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1. Running exercise alleviates hippocampal neuroinflammation and shifts the balance of microglial M1/M2 polarization through adiponectin/AdipoR1 pathway activation in mice exposed to chronic unpredictable stress.

2. Running exercise improves astrocyte loss, morphological complexity and astrocyte-contacted synapses in the hippocampus of CUS-induced depression model mice.

3. Dysfunction of GluN3A subunit is involved in depression-like behaviors through synaptic deficits.

4. The liver X receptors agonist GW3965 attenuates depressive-like behaviors and suppresses microglial activation and neuroinflammation in hippocampal subregions in a mouse depression model.

5. Exercise rather than fluoxetine promotes oligodendrocyte differentiation and myelination in the hippocampus in a male mouse model of depression.

6. Beneficial effects of running exercise on hippocampal microglia and neuroinflammation in chronic unpredictable stress-induced depression model rats.

7. The positive effects of running exercise on hippocampal astrocytes in a rat model of depression.

8. The effects of fluoxetine on oligodendrocytes in the hippocampus of chronic unpredictable stress-induced depressed model rats.

9. Running exercise protects oligodendrocytes in the medial prefrontal cortex in chronic unpredictable stress rat model.

10. The effects of running exercise on oligodendrocytes in the hippocampus of rats with depression induced by chronic unpredictable stress.

11. Exercise protects myelinated fibers of white matter in a rat model of depression.

12. Alteration in NMDAR subunits in different brain regions of chronic unpredictable mild stress (CUMS) rat model

13. Increased number of microglia and enhanced expression of inflammatory factors in the hippocampus of rat model of depression

14. Positive effects of running exercise on astrocytes in the medial prefrontal cortex in an animal model of depression.

15. PGC-1α in the hippocampus mediates depressive-like and stress-coping behaviours and regulates excitatory synapses in the dentate gyrus in mice.

16. MPFC PV+ interneurons are involved in the antidepressant effects of running exercise but not fluoxetine therapy.

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