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Trends in Endocrinology and Metabolism: TEM
|
March 7, 2015
Functional genomics of the CDKN2A/B locus in cardiovascular and metabolic disease: what have we learned from GWASs?
Sarah Anissa Hannou, Kristiaan Wouters, Réjane Paumelle, et al.
Frontiers in Endocrinology
|
November 23, 2017
Cofactors As Metabolic Sensors Driving Cell Adaptation in Physiology and Disease
Nabil Rabhi, Sarah Anissa Hannou, Philippe Froguel, et al.
Diabetes
|
May 3, 2014
Cdkn2a/p16Ink4a regulates fasting-induced hepatic gluconeogenesis through the PKA-CREB-PGC1α pathway
Kadiombo Bantubungi, Sarah-Anissa Hannou, Sandrine Caron-Houde, et al.
Blood
|
June 4, 2011
p16INK4a deficiency promotes IL-4-induced polarization and inhibits proinflammatory signaling in macrophages
Céline Cudejko, Kristiaan Wouters, Lucía Fuentes, et al.
Molecular Metabolism
|
December 15, 2017
Cdkn2a deficiency promotes adipose tissue browning
Nabil Rabhi, Sarah Anissa Hannou, Xavier Gromada, et al.
Plos One
|
March 10, 2012
Bone marrow p16INK4a-deficiency does not modulate obesity, glucose homeostasis or atherosclerosis development
Kristiaan Wouters, Céline Cudejko, Marion J J Gijbels, et al.
Cell Reports
|
April 28, 2016
KAT2B Is Required for Pancreatic Beta Cell Adaptation to Metabolic Stress by Controlling the Unfolded Protein Response
Nabil Rabhi, Pierre-Damien Denechaud, Xavier Gromada, et al.
The Journal of Biological Chemistry
|
October 10, 2020
CDKN2A/p16INK4a suppresses hepatic fatty acid oxidation through the AMPKα2-SIRT1-PPARα signaling pathway
Yann Deleye, Alexia Karen Cotte, Sarah Anissa Hannou, et al.
Diabetes
|
May 22, 2023
β-Cell-Specific E2f1 Deficiency Impairs Glucose Homeostasis, β-Cell Identity, and Insulin Secretion
Frédérik Oger, Cyril Bourouh, Marika Elsa Friano, et al.
Journal of Hepatology
|
January 25, 2019
Hepatic PPARα is critical in the metabolic adaptation to sepsis
Réjane Paumelle, Joel T Haas, Nathalie Hennuyer, et al.
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of 1
Search research articles
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Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
Trends in Endocrinology and Metabolism: TEM
|
March 7, 2015
Functional genomics of the CDKN2A/B locus in cardiovascular and metabolic disease: what have we learned from GWASs?
Sarah Anissa Hannou, Kristiaan Wouters, Réjane Paumelle, et al.
Frontiers in Endocrinology
|
November 23, 2017
Cofactors As Metabolic Sensors Driving Cell Adaptation in Physiology and Disease
Nabil Rabhi, Sarah Anissa Hannou, Philippe Froguel, et al.
Diabetes
|
May 3, 2014
Cdkn2a/p16Ink4a regulates fasting-induced hepatic gluconeogenesis through the PKA-CREB-PGC1α pathway
Kadiombo Bantubungi, Sarah-Anissa Hannou, Sandrine Caron-Houde, et al.
Blood
|
June 4, 2011
p16INK4a deficiency promotes IL-4-induced polarization and inhibits proinflammatory signaling in macrophages
Céline Cudejko, Kristiaan Wouters, Lucía Fuentes, et al.
Molecular Metabolism
|
December 15, 2017
Cdkn2a deficiency promotes adipose tissue browning
Nabil Rabhi, Sarah Anissa Hannou, Xavier Gromada, et al.
Plos One
|
March 10, 2012
Bone marrow p16INK4a-deficiency does not modulate obesity, glucose homeostasis or atherosclerosis development
Kristiaan Wouters, Céline Cudejko, Marion J J Gijbels, et al.
Cell Reports
|
April 28, 2016
KAT2B Is Required for Pancreatic Beta Cell Adaptation to Metabolic Stress by Controlling the Unfolded Protein Response
Nabil Rabhi, Pierre-Damien Denechaud, Xavier Gromada, et al.
The Journal of Biological Chemistry
|
October 10, 2020
CDKN2A/p16INK4a suppresses hepatic fatty acid oxidation through the AMPKα2-SIRT1-PPARα signaling pathway
Yann Deleye, Alexia Karen Cotte, Sarah Anissa Hannou, et al.
Diabetes
|
May 22, 2023
β-Cell-Specific E2f1 Deficiency Impairs Glucose Homeostasis, β-Cell Identity, and Insulin Secretion
Frédérik Oger, Cyril Bourouh, Marika Elsa Friano, et al.
Journal of Hepatology
|
January 25, 2019
Hepatic PPARα is critical in the metabolic adaptation to sepsis
Réjane Paumelle, Joel T Haas, Nathalie Hennuyer, et al.
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of 1