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Updated: Dec 24, 2025

Methods for Intravenous Self Administration in a Mouse Model
Published on: December 8, 2012
Cocaine self-administration differentially activates microglia in the mouse brain
Maria E Burkovetskaya1, Robert Small1, Liyang Guo1
1Department of Pharmacology and Experimental Neuroscience, 985880 Nebraska Medical Center, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Abstract:
The evidence showing the involvement of microglial activation in the development of drug addiction remain scarce as microglia have not been systematically investigated in self-administered mice, a gold standard rodent model for drug addiction. Here we established the stable cocaine self-administration mice to examine microglial activation levels in various brain regions related to reward circuitry. Immunostaining for Iba1 showed a significant upregulation of intensity in the striatum but not in the medial prefrontal cortex (mPFc), hippocampus or thalamus. Further validation experiments showed that cocaine self-administered mice had significantly increased mRNA expression of ccl2 and IL1β in the striatum but not the mPFc compared to saline controls. Consistently, we found elevated protein levels of Iba1, CCL2, TLR4 and mature IL1β in the striatum, not in the mPFc of cocaine-receiving mice. In addition, cocaine-stimulated microglia had modified morphology including a reduced number of intersections, a shortened length and number of processes in the NAc. In summary, our results demonstrated that cocaine mediated microglial activation in a region-specific manner in vivo. These findings indicate that microglia could be activated in the early stage of cocaine addiction directly supporting the rationale that dysregulation on neuroimmune signaling is inherently involved in the development of drug addiction.
Insights
Cocaine self-administration activates microglia in the striatum, a key brain region for reward. This neuroimmune signaling suggests early involvement in cocaine addiction development.
Area of Science:
- Neuroscience
- Neuroimmunology
- Addiction Research
Background:
- Microglial activation's role in drug addiction is understudied.
- Systematic investigation in self-administration models is lacking.
Purpose of the Study:
- To investigate microglial activation in the brain during cocaine self-administration.
- To examine region-specific changes in reward circuitry.
Main Methods:
- Established stable cocaine self-administration in mice.
- Used immunostaining for Iba1 (microglia marker).
- Measured mRNA and protein levels of inflammatory markers (CCL2, IL-1β, TLR4).
Main Results:
- Increased Iba1 intensity in the striatum, not mPFC, hippocampus, or thalamus.
- Upregulated CCL2 and IL-1β mRNA/protein in the striatum.
- Elevated CCL2, TLR4, and mature IL-1β protein in the striatum.
- Altered microglial morphology in the nucleus accumbens (NAc).
Conclusions:
- Cocaine induces region-specific microglial activation in vivo.
- Microglial activation occurs early in cocaine addiction.
- Neuroimmune signaling dysregulation is integral to drug addiction development.
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