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Inflammatory Intestinal Diseases
|
June 14, 2021
Hypoxia Reduces the Transcription of Fibrotic Markers in the Intestinal Mucosa
Simona Simmen, Max Maane, Sarah Rogler, et al.
Journal of Inflammation (London, England)
|
August 29, 2020
Anatabine ameliorates intestinal inflammation and reduces the production of pro-inflammatory factors in a dextran sulfate sodium mouse model of colitis
Pedro A Ruiz Castro, Ulrike Kogel, Giuseppe Lo Sasso, et al.
Cell
|
June 6, 2015
PQBP1 Is a Proximal Sensor of the cGAS-Dependent Innate Response to HIV-1
Sunnie M Yoh, Monika Schneider, Janna Seifried, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology
|
January 21, 2021
Systemic Jak1 activation provokes hepatic inflammation and imbalanced FGF23 production and cleavage
Arezoo Daryadel, Pedro A Ruiz, Nicole Gehring, et al.
Cellular and Molecular Gastroenterology and Hepatology
|
February 9, 2017
Hypoxia Positively Regulates the Expression of pH-Sensing G-Protein-Coupled Receptor OGR1 (GPR68)
Cheryl de Vallière, Jesus Cosin-Roger, Simona Simmen, et al.
BMJ Open
|
January 7, 2017
Protocol for a prospective, controlled, observational study to evaluate the influence of hypoxia on healthy volunteers and patients with inflammatory bowel disease: the Altitude IBD Study
Stephan Vavricka, Pedro A Ruiz, Sylvie Scharl, et al.
Journal of Crohn'S & Colitis
|
December 12, 2018
Lack of the pH-sensing Receptor TDAG8 [GPR65] in Macrophages Plays a Detrimental Role in Murine Models of Inflammatory Bowel Disease
Irina Tcymbarevich, Shola M Richards, Giancarlo Russo, et al.
Journal of Crohn'S & Colitis
|
August 31, 2018
Intestinal Activation of pH-Sensing Receptor OGR1 [GPR68] Contributes to Fibrogenesis
Senta Hutter, Wouter T van Haaften, Anouk Hünerwadel, et al.
Inflammatory Bowel Diseases
|
July 28, 2021
New Therapeutic Approach for Intestinal Fibrosis Through Inhibition of pH-Sensing Receptor GPR4
Bruce Weder, Fabian Schefer, Wouter Tobias van Haaften, et al.
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of 4
Search research articles
Search
Showing results (31-40 of 39) with videos related to
Sort By:
Page
of 4
You have reached the last page of results.
This site can display upto 39 results.
Inflammatory Intestinal Diseases
|
June 14, 2021
Hypoxia Reduces the Transcription of Fibrotic Markers in the Intestinal Mucosa
Simona Simmen, Max Maane, Sarah Rogler, et al.
Journal of Inflammation (London, England)
|
August 29, 2020
Anatabine ameliorates intestinal inflammation and reduces the production of pro-inflammatory factors in a dextran sulfate sodium mouse model of colitis
Pedro A Ruiz Castro, Ulrike Kogel, Giuseppe Lo Sasso, et al.
Cell
|
June 6, 2015
PQBP1 Is a Proximal Sensor of the cGAS-Dependent Innate Response to HIV-1
Sunnie M Yoh, Monika Schneider, Janna Seifried, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology
|
January 21, 2021
Systemic Jak1 activation provokes hepatic inflammation and imbalanced FGF23 production and cleavage
Arezoo Daryadel, Pedro A Ruiz, Nicole Gehring, et al.
Cellular and Molecular Gastroenterology and Hepatology
|
February 9, 2017
Hypoxia Positively Regulates the Expression of pH-Sensing G-Protein-Coupled Receptor OGR1 (GPR68)
Cheryl de Vallière, Jesus Cosin-Roger, Simona Simmen, et al.
BMJ Open
|
January 7, 2017
Protocol for a prospective, controlled, observational study to evaluate the influence of hypoxia on healthy volunteers and patients with inflammatory bowel disease: the Altitude IBD Study
Stephan Vavricka, Pedro A Ruiz, Sylvie Scharl, et al.
Journal of Crohn'S & Colitis
|
December 12, 2018
Lack of the pH-sensing Receptor TDAG8 [GPR65] in Macrophages Plays a Detrimental Role in Murine Models of Inflammatory Bowel Disease
Irina Tcymbarevich, Shola M Richards, Giancarlo Russo, et al.
Journal of Crohn'S & Colitis
|
August 31, 2018
Intestinal Activation of pH-Sensing Receptor OGR1 [GPR68] Contributes to Fibrogenesis
Senta Hutter, Wouter T van Haaften, Anouk Hünerwadel, et al.
Inflammatory Bowel Diseases
|
July 28, 2021
New Therapeutic Approach for Intestinal Fibrosis Through Inhibition of pH-Sensing Receptor GPR4
Bruce Weder, Fabian Schefer, Wouter Tobias van Haaften, et al.
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of 4