Publication: Intraperitoneal pyrophosphate treatment reduces renal calcifications in Npt2a null mice
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Date
2017
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Public Library of Science
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Caballero, Daniel, Yuwen Li, Jonathan Fetene, Julian Ponsetto, Alyssa Chen, Chuanlong Zhu, Demetrios T. Braddock, and Clemens Bergwitz. 2017. “Intraperitoneal pyrophosphate treatment reduces renal calcifications in Npt2a null mice.” PLoS ONE 12 (7): e0180098. doi:10.1371/journal.pone.0180098. http://dx.doi.org/10.1371/journal.pone.0180098.
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Abstract
Mutations in the proximal tubular sodium-dependent phosphate co-transporters NPT2a and NPT2c have been reported in patients with renal stone disease and nephrocalcinosis, however the relative contribution of genotype, dietary calcium and phosphate, and modifiers of mineralization such as pyrophosphate (PPi) to the formation of renal mineral deposits is unclear. In the present study, we used Npt2a-/- mice to model the renal calcifications observed in these disorders. We observed elevated urinary excretion of PPi in Npt2a-/- mice when compared to WT mice. Presence of two hypomorphic Extracellular nucleotide pyrophosphatase phosphodiesterase 1 (Enpp1asj/asj) alleles decreased urine PPi and worsened renal calcifications in Npt2a-/- mice. These studies suggest that PPi is a thus far unrecognized factor protecting Npt2a-/- mice from the development of renal mineral deposits. Consistent with this conclusion, we next showed that renal calcifications in these mice can be reduced by intraperitoneal administration of sodium pyrophosphate. If confirmed in humans, urine PPi could therefore be of interest for developing new strategies to prevent the nephrocalcinosis and nephrolithiasis seen in phosphaturic disorders.
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Keywords
Biology and Life Sciences, Anatomy, Body Fluids, Urine, Medicine and Health Sciences, Physiology, Experimental Organism Systems, Model Organisms, Mouse Models, Animal Models, Physiological Processes, Calcification, Earth Sciences, Mineralogy, Minerals, Mineral Deposits, Renal System, Kidneys, Physical Sciences, Chemistry, Chemical Compounds, Phosphates, Excretion, Genetics, Genetic Loci, Alleles
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