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C A Ecelbarger

Explore the profile of C A Ecelbarger including associated specialties, affiliations and a list of published articles. Areas
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Articles 38
Citations 1177
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Recent Articles
1.
Riazi S, Maric C, Ecelbarger C
Kidney Int . 2006 Mar; 69(3):471-80. PMID: 16514430
Diabetes mellitus is associated with natriuresis, whereas estrogen has been shown to be renoprotective in diabetic nephropathy and may independently regulate renal sodium reabsorption. The aim of this study was...
2.
Tian Y, Riazi S, Khan O, Klein J, Sugimura Y, Verbalis J, et al.
Kidney Int . 2006 Jan; 69(2):304-12. PMID: 16408120
Renal sodium reabsorption is a key determinant of final urine concentration. Our aim was to determine whether differences existed between aged and young rats in their response to water restriction...
3.
Ecelbarger C
Kidney Int . 2005 Dec; 69(1):10-2. PMID: 16374415
The renal mechanisms underlying sodium retention during liver cirrhosis have been difficult to elucidate. Kim and associates describe a biphasic pattern of regulation of the renal epithelial sodium channel in...
4.
Ecelbarger C, Sands J, Doran J, Cacini W, Kishore B
Kidney Int . 2001 Dec; 60(6):2274-82. PMID: 11737600
Background: Cisplatin (CP) induced polyuria in rats is associated with a reduction in medullary hypertonicity, normally generated by the thick ascending limb (TAL) salt transporters, and the collecting duct urea...
5.
Ecelbarger C, Kim G, Wade J, Knepper M
Exp Neurol . 2001 Sep; 171(2):227-34. PMID: 11573975
Vasopressin plays a role in both salt and water balance in the kidney. Classic studies, utilizing isolated perfused tubules, have revealed that vasopressin increases sodium reabsorption in the kidney thick...
6.
Bickel C, Verbalis J, Knepper M, Ecelbarger C
Am J Physiol Renal Physiol . 2001 Sep; 281(4):F639-48. PMID: 11553510
Renal sodium retention, as a result of increased abundance of sodium transporters, may play a role in the development and/or maintenance of the increased blood pressure in obesity. To address...
7.
Bradford A, Terris J, Ecelbarger C, Klein J, Sands J, Chou C, et al.
Am J Physiol Renal Physiol . 2001 Jun; 281(1):F133-43. PMID: 11399654
UT-A1 is an extremely hydrophobic 929-amino acid integral membrane protein, expressed in the renal inner medullary collecting duct, with a central role in the urinary concentrating mechanism. Previous immunoblotting studies...
8.
Yun J, Schoneberg T, Liu J, Schulz A, Ecelbarger C, Promeneur D, et al.
J Clin Invest . 2000 Dec; 106(11):1361-71. PMID: 11104789
The V2 vasopressin receptor (V2R) plays a key role in the maintenance of a normal body water balance. To generate an in vivo model that allows the physiological and molecular...
9.
Ecelbarger C, Kim G, Terris J, Masilamani S, Mitchell C, Reyes I, et al.
Am J Physiol Renal Physiol . 2000 Jul; 279(1):F46-53. PMID: 10894786
Sodium transport is increased by vasopressin in the cortical collecting ducts of rats and rabbits. Here we investigate, by quantitative immunoblotting, the effects of vasopressin on abundances of the epithelial...
10.
Weinstein L, Yu S, Ecelbarger C
Am J Physiol Renal Physiol . 2000 Apr; 278(4):F507-14. PMID: 10751211
The heterotrimeric G protein G(s) is required for hormone-stimulated intracellular cAMP generation because it couples hormone receptors to the enzyme adenylyl cyclase. Hormones that activate G(s) in the kidney include...