|
|
Jian Hua Li, Chung-Lin Chou, Bo Li, Oksana Gavrilova, Christoph Eisner, Jürgen Schnermann, Stasia A. Anderson, Chu-Xia Deng, Mark A. Knepper, Jürgen Wess
J Clin Invest. 2009;
119(10):3115
doi:10.1172/JCI39680
Abstract |
Full text
| PDF
| Supplemental material

X
-linked nephrogenic diabetes insipidus (XNDI) is a severe kidney disease caused by inactivating mutations in the V2 vasopressin receptor (V2R) gene that result in the loss of renal urine-concentrating ability. At present, no specific pharmacological therapy has been developed for XNDI, primarily due to the lack of suitable animal models. To develop what we believe to be the first viable animal model of XNDI, we generated mice in which the V2R gene could be conditionally deleted during adulthood by administration of 4-OH-tamoxifen. Radioligand-binding studies confirmed the lack of V2R-binding sites in kidneys following 4-OH-tamoxifen treatment, and further analysis indicated that upon V2R deletion, adult mice displayed all characteristic symptoms of XNDI, including polyuria, polydipsia, and resistance to the antidiuretic actions of vasopressin. Gene expression analysis suggested that activation of renal EP4 PGE2 receptors might compensate for the lack of renal V2R activity in XNDI mice. Strikingly, both acute and chronic treatment of the mutant mice with a selective EP4 receptor agonist greatly reduced all major manifestations of XNDI, including changes in renal morphology. These physiological improvements were most likely due to a direct action on EP4 receptors expressed on collecting duct cells. These findings illustrate the usefulness of the newly generated V2R mutant mice for elucidating and testing new strategies for the potential treatment of humans with XNDI.
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal.
Not all publishers participate in CrossRef, so this information is not comprehensive.
Additionally, data may not reflect the most current citations to this article,
and the data may differ from citation information available from other sources
(for example, Google Scholar, Web of Science, and Scopus).
Total citations by year
in CrossRef
Citations to this article
in CrossRef
(7)
| Title and authors |
Publication |
Year |
Congenital nephrogenic diabetes insipidus: the current state of affairs
Daniel Wesche, Peter M. T. Deen, Nine V. A. M. Knoers
|
Pediatr Nephrol
|
2012 |
Vasopressin-independent targeting of aquaporin-2 by selective E-prostanoid receptor agonists alleviates nephrogenic diabetes insipidus
E. T. B. Olesen, M. R. Rutzler, H. B. Moeller, H. A. Praetorius, R. A. Fenton
|
Proceedings of the National Academy of Sciences
|
2011 |
Fluvastatin modulates renal water reabsorption in vivo through increased AQP2 availability at the apical plasma membrane of collecting duct cells
Giuseppe Procino, Claudia Barbieri, Monica Carmosino, Grazia Tamma, Serena Milano, Leonarda Benedictis, Maria Grazia Mola, Yoskaly Lazo-Fernandez, Giovanna Valenti, Maria Svelto
|
Pflugers Arch - Eur J Physiol
|
2011 |
Comprehensive Physiology
Raymond C. Harris, Ming-Zhi Zhang
|
Comprehensive Physiology
|
2011 |
Towards developing new strategies to reduce the adverse side-effects of nonsteroidal anti-inflammatory drugs
Noritaka Kawada, Toshiki Moriyama, Harumi Kitamura, Ryohei Yamamoto, Yoshiyuki Furumatsu, Isao Matsui, Yoshitsugu Takabatake, Yasuyuki Nagasawa, Enyu Imai, Christopher S. Wilcox
|
Clin Exp Nephrol
|
2011 |
Cell culture models and animal models for studying the patho-physiological role of renal aquaporins
G. Tamma, G. Procino, M. Svelto, G. Valenti
|
Cell. Mol. Life Sci.
|
2011 |
Aquaporins in kidney pathophysiology
Yumi Noda, Eisei Sohara, Eriko Ohta, Sei Sasaki
|
Nat Rev Nephrol
|
2010 |
|