Literature DB >> 34199426

Anti-Obesity Effect of Erigeron annuus (L.) Pers. Extract Containing Phenolic Acids.

Yulong Zheng1, Yoon-Hee Choi2, Ji-Hyun Lee1, So-Yeon Lee1, Il-Jun Kang1.   

Abstract

Erigeron annuus (L.) Pers. water extract (EAW) was investigated for its anti-obesity effects in C57BL/6J mice on a high-fat diet. Mice were divided into groups fed normal and high-fat diets (ND and HFD, respectively), and HFD mice were treated with EAW (50, 100, and 200 mg/kg/day) for 8 weeks. Inhibition of HFD-induced obesity by EAW was evaluated using biochemical parameters, immunohistochemistry, real-time PCR, and immunoblot assay. EAW supplementation significantly diminished the final body weight, adipose tissue size, and epididymal adipose tissue volume compared with mice with obesity induced by HFD (p < 0.05 for all). EAW also decreased serum triglyceride (TG) and LDL-cholesterol (LDL-c) levels in obese mice. EAW attenuated HFD-induced obesity by down-regulating C/EBPα, PPARγ, and SREBP-1c to suppress adipogenesis. Moreover, this study indicated that EAW activates the AMPK pathway and increases ACC phosphorylation and downstream CPT1 expression in HFD-induced obese mice. Furthermore, several phenolic acids with anti-obesity properties have been identified in EAW, including quinic acid, caffeic acid, chlorogenic acid, and 3,4-dicaffeoylquinic acid. Based on these data, EAW has anti-obesity effects in vivo, which indicates that it is an excellent candidate for the development of anti-obesity functional foods.

Entities:  

Keywords:  AMPK pathway; C57BL/6J mice; Erigeron annuus (L.) Pers; anti-obesity; high-fat diet; phenolic acid

Year:  2021        PMID: 34199426     DOI: 10.3390/foods10061266

Source DB:  PubMed          Journal:  Foods        ISSN: 2304-8158


  1 in total

1.  Anti-Obesity Effects of a Mixture of Atractylodes macrocephala and Amomum villosum Extracts on 3T3-L1 Adipocytes and High-Fat Diet-Induced Obesity in Mice.

Authors:  Hae-Lim Kim; Sung-Kwon Lee; Da-Eun Min; Bong-Keun Choi; Dong-Ryung Lee
Journal:  Molecules       Date:  2022-01-28       Impact factor: 4.411

  1 in total

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