Related Experiment Video
Updated: Jun 4, 2026

Rapid and Refined CD11b Magnetic Isolation of Primary Microglia with Enhanced Purity and Versatility
Published on: April 13, 2017
Cerebral microglia mediate sleep/wake and neuroinflammatory effects of methamphetamine
Jonathan P Wisor1, Michelle A Schmidt, William C Clegern
1Department of Veterinary Comparative Anatomy, Pharmacology and Physiology, WWAMI Medical Education Program, Washington State University, Spokane, WA 99202, USA. J_Wisor@wsu.edu
Abstract:
Methamphetamine and modafinil exert their wake-promoting effects by elevating monoaminergic tone. The severity of hypersomnolence that occurs subsequent to induced wakefulness differs between these two agents. Microglia detects and modulates CNS reactions to agents such as D-methamphetamine that induce cellular stress. We therefore hypothesized that changes in the sleep/wake cycle that occur subsequent to administration of D-methamphetamine are modulated by cerebral microglia. In CD11b-herpes thymidine kinase transgenic mice (CD11b-TK(mt-30)), activation of the inducible transgene by intracerebroventricular (icv) ganciclovir results in toxicity to CD11b-positive cells (i.e. microglia), thereby reducing cerebral microglial cell counts. CD11b-TK(mt-30)and wild type mice were subjected to chronic icv ganciclovir or vehicle administration with subcutaneous mini-osmotic pumps. D-methamphetamine (1 and 2 mg/kg), modafinil (30 and 100 mg/kg) and vehicle were administered intraperitoneally to these animals. In CD11b-TK(mt-30) mice, but not wild type, icv infusion of ganciclovir reduced the duration of wake produced by D-methamphetamine at 2 mg/kg by nearly 1h. Nitric oxide synthase (NOS) activity, studied ex vivo, and NOS expression were elevated in CD11b-positive cerebral microglia from wild type mice acutely exposed to d-methamphetamine. Additionally, CD11b-positive microglia, but not other cerebral cell populations, exhibited changes in sleep-regulatory cytokine expression in response to d-METH. Finally, CD11b-positive microglia exposed to d-methamphetamine in vitro exhibited increased NOS activity relative to pharmacologically-naïve cells. CD11b-positive microglia from the brains of neuronal NOS (nNOS)-knockout mice failed to exhibit this effect. We propose that the effects of D-METH on sleep/wake cycles are mediated in part by actions on microglia, including possibly nNOS activity and cytokine synthesis.
Insights
Cerebral microglia modulate the wake-promoting effects of D-methamphetamine. Reducing microglia in mice altered wake duration, suggesting a role in sleep-wake cycle regulation via nitric oxide synthase and cytokine pathways.
Area of Science:
- Neuroscience
- Pharmacology
- Immunology
Background:
- Methamphetamine and modafinil promote wakefulness by increasing monoaminergic tone.
- The impact of these agents on hypersomnolence and wakefulness varies.
- Microglia are implicated in central nervous system (CNS) responses to cellular stressors like D-methamphetamine.
Purpose of the Study:
- To investigate the hypothesis that cerebral microglia modulate sleep/wake cycle changes induced by D-methamphetamine.
- To determine the role of microglia in the differential effects of D-methamphetamine and modafinil on wakefulness.
Main Methods:
- Utilized CD11b-herpes thymidine kinase (TK) transgenic mice to selectively reduce cerebral microglia counts via ganciclovir administration.
- Administered D-methamphetamine and modafinil to both transgenic and wild-type mice under chronic ganciclovir or vehicle treatment.
- Assessed ex vivo nitric oxide synthase (NOS) activity and expression, and sleep-regulatory cytokine profiles in microglia.
Main Results:
- Microglial reduction in CD11b-TK(mt-30) mice significantly decreased the wake duration induced by D-methamphetamine (2 mg/kg).
- D-methamphetamine exposure increased NOS activity and expression in microglia, alongside altered sleep-regulatory cytokine expression.
- Microglia from neuronal NOS (nNOS)-knockout mice did not show increased NOS activity upon D-methamphetamine exposure in vitro.
Conclusions:
- Cerebral microglia play a role in mediating the effects of D-methamphetamine on sleep/wake cycles.
- Microglial involvement may involve nitric oxide synthase (NOS) activity and cytokine synthesis.
- These findings highlight microglia as potential targets for understanding and modulating stimulant-induced wakefulness.

