首站-论文投稿智能助手
典型文献
Gypenoside ameliorates insulin resistance and hyperglycemia via the AMPK-mediated signaling pathways in the liver of type 2 diabetes mellitus mice
文献摘要:
Gynostemma pentaphyllum, also called "Southern Ginseng" in China, is a traditional Asian folk medicinal plant. Gypenosides (Gps) are the biologically active constituents of G. pentaphyllum, which have been reported with hypoglycemic activity. However, the underlying mechanisms are unclear. The effects of two Gps (Gp-I and Gp-II) on type 2 diabetic mellitus (T2DM) mice, induced by high-fat and high-sugar diet and streptozotocin, were evaluated to explore the mechanism of their hypoglycemic actions. Gps reduced fasting blood glucose and serum lipids, as well as significantly improved T2DM mice glucose tolerance and insulin resistance (IR). After Gps treatment, the severity of liver injury was reduced and liver glycogen content increased. In addition, Gps promoted the phosphorylation of adenosine monophosphate-activated protein kinase (AMPK), and downregulated the key proteins phosphoenolpyruvate carboxy kinase and glucose-6 phosphatase, in the AMPK signaling pathway. Thus, our study suggests that Gps mediate hepatic gluconeogenesis and improve IR via activating AMPK signaling pathway in T2DM mice.
文献关键词:
作者姓名:
Mengxue Song;Dehong Tan;Bin Li;Yanqun Wang;Lin Shi
作者机构:
College of Food Science,Shenyang Agricultural University,Shenyang 110866,China;Key Laboratory of Healthy Food Nutrition and Innovative Manufacturing of Liaoning Province,Shenyang Agricultural University,Shenyang 110866,China
引用格式:
[1]Mengxue Song;Dehong Tan;Bin Li;Yanqun Wang;Lin Shi-.Gypenoside ameliorates insulin resistance and hyperglycemia via the AMPK-mediated signaling pathways in the liver of type 2 diabetes mellitus mice)[J].食品科学与人类健康(英文),2022(05):1347-1354
A类:
Gypenoside,Gypenosides,Gps
B类:
ameliorates,insulin,resistance,hyperglycemia,via,AMPK,mediated,signaling,pathways,liver,type,diabetes,mellitus,mice,Gynostemma,pentaphyllum,also,called,Southern,Ginseng,China,traditional,Asian,folk,medicinal,plant,are,biologically,active,constituents,which,have,been,reported,hypoglycemic,activity,However,underlying,mechanisms,unclear,effects,two,II,diabetic,T2DM,induced,by,high,fat,sugar,diet,streptozotocin,were,evaluated,explore,their,actions,reduced,fasting,blood,glucose,serum,lipids,well,significantly,improved,tolerance,After,treatment,severity,injury,was,glycogen,content,increased,In,addition,promoted,phosphorylation,adenosine,monophosphate,activated,kinase,downregulated,key,proteins,phosphoenolpyruvate,carboxy,phosphatase,Thus,our,study,suggests,that,hepatic,gluconeogenesis,activating
AB值:
0.596808
相似文献
Functionalized gadofullerene ameliorates impaired glycolipid metabolism in type 2 diabetic mice
Jin Wu;Yingbo Chen;Xue Li;Liyuan Ran;Xiangdong Liu;Xiaoshuang Wang;Mingming Zhen;Shanshan Shao;Li Zeng;Chunru Wang;Bin Liang;Jiajun Zhao;Yingjie Wu-Shandong Provincial Hospital,Shandong Laboratory Animal Center,Science and Technology Innovation Center,Shandong First Medical University&Shandong Academy of Medical Sciences,Jinan,Shandong 250021,China;Institute for Genome Engineered Animal Models of Human Diseases,Dalian Medical University,Dalian,Liaoning 116044,China;Beijing National Laboratory for Molecular Sciences,Key Laboratory of Molecular Nanostructure and Nanotechnology,CAS Research/Education Center for Excellence in Molecular Sciences,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100190,China;Center for Life Sciences,School of Life Sciences,Yunnan University,Kunming,Yunnan 650091,China;Department of Molecular Pathobiology,New York University College of Dentistry,New York 10010,USA
Asiatic acid alleviates ischemic myocardial injury in mice by modulating mitophagy-and glycophagy-based energy metabolism
Fan Qiu;Yi Yuan;Wei Luo;Yan-shan Gong;Zhong-ming Zhang;Zhong-min Liu;Ling Gao-Translational Medical Center for Stem Cell Therapy&Institute for Regenerative Medicine,Shanghai East Hospital,Tongji University School of Medicine,Shanghai 200123,China;Department of Cardiovascular and Thoracic Surgery,Shanghai East Hospital,Tongji University School of Medicine,Shanghai 200120,China;Department of Cardiovascular and Thoracic Surgery,Affiliated Hospital of Xuzhou Medical University,Xuzhou 221006,China;Shanghai Institute of Stem Cell Research and Clinical translation,Shanghai East Hospital,Tongji University,Shanghai 200120,China;Shanghai Engineering Research Center for Stem Cell Clinical Treatment,Shanghai 200123,China
Sulforaphane ameliorates non-alcoholic fatty liver disease in mice by promoting FGF21/FGFR1 signaling pathway
Yi-kuan Wu;Zheng-nan Ren;Sheng-long Zhu;Yun-zhou Wu;Gang Wang;Hao Zhang;Wei Chen;Zhao He;Xian-long Ye;Qi-xiao Zhai-State Key Laboratory of Food Science and Technology,Jiangnan University,Wuxi 214122,China;School of Food Science and Technology,Jiangnan University,Wuxi 214122,China;School of Medicine,Jiangnan University,Wuxi 214122,China;College of Life Science,Northeast Agricultural University,Harbin 150038,China;National Engineering Research Center for Functional Food,Jiangnan University,Wuxi 214122,China;Shandong Key Laboratory of Endocrinology and Lipid Metabolism,Jinan 250021,China;School of Medicine,Shandong University,Jinan 250012,China;Ganjiang Chinese Medicine Innovation Center,Nanchang 330000,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。