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Hepatology Research : the Official Journal of the Japan Society of Hepatology
|
September 17, 2013
Cysteine sulfinic acid decarboxylase regulation: A role for farnesoid X receptor and small heterodimer partner in murine hepatic taurine metabolism
Thomas A Kerr, Yuri Matsumoto, Hitoshi Matsumoto, et al.
Obesity (Silver Spring, Md.)
|
February 24, 2023
Sodium ferrous citrate and 5-aminolevulinic acid improve type 2 diabetes by maintaining muscle and mitochondrial health
Naho Kitamura, Shiyang Zhang, Jean-David Morel, et al.
Gastroenterology
|
August 13, 2013
Bile acids increase levels of microRNAs 221 and 222, leading to degradation of CDX2 during esophageal carcinogenesis
Juntaro Matsuzaki, Hidekazu Suzuki, Hitoshi Tsugawa, et al.
Iscience
|
September 15, 2020
Asperuloside Improves Obesity and Type 2 Diabetes through Modulation of Gut Microbiota and Metabolic Signaling
Anna Nakamura, Yoko Yokoyama, Kazuki Tanaka, et al.
Plos One
|
May 22, 2020
A high-salt/high fat diet alters circadian locomotor activity and glucocorticoid synthesis in mice
Yoko Yokoyama, Takahiro J Nakamura, Karen Yoshimoto, et al.
Plos One
|
September 7, 2012
Bile acid binding resin improves metabolic control through the induction of energy expenditure
Mitsuhiro Watanabe, Kohkichi Morimoto, Sander M Houten, et al.
Nature
|
January 10, 2006
Bile acids induce energy expenditure by promoting intracellular thyroid hormone activation
Mitsuhiro Watanabe, Sander M Houten, Chikage Mataki, et al.
Cornea
|
October 6, 2012
The antiaging approach for the treatment of dry eye
Kazuo Tsubota, Motoko Kawashima, Takaaki Inaba, et al.
Diabetes Research and Clinical Practice
|
May 19, 2015
Bile acid binding resin improves hepatic insulin sensitivity by reducing cholesterol but not triglyceride levels in the liver
Hirotsune Tagawa, Junichiro Irie, Arata Itoh, et al.
Metabolism: Clinical and Experimental
|
May 20, 2017
Bile acid binding resin prevents fat accumulation through intestinal microbiota in high-fat diet-induced obesity in mice
Yukie Kusumoto, Junichiro Irie, Kaho Iwabu, et al.
Page
of 7
Search research articles
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Showing results (51-60 of 66) with videos related to
Sort By:
Page
of 7
Hepatology Research : the Official Journal of the Japan Society of Hepatology
|
September 17, 2013
Cysteine sulfinic acid decarboxylase regulation: A role for farnesoid X receptor and small heterodimer partner in murine hepatic taurine metabolism
Thomas A Kerr, Yuri Matsumoto, Hitoshi Matsumoto, et al.
Obesity (Silver Spring, Md.)
|
February 24, 2023
Sodium ferrous citrate and 5-aminolevulinic acid improve type 2 diabetes by maintaining muscle and mitochondrial health
Naho Kitamura, Shiyang Zhang, Jean-David Morel, et al.
Gastroenterology
|
August 13, 2013
Bile acids increase levels of microRNAs 221 and 222, leading to degradation of CDX2 during esophageal carcinogenesis
Juntaro Matsuzaki, Hidekazu Suzuki, Hitoshi Tsugawa, et al.
Iscience
|
September 15, 2020
Asperuloside Improves Obesity and Type 2 Diabetes through Modulation of Gut Microbiota and Metabolic Signaling
Anna Nakamura, Yoko Yokoyama, Kazuki Tanaka, et al.
Plos One
|
May 22, 2020
A high-salt/high fat diet alters circadian locomotor activity and glucocorticoid synthesis in mice
Yoko Yokoyama, Takahiro J Nakamura, Karen Yoshimoto, et al.
Plos One
|
September 7, 2012
Bile acid binding resin improves metabolic control through the induction of energy expenditure
Mitsuhiro Watanabe, Kohkichi Morimoto, Sander M Houten, et al.
Nature
|
January 10, 2006
Bile acids induce energy expenditure by promoting intracellular thyroid hormone activation
Mitsuhiro Watanabe, Sander M Houten, Chikage Mataki, et al.
Cornea
|
October 6, 2012
The antiaging approach for the treatment of dry eye
Kazuo Tsubota, Motoko Kawashima, Takaaki Inaba, et al.
Diabetes Research and Clinical Practice
|
May 19, 2015
Bile acid binding resin improves hepatic insulin sensitivity by reducing cholesterol but not triglyceride levels in the liver
Hirotsune Tagawa, Junichiro Irie, Arata Itoh, et al.
Metabolism: Clinical and Experimental
|
May 20, 2017
Bile acid binding resin prevents fat accumulation through intestinal microbiota in high-fat diet-induced obesity in mice
Yukie Kusumoto, Junichiro Irie, Kaho Iwabu, et al.
Page
of 7