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Fermented rice bran supplementation attenuates colonic injury through modulating intestinal aryl hydrocarbon receptor and innate lymphoid cells in mice with dextran sodium sulfate-induced acute colitis
ViVi Tang Kang Wee, Hitoshi Shirakawa, Sung-Ling Yeh,
Chiu-Li Yeh
營養學院營養醫學研究中心
營養學院高齡營養研究中心
保健營養學系
臺北醫學大學附設醫院
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重量
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Medicine and Dentistry
Injury
100%
Supplementation
100%
Dextran Sulfate
100%
Colitis
100%
Lymphoid Cell
100%
Aromatic Hydrocarbon Receptor
100%
Intestinal Permeability
22%
Interleukin 22
22%
Disease Severity
11%
Tight Junction
11%
Receptor Expression
11%
Cytokine Production
11%
Inflammatory Cytokine
11%
Dextran Sulfate Sodium-Induced Colitis
11%
C57BL/6
11%
Gut Microbiota
11%
Dysbiosis
11%
Pharmacology, Toxicology and Pharmaceutical Science
Mouse
100%
Injury
100%
Colitis
100%
Dextran Sulfate
100%
Aromatic Hydrocarbon Receptor
100%
Intestinal Permeability
22%
Feces microflora
22%
Interleukin 22
22%
Disease Severity
11%
Cytokine
11%
C57BL 6 Mouse
11%
Dextran Sulfate Sodium-Induced Colitis
11%
Intestine Flora
11%
Dysbiosis
11%
Immunology and Microbiology
Mouse
100%
Innate Lymphoid Cell
100%
Colitis
100%
Interleukin 22
28%
Feces microflora
28%
Inflammatory Cytokine
14%
C57BL 6 Mouse
14%
Cytokine Production
14%
Intestine Flora
14%
Bacterial Population
14%
Tight Junction
14%
Food Science
Sodium
100%