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Hyperoxygenation Ameliorates Stress-induced Neuronal and Behavioral Deficits
Juli Choi1, Hye-Jin Kwon1, Ju-Young Seoh2,3
1Department of Brain and Cognitive Sciences, Ewha Womans University, Seoul 03760, Korea.
Hyperoxygenation therapy using 100% oxygen at 2.0 ATA for 14 days effectively reverses stress-induced neuronal damage and depressive behaviors in mice. This treatment restores cognitive function and hippocampal neurogenesis, highlighting optimal conditions for therapeutic benefit.
Area of Science:
- Neuroscience
- Hyperbaric Medicine
- Stress Research
Background:
- Chronic stress leads to maladaptive genomic changes and depressive behaviors.
- Hyperoxygenation therapy shows promise in animal models for neuronal injury and cognitive deficits.
Purpose of the Study:
- To investigate optimal conditions for hyperoxygenation therapy in reversing stress-induced maladaptive changes.
- To evaluate the efficacy of hyperoxygenation in ameliorating stress-induced neuronal and behavioral deficits in mice.
Main Methods:
- Mice exposed to chronic restraint stress (CRST) were treated with 100% oxygen (HO2) at 2.0 ATA for 1 hour daily for 14 days.
- Various treatment durations (3, 5, 7 days), pressures (1.5 ATA), and oxygen concentrations (hyperbaric air) were tested for comparison.
- Neurogenesis, mitochondrial copy number, and neuronal structure (synaptophysin, MAP-2) in the hippocampus were assessed.
Main Results:
- 14 days of HO2 at 2.0 ATA demonstrated an antidepressive effect comparable to imipramine.
- Shorter durations, lower pressure, or hyperbaric air were ineffective or less effective, indicating the necessity of sufficient hyperoxygenation.
- HO2 treatment restored hippocampal mitochondrial copy number, synaptic density, dendritic processes, and neurogenesis.
Conclusions:
- Repeated, sufficient hyperoxygenation (100% O2 at 2.0 ATA for 14 days) is required to reverse stress-induced maladaptive changes.
- This hyperoxygenation regimen effectively ameliorates stress-induced neuronal and behavioral deficits.
- The findings suggest a potential therapeutic strategy for stress-related neurological disorders.
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