Skip to main navigation Skip to search Skip to main content

Phosphate-induced vascular calcification: Role of pyrophosphate and osteopontin

  • Emory University

Research output: Contribution to journalArticlepeer-review

281 Scopus citations

Abstract

Hyperphosphatemia is thought to underlie medial vascular calcification in advanced renal failure, but calcification can occur in other conditions in the absence of hyperphosphatemia, indicating that additional factors are important. To identify these factors, a model of medial calcification in rat aorta in vitro was developed. Aortic rings from rats were incubated in serum-free medium for 9 d, and calcification was measured as incorporation of 45Ca and confirmed by histology and x-ray diffraction. No calcification occurred in normal vessels despite elevated free Ca2+ and PO4 3- concentrations of 1.8 mM and 3.8 mM, respectively, but mechanical injury resulted in extensive calcification in the media. Co-incubation studies revealed that normal aortas produced a soluble inhibitor of calcification in injured vessels that was destroyed by alkaline phosphatase. Culture of normal aortas with alkaline phosphatase resulted in calcification of the elastic lamina identified as hydroxyapatite by x-ray diffraction. This effect of alkaline phosphatase was not due to dephosphorylation of osteopontin (OPN), and calcification was not increased in aortas from OPN-deficient mice. The inhibitor was identified as pyrophosphate on the basis of the calcification induced in aortas cultured with inorganic pyrophosphatase, the inhibition of calcification in injured aortas by pyrophosphate, and the production of inhibitory levels of pyrophosphate by normal aortas. No calcification occurred under any conditions at a normal PO43- concentration. It is concluded that elevated concentrations of Ca2+ and PO 43- are not sufficient for medial vascular calcification because of inhibition by pyrophosphate. Alkaline phosphatase can promote calcification by hydrolyzing pyrophosphate, but OPN is not an endogenous inhibitor of calcification in rat aorta.

Original languageEnglish
Pages (from-to)1392-1401
Number of pages10
JournalJournal of the American Society of Nephrology
Volume15
Issue number6
DOIs
StatePublished - Jun 2004

Fingerprint

Dive into the research topics of 'Phosphate-induced vascular calcification: Role of pyrophosphate and osteopontin'. Together they form a unique fingerprint.

Cite this