Ethanolic extract of root from Arctium lappa L ameliorates obesity and hepatic steatosis in rats by regulating the AMPK/ACC/CPT-1 pathway
文献类型: 外文期刊
作者: Ma, Kaiyang 1 ; Sheng, Weixi 2 ; Gao, Rong 3 ; Feng, Jin 1 ; Huang, Wuyang 1 ; Cui, Li 1 ; Liu, Jun 4 ; Li, Ying 1 ;
作者机构: 1.Jiangsu Acad Agr Sci, Inst Agroprod Proc, Nanjing, Peoples R China
2.Nanjing Agr Univ, Coll Food Sci & Technol, Nanjing 210095, Peoples R China
3.Nanjing Med Univ, Sch Publ Hlth, Nanjing, Peoples R China
4.Yangzhou Univ, Coll Food Sci & Engn, Yangzhou 210095, Jiangsu, Peoples R China
关键词: AMPK; Arctium lappa L; fatty acid beta-oxidation; metabolic-associated fatty liver disease; obesity; steatosis
期刊名称:JOURNAL OF FOOD BIOCHEMISTRY ( 影响因子:3.654; 五年影响因子:3.271 )
ISSN: 0145-8884
年卷期:
页码:
收录情况: SCI
摘要: Burdock (Arctium lappa L) root is eaten as a vegetable in many countries and used as an ethnomedicine because of its various pharmacological effects. The objective of this study was to investigate the underlying mechanisms of ethanolic extract of root from Arctium lappa L root (ALE) to lose weight and regulate lipid metabolism. The results showed that ALE can regulate lipid metabolism level and inhibit the weight gain of rats induced by the high-sugar and high-fat diet. The contents of triglyceride and cholesterol in the liver of obese rats significantly reduced, and hepatic steatosis was ameliorated. In addition, this study identified that ALE enhanced hepatic fatty acid beta-oxidation and ameliorated hepatic steatosis by activating AMPK/ACC/CPT-1 pathway. These results indicated that ALE has a potential preventive and therapeutic effect on metabolic-associated fatty liver disease and obesity.
- 相关文献
作者其他论文 更多>>
-
Inhibition of Hyperglycemia and Hyperlipidemia by Blocking Toll-like Receptor 4: Comparison of Wild-Type and Toll-like Receptor 4 Gene Knockout Mice on Obesity and Diabetes Modeling
作者:Zhao, Xingyu;Huang, Wuyang;Zhao, Xingyu;Zheng, Jiawei;Huang, Wuyang;Wang, Jing;Huang, Wuyang;Li, Bin
关键词:TLR4; glycolipid metabolism; obesity and diabetes modeling; knockout
-
PL-DINO: An Improved Transformer-Based Method for Plant Leaf Disease Detection
作者:Li, Wei;Zhu, Lizhou;Liu, Jun
关键词:leaf disease detection; PL-DINO; convolutional block attention module; equalization loss; crop
-
Optimization of medium compositions and X-ray irradiation to enhance monacolin K production by Monascus purpureus in submerged fermentation
作者:Ye, Fanyu;Zhang, Chenyu;Liu, Shuai;Liu, Xinyi;Liu, Jun;Guo, Ting;Lu, Dong;Zhou, Xiang
关键词:M. purpureus; Monacolin K; X-ray mutagenesis breeding; Response surface methodology; Transcriptome analysis
-
Enhancing extracellular monascus pigment production in submerged fermentation with engineered microbial consortia
作者:Zhang, Song;Shu, Meng;Gong, Zihan;Liu, Xinyi;Zhang, Chenyu;Liang, Ying;Lin, Qinlu;Zhou, Bo;Liu, Jun;Guo, Ting
关键词:Monascus pigment; Co-cultivation; Lactobacillus fermentum submerged; fermentation; Omics
-
In vitro fermentation characteristics of blueberry anthocyanins and their impacts on gut microbiota from obese human
作者:Xu, Lujing;Huang, Wuyang;Tang, Zhaocheng;Qiu, Zeyu;Tang, Zhaocheng;Qiu, Zeyu;Herrera-Balandrano, Daniela D.;Li, Bin;Yang, Yiyun
关键词:Blueberry anthocyanins; Fermentation; Degradation; Gut microbiota; Short-chain fatty acids; Obesity
-
Effects of extraction methods on the physicochemical properties and functionalities of pectic polysaccharides from burdock (Arctium lappa L.)
作者:Wang, Zhen;Song, Wancheng;Song, Haizhao;Wang, Zhen;Song, Wancheng;Huang, Wuyang;Li, Ying;Feng, Jin
关键词:Burdock pectic polysaccharides; Homogalacturonan; Rhamnogalacturonan-I; Rheological behavior; Emulsifying properties; Cellular antioxidant activity
-
Immune regulation and inflammation inhibition of Arctium lappa L. polysaccharides by TLR4/NF-κB signaling pathway in cells
作者:Zeng, Feng;Li, Ying;Zhang, Xiaoxiao;Zhao, Xingyu;Huang, Wuyang;Zeng, Feng;Shen, Li;Huang, Wuyang;Zhang, Xiaoxiao;Zhao, Xingyu;Huang, Wuyang;Beta, Trust;Li, Bin;Chen, Rui;Huang, Wuyang
关键词:Arctium lappa L.; Burdock roots; Polysaccharides; Immunoregulation; Inflammation; TLR4/NF-kappa B signaling pathway



