Combined Treatment of Mori folium and Mori Cortex Radicis Ameliorate Obesity in Mice via UCP-1 in Brown Adipocytes

Author:

Kim Do-Sung1,Lee Hwa-Young12,Kim Hwa-Jin1,Lee Geum-Hwa2,Lim Young Jae13,Ko Bo Mi13,Kim Ji-Hyun13,Kim Tae Won4,Kim Hye Kyung4,Kim Tae Young5,Hwang Dae Il5,Choi Ha Kyoung5,Ju Seon Min5,Chung Myung Ja6,Chae Han-Jung13ORCID

Affiliation:

1. Non-Clinical Evaluation Center Biomedical Research Institute, Jeonbuk National University Hospital, Jeonju 54907, Republic of Korea

2. Research Institute of Clinical Medicine, Biomedical Research Institute, Jeonbuk National University, Jeonbuk National University Hospital, Jeonju 54907, Republic of Korea

3. School of Pharmacy, Jeonbuk National University, Jeonju 54896, Republic of Korea

4. College of Pharmacy, Kyungsung University, 309 Suyeong-ro, Busan 48434, Republic of Korea

5. Institute of Jinan Red Ginseng, Jinan-gun 55442, Republic of Korea

6. Department of Pathology, College of Medicine, Jeonbuk National University, Jeonju 54896, Republic of Korea

Abstract

Mori Folium (Morus alba leaf, MF) and Mori Cortex Radicis (Morus alba root cortex, MR) have been studied for their anti-obesity effects by enhancing the browning process and inhibiting adipogenesis. However, important aspects of their protective mechanisms have not been thoroughly investigated, which could aid in developing functional food. Thus, this study aims to determine the synergistic effects of MF and MR against obesity and its associated mechanisms. In an in vitro cell culture model of brown adipocytes, a 1:1 mixture of MF and MR showed a synergistic effect on the expression of brown adipocyte-specific genes, including Ucp-1, Ppargc1a, Cbp/p300-interacting transactivator (Cited), Prdm16, Tbx1, and Fgf21 compared with either MF- or MR-treated conditions. Moreover, they demonstrated the involvement of cAMP and Ca2+ in induction of brown adipocyte-specific genes. In an in vivo model using HFD-fed mice, MF/MR significantly inhibited weight gain, plasma cholesterol, LDL, TG content, fat mass, and adipocyte size. Furthermore, MF/MR inhibited morphological alteration and the expressions of fatty acid synthesis genes such as Srebp1 and Fasn in the white adipose tissue. Thermogenesis genes were recovered in the brown adipose tissue with MF/MR supplementation, indicating that MF/MR regulated adipocytic dysmetabolism where AMPK signaling is involved. In conclusion, these results suggested that MF/MR regulates brown and beige adipocyte processes, providing one of the preventive functional food/herbal medicines against obesity and its associated metabolic diseases.

Funder

Institute of Jinan Red Ginseng, Jinan, Republic of Korea

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

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