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Showing results (81-90 of 93) with videos related to

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Epigenetics|July 31, 2018
Epigenetics of gastrointestinal diseases: notes from a workshopDavid L Marks, Rachel L Olson, Raul Urrutia, et al.
Communications Biology|February 23, 2023
MacroH2A histone variants modulate enhancer activity to repress oncogenic programs and cellular reprogrammingWazim Mohammed Ismail, Amelia Mazzone, Flavia G Ghiraldini, et al.
Cellular and Molecular Gastroenterology and Hepatology|August 11, 2020
Wnt-induced, TRP53-mediated Cell Cycle Arrest of Precursors Underlies Interstitial Cell of Cajal Depletion During AgingYujiro Hayashi, David T Asuzu, Michael R Bardsley, et al.
Science (New York, N.Y.)|May 28, 2016
The histone H3.3K36M mutation reprograms the epigenome of chondroblastomasDong Fang, Haiyun Gan, Jeong-Heon Lee, et al.
Gastroenterology|August 19, 2023
Hypoxia-Inducible Factor 1α Stabilization Restores Epigenetic Control of Nitric Oxide Synthase 1 Expression and Reverses Gastroparesis in Female Diabetic MiceFei Gao, Yujiro Hayashi, Siva Arumugam Saravanaperumal, et al.
Cell|November 13, 2020
Longitudinal Multi-omics Reveals Subset-Specific Mechanisms Underlying Irritable Bowel SyndromeRuben A T Mars, Yi Yang, Tonya Ward, et al.
Gastroenterology|April 26, 2017
Hyperglycemia Increases Interstitial Cells of Cajal via MAPK1 and MAPK3 Signaling to ETV1 and KIT, Leading to Rapid Gastric EmptyingYujiro Hayashi, Yoshitaka Toyomasu, Siva Arumugam Saravanaperumal, et al.
International Journal of Cancer|February 27, 2015
FAM96A is a novel pro-apoptotic tumor suppressor in gastrointestinal stromal tumorsBettina Schwamb, Robert Pick, Sara Beatriz Mateus Fernández, et al.
Cell|September 11, 2020
Longitudinal Multi-omics Reveals Subset-Specific Mechanisms Underlying Irritable Bowel SyndromeRuben A T Mars, Yi Yang, Tonya Ward, et al.
Scientific Reports|February 23, 2026
Single cell multiomic landscape reveals gene programs driving lipid droplet heterogeneity in hepatic steatosisTejasav S Sehrawat, Shawna A Cooper, Amaia Navarro-Corcuera, et al.
Pageof 10

Showing results (81-90 of 93) with videos related to

Sort By:
Pageof 10
Epigenetics|July 31, 2018
Epigenetics of gastrointestinal diseases: notes from a workshopDavid L Marks, Rachel L Olson, Raul Urrutia, et al.
Communications Biology|February 23, 2023
MacroH2A histone variants modulate enhancer activity to repress oncogenic programs and cellular reprogrammingWazim Mohammed Ismail, Amelia Mazzone, Flavia G Ghiraldini, et al.
Cellular and Molecular Gastroenterology and Hepatology|August 11, 2020
Wnt-induced, TRP53-mediated Cell Cycle Arrest of Precursors Underlies Interstitial Cell of Cajal Depletion During AgingYujiro Hayashi, David T Asuzu, Michael R Bardsley, et al.
Science (New York, N.Y.)|May 28, 2016
The histone H3.3K36M mutation reprograms the epigenome of chondroblastomasDong Fang, Haiyun Gan, Jeong-Heon Lee, et al.
Gastroenterology|August 19, 2023
Hypoxia-Inducible Factor 1α Stabilization Restores Epigenetic Control of Nitric Oxide Synthase 1 Expression and Reverses Gastroparesis in Female Diabetic MiceFei Gao, Yujiro Hayashi, Siva Arumugam Saravanaperumal, et al.
Cell|November 13, 2020
Longitudinal Multi-omics Reveals Subset-Specific Mechanisms Underlying Irritable Bowel SyndromeRuben A T Mars, Yi Yang, Tonya Ward, et al.
Gastroenterology|April 26, 2017
Hyperglycemia Increases Interstitial Cells of Cajal via MAPK1 and MAPK3 Signaling to ETV1 and KIT, Leading to Rapid Gastric EmptyingYujiro Hayashi, Yoshitaka Toyomasu, Siva Arumugam Saravanaperumal, et al.
International Journal of Cancer|February 27, 2015
FAM96A is a novel pro-apoptotic tumor suppressor in gastrointestinal stromal tumorsBettina Schwamb, Robert Pick, Sara Beatriz Mateus Fernández, et al.
Cell|September 11, 2020
Longitudinal Multi-omics Reveals Subset-Specific Mechanisms Underlying Irritable Bowel SyndromeRuben A T Mars, Yi Yang, Tonya Ward, et al.
Scientific Reports|February 23, 2026
Single cell multiomic landscape reveals gene programs driving lipid droplet heterogeneity in hepatic steatosisTejasav S Sehrawat, Shawna A Cooper, Amaia Navarro-Corcuera, et al.
Pageof 10