Melatonin Ameliorates Depressive‐Like Behaviors in Ovariectomized Mice by Improving Tryptophan Metabolism via Inhibition of Gut Microbe Alistipes Inops

Author:

Zheng Kai‐Yu1,Gao Bo1,Wang Hua‐Jie1,He Jin‐Gang1234,Chen Hong‐Sheng1,Hu Zhuang‐Li1234,Long Li‐Hong1234,Chen Jian‐Guo12345ORCID,Wang Fang12345

Affiliation:

1. State Key Laboratory for Diagnosis and Treatment of Severe Zoonotic Infectious Diseases Department of Pharmacology School of Basic Medicine Tongji Medical College Huazhong University of Science and Technology Wuhan China

2. The Research Center for Depression Tongji Medical College Huazhong University of Science Wuhan 430030 China

3. The Key Laboratory for Drug Target Researches and Pharmacodynamic Evaluation of Hubei Province Wuhan 430030 China

4. Hubei Shizhen Laboratory Wuhan 430030 China

5. Laboratory of Neuropsychiatric Diseases The Institute of Brain Research Huazhong University of Science and Technology Wuhan 430030 China

Abstract

AbstractMelatonin (N‐acetyl‐5‐methoxytryptamine) is reported to improve mood disorders in perimenopausal women and gut microbiome composition is altered during menopausal period. The possible role of microbiome in the treatment effect of melatonin on menopausal depression remains unknown. Here, it is shown that melatonin treatment reverses the gut microbiota dysbiosis and depressive‐like behaviors in ovariectomy (OVX) operated mice. This effect of melatonin is prevented by antibiotic cocktails (ABX) treatment. Transferring microbiota harvested from adolescent female mice to OVX‐operated mice is sufficient to ameliorate depressive‐like behaviors. Conversely, microbiota transplantation from OVX‐operated mice or melatonin‐treated OVX‐operated mice to naïve recipient mice exhibits similar phenotypes to donors. The colonization of Alistipes Inops, which is abundant in OVX‐operated mice, confers the recipient with depressive‐like behaviors. Further investigation indicates that the expansion of Alistipes Inops induced by OVX leads to the degradation of intestinal tryptophan, which destroys systemic tryptophan availability. Melatonin supplementation restores systemic tryptophan metabolic disorders by suppressing the growth of Alistipes Inops, which ameliorates depressive‐like behaviors. These results highlight the previously unrecognized role of Alistipes Inops in the modulation of OVX‐induced behavioral disorders and suggest that the application of melatonin to inhibit Alistipes Inops may serve as a potential strategy for preventing menopausal depressive symptoms.

Funder

National Basic Research Program of China

National Natural Science Foundation of China

Publisher

Wiley

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