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Updated: Jul 11, 2025

Isolation and Culture of Rodent Microglia to Promote a Dynamic Ramified Morphology in Serum-free Medium
Published on: March 9, 2018
Microglia contribute to methamphetamine reinforcement and reflect persistent transcriptional and morphological
Samara J Vilca1,2, Alexander V Margetts1,2,3, Isabella Fleites1,2,3
1Department of Psychiatry & Behavioral Sciences, University of Miami Miller School of Medicine, Miami, FL 33136.
Abstract:
Methamphetamine use disorder (MUD) is a chronic, relapsing disease that is characterized by repeated drug use despite negative consequences and for which there are currently no FDA-approved cessation therapeutics. Repeated methamphetamine (METH) use induces long-term gene expression changes in brain regions associated with reward processing and drug-seeking behavior, and recent evidence suggests that methamphetamine-induced neuroinflammation may also shape behavioral and molecular responses to the drug. Microglia, the resident immune cells in the brain, are principal drivers of neuroinflammatory responses and contribute to the pathophysiology of substance use disorders. Here, we investigated transcriptional and morphological changes in dorsal striatal microglia in response to methamphetamine-taking and during methamphetamine abstinence, as well as their functional contribution to drug-taking behavior. We show that methamphetamine self-administration induces transcriptional changes associated with protein folding, mRNA processing, immune signaling, and neurotransmission in dorsal striatal microglia. Importantly, many of these transcriptional changes persist through abstinence, a finding supported by morphological analyses. Functionally, we report that microglial ablation increases methamphetamine-taking, possibly involving neuroimmune and neurotransmitter regulation, and that post-methamphetamine microglial repopulation attenuates drug-seeking following a 21-day period of abstinence. In contrast, microglial depletion during abstinence did not alter methamphetamine-seeking. Taken together, these results suggest that methamphetamine induces both short and long-term changes in dorsal striatal microglia that contribute to altered drug-taking behavior and may provide valuable insights into the pathophysiology of MUD.
Insights
Methamphetamine use alters brain immune cells (microglia), causing lasting changes that affect drug-seeking behavior. Restoring microglia after methamphetamine exposure reduces this behavior, offering new therapeutic targets for addiction.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Methamphetamine use disorder (MUD) is a chronic relapsing condition with no approved cessation treatments.
- Methamphetamine (METH) use causes lasting gene expression changes and neuroinflammation, involving microglia.
- Microglia are key players in brain immune responses and substance use disorder pathology.
Conclusions:
- Methamphetamine induces both acute and long-lasting alterations in dorsal striatal microglia.
- These microglial changes contribute to altered METH-taking behavior.
- Targeting microglial function represents a potential therapeutic strategy for MUD.
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