Effects of arketamine on depression-like behaviors and demyelination in mice exposed to chronic restrain stress: A role of transforming growth factor-β1.
Dan Xu, Guilin Liu, Mingming Zhao, Xiayun Wan, Youge Qu, Rumi Murayama, Kenji Hashimoto
Journal of affective disorders December 15, 2024 DOI: 10.1016/j.jad.2024.08.222 via PubMed
Summary
AI-generated from the abstractA single dose of arketamine (10 mg/kg) improved both depression-like behaviors and demyelination in the corpus callosum of mice exposed to chronic restraint stress. Correlations linked depression-like behaviors with demyelination in that brain region. Blocking the transforming growth factor β1 (TGF-β1) receptor with RepSox prevented arketamine's beneficial effects, while a single intranasal dose of TGF-β1 alone also ameliorated both depression-like behaviors and demyelination. The precise mechanisms remain unclear, but the findings suggest that stress-induced demyelination in the corpus callosum may contribute to depression-like behaviors, and arketamine may act through a TGF-β1-dependent pathway.
Study at a glance
| Characteristics | Preclinical experimental study Peer reviewed |
|---|---|
| Population | Mice exposed to chronic restraint stress |
| Interventions | Arketamine RepSox TGF-β1 |
| Dose | 10 mg/kg |
| Topics | Depression Ketamine |
| Keywords | Antidepressant Chronic stress Demyelination |
| Citations | 21 |
| Key finding | Arketamine improved depression-like behaviors and demyelination in the corpus callosum of stressed mice through a TGF-β1-dependent mechanism. |
Abstract
Chronic restrain stress (CRS) induces depression-like behaviors and demyelination in the brain; however, the relationship between these depression-like behaviors and demyelination remains unclear. Arketamine, the (R)-enantiomer of ketamine, has shown rapid antidepressant-like effects in CRS-exposed mice. We examined whether arketamine can improve both depression-like behaviors and demyelination in the brains of CRS-exposed mice. Additionally, we investigated the role of transforming growth factor β1 (TGF-β1) in the beneficial effects of arketamine. A single dose of arketamine (10 mg/kg) improved both depression-like behavior and demyelination in the corpus callosum of CRS-exposed mice. Correlations were found between depression-like behaviors and demyelination in this region. Furthermore, pretreatment with RepSox, an inhibitor of TGF-β1 receptor, significantly blocked the beneficial effects of arketamine on depression-like behaviors and demyelination in CRS-exposed mice. Finally, a single intranasal administration of TGF-β1 ameliorated both depression-like behaviors and demyelination in CRS-exposed mice. The precise mechanisms by which TGF-β1 contributes to the effects of arketamine remain unclear. These data suggest that CRS-induced demyelination in the corpus callosum may contribute to depression-like behaviors, and that arketamine can mitigate these changes through a TGF-β1-dependent mechanism.