypocapnia.
- Sustained vasoconstriction of cerebral arterioles was observed.
- These findings highlight the potential for even single MA use to impair brain function via CBF alterations.
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