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Neuroinflammatory alterations in trait anxiety: modulatory effects of minocycline
Sinead Rooney1, Anupam Sah1, Michael S Unger2,3
1Department of Pharmacology and Toxicology, Institute of Pharmacy and Center for Molecular Biosciences Innsbruck (CMBI), University of Innsbruck, Innsbruck, Austria.
Abstract:
High trait anxiety is a substantial risk factor for developing anxiety disorders and depression. While neuroinflammation has been identified to contribute to stress-induced anxiety, little is known about potential dysregulation in the neuroinflammatory system of genetically determined pathological anxiety or high trait anxiety individuals. We report microglial alterations in various brain regions in a mouse model of high trait anxiety (HAB). In particular, the dentate gyrus (DG) of the hippocampus of HABs exhibited enhanced density and average cell area of Iba1+, and density of phagocytic (CD68+/Iba1+) microglia compared to normal anxiety (NAB) controls. Minocycline was used to assess the capacity of a putative microglia 'inhibitor' in modulating hyperanxiety behavior of HABs. Chronic oral minocycline indeed reduced HAB hyperanxiety, which was associated with significant decreases in Iba1+ and CD68+Iba1+ cell densities in the DG. Addressing causality, it was demonstrated that longer (10 days), but not shorter (5 days), periods of minocycline microinfusions locally into the DG of HAB reduced Iba-1+ cell density and attenuated hyperanxiety-related behavior, indicating that neuroinflammation in the DG is at least partially involved in the maintenance of pathological anxiety. The present data reveal evidence of disturbances in the microglial system of individuals with high trait anxiety. Minocycline attenuated HAB hyperanxiety, likely by modulation of microglial activity within the DG. Thus, the present data suggest that drugs with microglia-targeted anti-inflammatory properties could be promising as novel alternative or complimentary anxiolytic therapeutic approaches in specific subgroups of individuals genetically predisposed to hyperanxiety.
Insights
High trait anxiety in mice involves increased microglia in the dentate gyrus. Minocycline treatment reduced this anxiety by modulating microglial activity, suggesting potential anti-inflammatory treatments for anxiety disorders.
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- High trait anxiety is a risk factor for anxiety disorders and depression.
- Neuroinflammation is linked to stress-induced anxiety, but its role in genetically determined anxiety is unclear.
Purpose of the Study:
- Investigate microglial alterations in a mouse model of high trait anxiety (HAB).
- Assess the anxiolytic potential of minocycline, a microglia modulator, in HAB mice.
- Determine the role of neuroinflammation in the dentate gyrus (DG) in maintaining pathological anxiety.
Main Methods:
- Compared microglial markers (Iba1+, CD68+) in the DG of HAB and normal anxiety (NAB) mice.
- Administered chronic oral minocycline to HAB mice and assessed behavioral changes and microglial density.
- Performed local DG microinfusions of minocycline for varying durations in HAB mice.
Main Results:
- HAB mice showed increased Iba1+ and CD68+ microglial density in the DG compared to NAB controls.
- Chronic oral minocycline reduced hyperanxiety behavior in HAB mice and decreased DG microglial density.
- Longer-term (10-day) local DG minocycline infusion reduced microglial density and anxiety-related behavior in HAB mice.
Conclusions:
- Genetically determined high trait anxiety is associated with microglial disturbances in the DG.
- Minocycline's anxiolytic effect in HAB mice is linked to the modulation of DG microglial activity.
- Microglia-targeted anti-inflammatory drugs may offer novel therapeutic strategies for genetically predisposed anxiety.
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