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Pediatric Nephrology (Berlin, Germany)|November 8, 2007
Muscle wasting in chronic kidney disease: the role of the ubiquitin proteasome system and its clinical impactVik R Rajan, William E MitchKidney International|April 17, 2016
In experimental chronic kidney disease or cancer, parathyroid hormone is a novel mediator of cachexiaChristina M Wyatt, William E MitchAnnual Review of Nutrition|July 7, 2009
Navigating between the Scylla and Charybdis of prescribing dietary protein for chronic kidney diseasesHarold A Franch, William E MitchCurrent Opinion in Clinical Nutrition and Metabolic Care|March 4, 2017
Parathyroid hormone stimulates adipose tissue browning: a pathway to muscle wastingSandhya S Thomas, William E MitchThe International Journal of Biochemistry & Cell Biology|June 29, 2005
Cellular signals activating muscle proteolysis in chronic kidney disease: a two-stage processJie Du, Zhaoyong Hu, William E MitchKidney International|October 8, 2015
Molecular mechanisms of insulin resistance in chronic kidney diseaseSandhya S Thomas, Liping Zhang, William E MitchJournal of Renal Nutrition : the Official Journal of the Council on Renal Nutrition of the National Kidney Foundation|October 2, 2022
Muscle Atrophy in CKD: A Historical Perspective of Advancements in Its UnderstandingS Russ Price, William E Mitch, Giacomo GaribottoNature Reviews. Nephrology|November 9, 2021
Pathophysiological mechanisms leading to muscle loss in chronic kidney diseaseXiaonan H Wang, William E Mitch, S Russ PriceClinical Journal of the American Society of Nephrology : CJASN|August 1, 2014
Urea and Ammonia Metabolism and the Control of Renal Nitrogen ExcretionI David Weiner, William E Mitch, Jeff M SandsKidney International|October 10, 2002
The precision of estimating protein intake of patients with chronic renal failureTahsin Masud, Amita Manatunga, George Cotsonis, et al.Pageof 12