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Scientific Reports|June 16, 2016
CREBH-FGF21 axis improves hepatic steatosis by suppressing adipose tissue lipolysisJong-Gil Park, Xu Xu, Sungyun Cho, et al.
The EMBO Journal|November 4, 2018
Hepatic Sel1L-Hrd1 ER-associated degradation (ERAD) manages FGF21 levels and systemic metabolism via CREBHAsmita Bhattacharya, Shengyi Sun, Heting Wang, et al.
Molecular Metabolism|September 17, 2022
Exposure to low-dose perfluorooctanoic acid promotes hepatic steatosis and disrupts the hepatic transcriptome in miceBrecht Attema, Aafke W F Janssen, Deborah Rijkers, et al.
Molecular Metabolism|January 2, 2025
Deficiency of the mitochondrial transporter SLC25A47 minimally impacts hepatic lipid metabolism in fasted and diet-induced obese miceBrecht Attema, Montserrat A de la Rosa Rodriguez, Evert M van Schothorst, et al.
BMC Genomics|June 9, 2018
The whole transcriptome effects of the PPARα agonist fenofibrate on livers of hepatocyte humanized miceMontserrat A de la Rosa Rodriguez, Go Sugahara, Guido J E J Hooiveld, et al.
BMC Genomics|October 10, 2015
The impact of PPARα activation on whole genome gene expression in human precision cut liver slicesAafke W F Janssen, Bark Betzel, Geert Stoopen, et al.
BMC Physiology|November 27, 2012
Linking nutritional regulation of Angptl4, Gpihbp1, and Lmf1 to lipoprotein lipase activity in rodent adipose tissueOlessia Kroupa, Evelina Vorrsjö, Rinke Stienstra, et al.
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