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Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy

Patients with advanced chronic kidney disease (CKD) often present with skeletal abnormalities, a condition known as renal osteodystrophy (ROD). While tissue non-specific alkaline phosphatase (TNAP) and PHOSPHO1 are critical for bone mineralization, their role in the etiology of ROD is unclear. To ad...

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Autores principales: Hsu, Shun-Neng, Stephen, Louise A, Dillon, Scott, Milne, Elspeth, Javaheri, Behzad, Pitsillides, Andrew A, Novak, Amanda, Millán, Jose Luis, MacRae, Vicky E, Staines, Katherine A, Farquharson, Colin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9422252/
https://www.ncbi.nlm.nih.gov/pubmed/35900032
http://dx.doi.org/10.1530/JOE-22-0097
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author Hsu, Shun-Neng
Stephen, Louise A
Dillon, Scott
Milne, Elspeth
Javaheri, Behzad
Pitsillides, Andrew A
Novak, Amanda
Millán, Jose Luis
MacRae, Vicky E
Staines, Katherine A
Farquharson, Colin
author_facet Hsu, Shun-Neng
Stephen, Louise A
Dillon, Scott
Milne, Elspeth
Javaheri, Behzad
Pitsillides, Andrew A
Novak, Amanda
Millán, Jose Luis
MacRae, Vicky E
Staines, Katherine A
Farquharson, Colin
author_sort Hsu, Shun-Neng
collection PubMed
description Patients with advanced chronic kidney disease (CKD) often present with skeletal abnormalities, a condition known as renal osteodystrophy (ROD). While tissue non-specific alkaline phosphatase (TNAP) and PHOSPHO1 are critical for bone mineralization, their role in the etiology of ROD is unclear. To address this, ROD was induced in both WT and Phospho1 knockout (P1KO) mice through dietary adenine supplementation. The mice presented with hyperphosphatemia, hyperparathyroidism, and elevated levels of FGF23 and bone turnover markers. In particular, we noted that in CKD mice, bone mineral density (BMD) was increased in cortical bone (P  < 0.05) but decreased in trabecular bone (P  < 0.05). These changes were accompanied by decreased TNAP (P  < 0.01) and increased PHOSPHO1 (P  < 0.001) expression in WT CKD bones. In P1KO CKD mice, the cortical BMD phenotype was rescued, suggesting that the increased cortical BMD of CKD mice was driven by increased PHOSPHO1 expression. Other structural parameters were also improved in P1KO CKD mice. We further investigated the driver of the mineralization defects, by studying the effects of FGF23, PTH, and phosphate administration on PHOSPHO1 and TNAP expression by primary murine osteoblasts. We found both PHOSPHO1 and TNAP expressions to be downregulated in response to phosphate and PTH. The in vitro data suggest that the TNAP reduction in CKD-MBD is driven by the hyperphosphatemia and/or hyperparathyroidism noted in these mice, while the higher PHOSPHO1 expression may be a compensatory mechanism. Increased PHOSPHO1 expression in ROD may contribute to the disordered skeletal mineralization characteristic of this progressive disorder.
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spelling pubmed-94222522022-08-29 Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy Hsu, Shun-Neng Stephen, Louise A Dillon, Scott Milne, Elspeth Javaheri, Behzad Pitsillides, Andrew A Novak, Amanda Millán, Jose Luis MacRae, Vicky E Staines, Katherine A Farquharson, Colin J Endocrinol Research Patients with advanced chronic kidney disease (CKD) often present with skeletal abnormalities, a condition known as renal osteodystrophy (ROD). While tissue non-specific alkaline phosphatase (TNAP) and PHOSPHO1 are critical for bone mineralization, their role in the etiology of ROD is unclear. To address this, ROD was induced in both WT and Phospho1 knockout (P1KO) mice through dietary adenine supplementation. The mice presented with hyperphosphatemia, hyperparathyroidism, and elevated levels of FGF23 and bone turnover markers. In particular, we noted that in CKD mice, bone mineral density (BMD) was increased in cortical bone (P  < 0.05) but decreased in trabecular bone (P  < 0.05). These changes were accompanied by decreased TNAP (P  < 0.01) and increased PHOSPHO1 (P  < 0.001) expression in WT CKD bones. In P1KO CKD mice, the cortical BMD phenotype was rescued, suggesting that the increased cortical BMD of CKD mice was driven by increased PHOSPHO1 expression. Other structural parameters were also improved in P1KO CKD mice. We further investigated the driver of the mineralization defects, by studying the effects of FGF23, PTH, and phosphate administration on PHOSPHO1 and TNAP expression by primary murine osteoblasts. We found both PHOSPHO1 and TNAP expressions to be downregulated in response to phosphate and PTH. The in vitro data suggest that the TNAP reduction in CKD-MBD is driven by the hyperphosphatemia and/or hyperparathyroidism noted in these mice, while the higher PHOSPHO1 expression may be a compensatory mechanism. Increased PHOSPHO1 expression in ROD may contribute to the disordered skeletal mineralization characteristic of this progressive disorder. Bioscientifica Ltd 2022-07-25 /pmc/articles/PMC9422252/ /pubmed/35900032 http://dx.doi.org/10.1530/JOE-22-0097 Text en © The authors https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License. (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Research
Hsu, Shun-Neng
Stephen, Louise A
Dillon, Scott
Milne, Elspeth
Javaheri, Behzad
Pitsillides, Andrew A
Novak, Amanda
Millán, Jose Luis
MacRae, Vicky E
Staines, Katherine A
Farquharson, Colin
Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title_full Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title_fullStr Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title_full_unstemmed Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title_short Increased PHOSPHO1 expression mediates cortical bone mineral density in renal osteodystrophy
title_sort increased phospho1 expression mediates cortical bone mineral density in renal osteodystrophy
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9422252/
https://www.ncbi.nlm.nih.gov/pubmed/35900032
http://dx.doi.org/10.1530/JOE-22-0097
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