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A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats

The alternative phosphate binder calcium acetate/magnesium carbonate (CaMg) effectively reduces hyperphosphatemia, the most important inducer of vascular calcification, in chronic renal failure (CRF). In this study, the effect of low dose CaMg on vascular calcification and possible effects of CaMg o...

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Autores principales: Neven, Ellen, De Schutter, Tineke M., Dams, Geert, Gundlach, Kristina, Steppan, Sonja, Büchel, Janine, Passlick-Deetjen, Jutta, D'Haese, Patrick C., Behets, Geert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4167554/
https://www.ncbi.nlm.nih.gov/pubmed/25229549
http://dx.doi.org/10.1371/journal.pone.0107067
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author Neven, Ellen
De Schutter, Tineke M.
Dams, Geert
Gundlach, Kristina
Steppan, Sonja
Büchel, Janine
Passlick-Deetjen, Jutta
D'Haese, Patrick C.
Behets, Geert J.
author_facet Neven, Ellen
De Schutter, Tineke M.
Dams, Geert
Gundlach, Kristina
Steppan, Sonja
Büchel, Janine
Passlick-Deetjen, Jutta
D'Haese, Patrick C.
Behets, Geert J.
author_sort Neven, Ellen
collection PubMed
description The alternative phosphate binder calcium acetate/magnesium carbonate (CaMg) effectively reduces hyperphosphatemia, the most important inducer of vascular calcification, in chronic renal failure (CRF). In this study, the effect of low dose CaMg on vascular calcification and possible effects of CaMg on bone turnover, a persistent clinical controversy, were evaluated in chronic renal failure rats. Adenine-induced CRF rats were treated daily with 185 mg/kg CaMg or vehicle for 5 weeks. The aortic calcium content and area% calcification were measured to evaluate the effect of CaMg. To study the effect of CaMg on bone remodeling, rats underwent 5/6th nephrectomy combined with either a normal phosphorus diet or a high phosphorus diet to differentiate between possible bone effects resulting from either CaMg-induced phosphate deficiency or a direct effect of Mg. Vehicle or CaMg was administered at doses of 185 and 375 mg/kg/day for 8 weeks. Bone histomorphometry was performed. Aortic calcium content was significantly reduced by 185 mg/kg/day CaMg. CaMg ameliorated features of hyperparathyroid bone disease. In CRF rats on a normal phosphorus diet, the highest CaMg dose caused an increase in osteoid area due to phosphate depletion. The high phosphorus diet combined with the highest CaMg dose prevented the phosphate depletion and thus the rise in osteoid area. CaMg had no effect on osteoblast/osteoclast or dynamic bone parameters, and did not alter bone Mg levels. CaMg at doses that reduce vascular calcification did not show any harmful effect on bone turnover.
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spelling pubmed-41675542014-09-22 A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats Neven, Ellen De Schutter, Tineke M. Dams, Geert Gundlach, Kristina Steppan, Sonja Büchel, Janine Passlick-Deetjen, Jutta D'Haese, Patrick C. Behets, Geert J. PLoS One Research Article The alternative phosphate binder calcium acetate/magnesium carbonate (CaMg) effectively reduces hyperphosphatemia, the most important inducer of vascular calcification, in chronic renal failure (CRF). In this study, the effect of low dose CaMg on vascular calcification and possible effects of CaMg on bone turnover, a persistent clinical controversy, were evaluated in chronic renal failure rats. Adenine-induced CRF rats were treated daily with 185 mg/kg CaMg or vehicle for 5 weeks. The aortic calcium content and area% calcification were measured to evaluate the effect of CaMg. To study the effect of CaMg on bone remodeling, rats underwent 5/6th nephrectomy combined with either a normal phosphorus diet or a high phosphorus diet to differentiate between possible bone effects resulting from either CaMg-induced phosphate deficiency or a direct effect of Mg. Vehicle or CaMg was administered at doses of 185 and 375 mg/kg/day for 8 weeks. Bone histomorphometry was performed. Aortic calcium content was significantly reduced by 185 mg/kg/day CaMg. CaMg ameliorated features of hyperparathyroid bone disease. In CRF rats on a normal phosphorus diet, the highest CaMg dose caused an increase in osteoid area due to phosphate depletion. The high phosphorus diet combined with the highest CaMg dose prevented the phosphate depletion and thus the rise in osteoid area. CaMg had no effect on osteoblast/osteoclast or dynamic bone parameters, and did not alter bone Mg levels. CaMg at doses that reduce vascular calcification did not show any harmful effect on bone turnover. Public Library of Science 2014-09-17 /pmc/articles/PMC4167554/ /pubmed/25229549 http://dx.doi.org/10.1371/journal.pone.0107067 Text en © 2014 Neven et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Neven, Ellen
De Schutter, Tineke M.
Dams, Geert
Gundlach, Kristina
Steppan, Sonja
Büchel, Janine
Passlick-Deetjen, Jutta
D'Haese, Patrick C.
Behets, Geert J.
A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title_full A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title_fullStr A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title_full_unstemmed A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title_short A Magnesium Based Phosphate Binder Reduces Vascular Calcification without Affecting Bone in Chronic Renal Failure Rats
title_sort magnesium based phosphate binder reduces vascular calcification without affecting bone in chronic renal failure rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4167554/
https://www.ncbi.nlm.nih.gov/pubmed/25229549
http://dx.doi.org/10.1371/journal.pone.0107067
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