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101篇 您的检索式:作者名="HIGASHIMURA"
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1Partially hydrolyzed guar gum attenuates non-alcoholic fatty liver disease in mice through the gut-liver axis显示文摘BACKGROUND The gut-liver axis has attracted much interest in the context of chronic liver disease pathogenesis.Prebiotics such as dietary fibers were shown to attenuate non-alcoholic fatty liver disease(NAFLD)by modulating gut microbiota.Partially hydrolyzed guar gum(PHGG),a water-soluble dietary fiber,has been reported to alleviate the symptoms of various intestinal diseases and metabolic syndromes.However,its effects on NAFLD remain to be fully elucidated.To determine whether treatment with PHGG attenuates NAFLD development in mice through the gut-liver axis.METHODS Seven-week-old male C57BL/6J mice with increased intestinal permeability were fed a control or atherogenic(Ath)diet(a mouse model of NAFLD)for 8 wk,with or without 5%PHGG.Increased intestinal permeability was induced through chronic intermittent administration of low-dose dextran sulfate sodium.Body weight,liver weight,macroscopic findings in the liver,blood biochemistry[aspartate aminotransferase(AST)and alanine aminotransferase(ALT),total cholesterol,triglyceride,free fatty acids,and glucose levels],liver histology,myeloperoxidase activity in liver tissue,mRNA expression in the liver and intestine,serum endotoxin levels in the portal vein,intestinal permeability,and microbiota and short-chain fatty acid(SCFA)profiles in the cecal samples were investigated.RESULTS Mice with increased intestinal permeability subjected to the Ath diet showed significantly increased serum AST and ALT levels,liver fat accumulation,liver inflammatory(tumor necrosis factor-αand monocyte chemotactic protein-1)and fibrogenic(collagen 1a1 andαsmooth muscle actin)marker levels,and liver myeloperoxidase activity,which were significantly attenuated by PHGG treatment.Furthermore,the Ath diet combined with increased intestinal permeability resulted in elevated portal endotoxin levels and activated toll-like receptor(TLR)4 and TLR9 expression,confirming that intestinal permeability was significantly elevated,as observed by evaluating the lumen-to-blood clearance of fluorescein isothiocyanate-conjugated dextran.PHGG treatment did not affect fatty acid metabolism in the liver.However,it decreased lipopolysaccharide signaling through the gut-liver axis.In addition,it significantly increased the abundance of cecal Bacteroides and Clostridium subcluster XIVa.Treatment with PHGG markedly increased the levels of SCFAs,particularly,butyric acid,acetic acid,propionic acid,and formic acid,in the cecal samples.CONCLUSION PHGG partially prevented NAFLD development in mice through the gut-liver axis by modulating microbiota and downstream SCFA profiles.Shun Takayama Kazuhiro Katada Tomohisa Takagi Takaya Iida Tomohiro Ueda Katsura Mizushima Yasuki Higashimura Mayuko Morita Tetsuya Okayama Kazuhiro Kamada Kazuhiko Uchiyama Osamu Handa Takeshi Ishikawa Zenta Yasukawa Tsutomu Okubo Yoshito Itoh Yuji Naito 2021World Journal of Gastroenterology2021,27,18:4
2Living cationic polymerization of isobutylvin ylether with hydrogen iodide/metal acetylacetonate as initiating system显示文摘SAWAMOTO M KOJIMA K HIGASHIMURA T 1991Makromol Chem1991,192,:2
3Progress of Theories of Free Radical Crosslinking Copolymerization显示文摘 Sawamoto M Higashimura T 1984Macromolecules1984,17,3:1
4Cationic Polymerization of Alkyl-1,3-Butadienes 显示文摘Hasegawa K I Asami R Higashimura T 1977Macromolecules1977,10,3:1
5Living cationic polymerization of isobutyl vinyl ether initiated by the trimethylsilyl iodide/zinc iodide system显示文摘Mitsuo Sawamoto Masami Kamigaito Kazushige Kojima Toshinobu Higashimura 1988Polymer Bulletin1988,,4:1
6Living cationic polymerization of vinyl monomers by organoaluminum halides显示文摘Toshinobu Higashimura Yasuhisa Kishimoto Sadahito Aoshima 1987Polymer Bulletin1987,,2:1
7Cationic Polymerization Mechcmisms, Fundamental and Applications显示文摘 Miyanoto M Sawamoto M 1985Macromolecules1985,18,1:1
8Viscoelastic properties of aqueous solutions of the phosphopolysaccharide 'viilian' from Lactococcus lactis subsp, cremoris SBT 0495显示文摘OBA T HIGASHIMURA M IWASAKI T 1999Carbohydrate Polymers1999,39,:1
9Living cationic polymerization of vinyl monomers by organoaluminium halides显示文摘Sadahito Aoshima Toshinobu Higashimura 1986Polymer Bulletin1986,,5:1
10Designed Polymers by Carbocationic Macromolecular Engineering Theory and Practice 显示文摘 Aoshima S Sawamoto M 1988Makromolek Chem Macromolec Syrmp1988,13,2:1
11Development of a new herbicide, pyraflufen-ethyl显示文摘Miuray Y Mabuchi T Higashimura M 2003Pestic Sci2003,28,:1
12Novel method for realizing lossless floating immittance using current conveyors显示文摘HIGASHIMURA M FUKUI Y 1987Electron Lett1987,23,10:1
13Discussion of the Dynamics for the Atom Transfer Radical Polymerization显示文摘 Sawanoto M Higashimura T 1989Macromolecules1989,22,15:1
14Ethanol-water separation by pervaporation throughsubstituted-polyacetylene membranes显示文摘MASUDA T TANG B HIGASHIMURA T 1986Polym J1986,18,7:1
15查看详情显示文摘Miyamoto M Sawamoto M Higashimura T 0,,03:1
16Absorption behavior of metal ions on chitin/cellulose composite fibers with chemical modification by EDTA显示文摘Izumi S Shimizu Y Higashimura T 2002Textile Res J2002,72,:1
17The Free Radical Copolymerization of Styrene- Maleic Anhydride显示文摘 Okamoto C Higashimura T 1987Macromolecules1987,20,3:1
18The Development of Atom Transfer Radical Copolymerization显示文摘 Kojima K Sawamoto M 1988Polym Bull1988,19,2:1
19Low Temperature Thermooxidation and Degradation of Polyolefins显示文摘 Aoshima S Higashimura T 1989Macromolecules1989,22,4:1
20Recent Development in Free Radical Block Copolymerization显示文摘 Kojima K Sawamoto M 1989Makromolek Chem1989,45,5:1
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