Author:
Wesson Jeffrey A.,Johnson Richard J.,Mazzali Marrilda,Beshensky Anne M.,Stietz Susan,Giachelli Ceci,Liaw Lucy,Alpers Charles E.,Couser William G.,Kleinman Jack G.,Hughes Jeremy
Abstract
ABSTRACT. Calcium nephrolithiasis is the most common form of renal stone disease, with calcium oxalate (CaOx) being the predominant constituent of renal stones. Currentin vitroevidence implicates osteopontin (OPN) as one of several macromolecular inhibitors of urinary crystallization with potentially important actions at several stages of CaOx crystal formation and retention. To determine the importance of OPNin vivo, hyperoxaluria was induced in mice targeted for the deletion of the OPN gene together with wild-type control mice. Both groups were given 1% ethylene glycol, an oxalate precursor, in their drinking water for up to 4 wk. At 4 wk, OPN-deficient mice demonstrated significant intratubular deposits of CaOx crystals, whereas wild-type mice were completely unaffected. Retained crystals in tissue sections were positively identified as CaOx monohydrate by both polarized optical microscopy and x-ray powder diffraction analysis. Furthermore, hyperoxaluria in the OPN wild-type mice was associated with a significant 2- to 4-fold upregulation of renal OPN expression by immunocytochemistry, lending further support to a renoprotective role for OPN. These data indicate that OPN plays a critical renoprotective rolein vivoas an inhibitor of CaOx crystal formation and retention in renal tubules. E-mail: jeremy.hughes@ed.ac.uk
Publisher
American Society of Nephrology (ASN)
Subject
Nephrology,General Medicine
Cited by
239 articles.
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