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The American Journal of Clinical Nutrition|September 22, 2018
Intermittent bolus feeding promotes greater lean growth than continuous feeding in a neonatal piglet modelSamer W El-Kadi, Claire Boutry, Agus Suryawan, et al.
American Journal of Physiology. Endocrinology and Metabolism|February 18, 2016
Pulsatile delivery of a leucine supplement during long-term continuous enteral feeding enhances lean growth in term neonatal pigsClaire Boutry, Samer W El-Kadi, Agus Suryawan, et al.
Pediatric Research|June 6, 2013
Viscera and muscle protein synthesis in neonatal pigs is increased more by intermittent bolus than by continuous feedingSamer W El-Kadi, María C Gazzaneo, Agus Suryawan, et al.
Pediatric Research|June 10, 2011
Differential regulation of protein synthesis and mTOR signaling in skeletal muscle and visceral tissues of neonatal pigs after a mealMaría C Gazzaneo, Renán A Orellana, Agus Suryawan, et al.
American Journal of Physiology. Endocrinology and Metabolism|January 11, 2021
Prematurity blunts the insulin- and amino acid-induced stimulation of translation initiation and protein synthesis in skeletal muscle of neonatal pigsMarko Rudar, Jane K Naberhuis, Agus Suryawan, et al.
American Journal of Physiology. Endocrinology and Metabolism|November 1, 2021
Intermittent bolus feeding does not enhance protein synthesis, myonuclear accretion, or lean growth more than continuous feeding in a premature piglet modelMarko Rudar, Jane K Naberhuis, Agus Suryawan, et al.
American Journal of Physiology. Endocrinology and Metabolism|September 11, 2019
Prematurity blunts the feeding-induced stimulation of translation initiation signaling and protein synthesis in muscle of neonatal pigletsJane K Naberhuis, Agus Suryawan, Hanh V Nguyen, et al.
The Journal of Nutrition|October 21, 2011
Intermittent bolus feeding has a greater stimulatory effect on protein synthesis in skeletal muscle than continuous feeding in neonatal pigsMaría C Gazzaneo, Agus Suryawan, Renán A Orellana, et al.
Nature Communications|December 4, 2019
DNA methylation in AgRP neurons regulates voluntary exercise behavior in miceHarry MacKay, C Anthony Scott, Jack D Duryea, et al.
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