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◇ bioRxiv2026-09-07· neuroscience

Reactive oxygen species alter dopaminergic and purinergic signaling and microglia physiology in the nucleus accumbens

H. A. Wadsworth, J. A. Webb, E. B. Taylor, E. R. White, L. H. Ford, L. R. Hawley, B. J. Parker, S. T. Jones, S. C. Linderman, C. J. Galbraith, D. D. Langford, C. A. Siciliano, J. M. Hansen, S. C. Steffensen, J. Yorgason

原始摘要(英文原文)· Original abstract
Microglia are the brain's resident immune cells and rapidly migrate toward sites of neuronal stress and neurotransmitter imbalance. The molecular cues directing microglia movement remain poorly understood, particularly in brain regions involved in reward processing, including the nucleus accumbens (NAc). Dopamine (DA) dysregulation and production of reactive oxygen species (ROS) are hallmarks of substance use disorders and neurodegenerative diseases. Dopamine and adenosine triphosphate (ATP) are co-released in the NAc, but the effects of ROS on ATP/DA co-transmission and microglia surveillance remain unknown. Using multiphoton imaging in brain slices with GFP-labeled microglia, we found that ATP consistently and non-selectively drives microglia chemoattraction, whereas DA chemoattraction only occurs in a subset of microglia through D1 but not D2 receptor activation. Microglia enter a reactive state via LPS, and LPS results in enhanced DA/ATP release measured via fast scan cyclic voltammetry. ROS production also transitions microglia to a reactive state, but inhibits DA release, with mixed effects on ATP release. These findings identify ATP- and DA-mediated mechanisms for NAc microglia chemoattraction and opposing immune dysregulation (via LPS or ROS) of DA terminal function.
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Reactive oxygen species alter dopaminergic and purinergic signaling and microglia physiology in the nucleus accumbens — 科研速览 Science Skim