Lactobacillus brevis M2-Fermented Whey Protein Hydrolysate Increases Slow-Wave Sleep via GABAA Receptors in Rodent Models

Author:

Lee Hyowon12ORCID,Kim Hyeongyeong12,Chang Yeok Boo2ORCID,Han Kisoo3,Choi Hyeon-Son4,Han Sung Hee5,Suh Hyung Joo12ORCID

Affiliation:

1. Department of Integrated Biomedical and Life Science, Graduate School, Korea University, Seoul 02841, Republic of Korea

2. Transdisciplinary Major in Learning Health Systems, Graduate School, Korea University, Seoul 02841, Republic of Korea

3. Neo Cremar Co., Ltd., Seoul 06142, Republic of Korea

4. Department of Food Nutrition, Sangmyung University, Seoul 03016, Republic of Korea

5. Institute of Human Behavior & Genetics, Korea University, Seoul 02841, Republic of Korea

Abstract

In this study, we investigated the effects of whey protein hydrolysate (WPH) fermented with Lactobacillus brevis on sleep behavior and GABAergic mechanisms in rodent models. Fermentation converted the glutamate in WPH to high (3.15 ± 0.21 mg/mL) levels of γ-aminobutyric acid (GABA). Fermented WPH (WP-SF) enhanced sleep duration in mice by increasing GABA content in the brain. The increase in sleep duration induced by WP-SF resulted from an increase in delta wave activity during non-rapid eye movement sleep, and its sleep-promoting effect in a caffeine-induced insomnia model was characterized by an increase in delta waves. WP-SF increased GABAergic receptors at both mRNA and protein levels. Cotreatment with GABAA receptor antagonists abolished the sleep-promoting effects of WP-SF, indicating that WP-SF shares binding sites with antagonists on GABAA receptors. Collectively, WP-SF effectively increased sleep duration by enhancing delta wave activity through GABAergic activation; thus, it is suggested as a functional food-grade ingredient for promoting sleep.

Funder

Korea Institute of Planning and Evaluation for Technology in Food, Agriculture, and Forestry

Publisher

MDPI AG

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