Physiological Regulation of Renal Sodium-Dependent Phosphate Cotransporters
Author:
Affiliation:
1. Nutritional Science, Department of Nutrition, School of Medicine, Tokushima University
Publisher
Physiological Society of Japan
Subject
General Medicine,Physiology
Link
https://www.jstage.jst.go.jp/article/jjphysiol/54/2/54_2_93/_pdf
Reference49 articles.
1. 1. Knox FG and Haramati A: Renal regulation of phosphate excretion. In: The Kidney: Physiology and Pathphysiology, ed. Seldin GW and Giebisch G, Raven, New York, p 1351-1396, 1985
2. 2. Berndt TJ and Knox FG: Renal regulation of phosphate excretion. In: The Kidney, Physiology and Pathophysiology, ed. Seldin DW and Giebisch G, Raven, New York, p 2511-2532, 1992
3. 3. Murer H, Hernando N, Forster I, and Biber J: Regulation of Na/Pi transporter in the proximal tubule. Annu Rev Physiol 65: 531-542, 2003
4. 4. Beck L, Karaplis AC, Amizuka N, Hewson AS, Ozawa H, and Tenenhouse HS: Targeted inactivation of Npt 2 in mice leads to severe renal phosphate wasting, hypercalciuria and skeletal annormalities. Proc Natl Acad Sci USA 95: 5372-5377, 1998
5. 5. Tenenhouse HS, Martel J, Gauthier C, Segawa H, and Miyamoto K: Differential effects of Npt2a gene ablation and X-linked Hyp mutation on renal expression of Npt2c. Am J Physiol 285: F1271-8, 2003
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