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The Journal of Biological Chemistry|April 17, 2019
Low plasma adropin concentrations increase risks of weight gain and metabolic dysregulation in response to a high-sugar diet in male nonhuman primatesAndrew A Butler, Jinsong Zhang, Candice A Price, et al.
Obesity (Silver Spring, Md.)|July 28, 2016
Inverse association between carbohydrate consumption and plasma adropin concentrations in humansJoseph R Stevens, Monica L Kearney, Marie-Pierre St-Onge, et al.
American Journal of Physiology. Endocrinology and Metabolism|August 10, 2006
Inactivation of PKCtheta leads to increased susceptibility to obesity and dietary insulin resistance in miceZhanguo Gao, Zhong Wang, Xiaoying Zhang, et al.
Diabetes|May 23, 2014
Regulation of substrate oxidation preferences in muscle by the peptide hormone adropinSu Gao, Ryan P McMillan, Jordi Jacas, et al.
ACS Chemical Biology|November 25, 2010
Identification of SR3335 (ML-176): a synthetic RORα selective inverse agonistNaresh Kumar, Douglas J Kojetin, Laura A Solt, et al.
Journal of Lipid Research|February 7, 2019
Fructose-induced hypertriglyceridemia in rhesus macaques is attenuated with fish oil or ApoC3 RNA interferenceAndrew A Butler, Candice A Price, James L Graham, et al.
Cell Metabolism|July 2, 2014
Biphasic effect of melanocortin agonists on metabolic rate and body temperatureBeth Lute, William Jou, Dalya M Lateef, et al.
Molecular Metabolism|June 27, 2025
Adropin expression reflects circadian, lipoprotein, and mitochondrial processes in human tissuesJoseph R Stevens, Clemence Girardet, Mingqi Zhou, et al.
The Journal of Biological Chemistry|July 31, 2020
Hepatocyte expression of the micropeptide adropin regulates the liver fasting response and is enhanced by caloric restrictionSubhashis Banerjee, Sarbani Ghoshal, Joseph R Stevens, et al.
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