Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Molecular and Cellular Pediatrics|April 22, 2016
Inhaled protein/peptide-based therapies for respiratory diseaseRobert C Fellner, Shawn T Terryah, Robert Tarran
Physiological Reports|May 18, 2016
Dietary salt regulates uroguanylin expression and signaling activity in the kidney, but not in the intestineRobert C Fellner, Nicholas G Moss, Michael F Goy
Endocrinology|May 24, 2008
Circulating prouroguanylin is processed to its active natriuretic form exclusively within the renal tubulesXun Qian, Nicholas G Moss, Robert C Fellner, et al.
Current Vascular Pharmacology|September 27, 2013
P2 receptors in renal autoregulationZhengrong Guan, Robert C Fellner, Justin Van Beusecum, et al.
American Journal of Physiology. Renal Physiology|August 7, 2015
Endothelin contributes to blunted renal autoregulation observed with a high-salt dietRobert C Fellner, Zhengrong Guan, Anthony K Cook, et al.
American Journal of Physiology. Renal Physiology|November 26, 2010
The rat kidney contains high levels of prouroguanylin (the uroguanylin precursor) but does not express GC-C (the enteric uroguanylin receptor)Xun Qian, Nicholas G Moss, Robert C Fellner, et al.
American Journal of Physiology. Renal Physiology|September 24, 2010
Natriuretic and antikaliuretic effects of uroguanylin and prouroguanylin in the ratNicholas G Moss, Dorothy A Riguera, Robert C Fellner, et al.
American Journal of Physiology. Renal Physiology|May 30, 2014
High-salt diet blunts renal autoregulation by a reactive oxygen species-dependent mechanismRobert C Fellner, Anthony K Cook, Paul M O'Connor, et al.
Endocrinology|May 24, 2008
Uroguanylin, an intestinal natriuretic peptide, is delivered to the kidney as an unprocessed propeptideNicholas G Moss, Robert C Fellner, Xun Qian, et al.
Nature Communications|February 7, 2017
Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factorTongde Wu, Julianne Huang, Patrick J Moore, et al.
Pageof 2