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Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation

Medullary nephrocalcinosis is a hallmark of medullary sponge kidney (MSK). We had the opportunity to study a spontaneous calcification process in vitro by utilizing the renal cells of a patient with MSK who was heterozygous for the c.-27 + 18G>A variant in the GDNF gene encoding glial cell-derive...

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Autores principales: Mezzabotta, Federica, Cristofaro, Rosalba, Ceol, Monica, Del Prete, Dorella, Priante, Giovanna, Familiari, Alessandra, Fabris, Antonia, D'Angelo, Angela, Gambaro, Giovanni, Anglani, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4395202/
https://www.ncbi.nlm.nih.gov/pubmed/25692823
http://dx.doi.org/10.1111/jcmm.12514
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author Mezzabotta, Federica
Cristofaro, Rosalba
Ceol, Monica
Del Prete, Dorella
Priante, Giovanna
Familiari, Alessandra
Fabris, Antonia
D'Angelo, Angela
Gambaro, Giovanni
Anglani, Franca
author_facet Mezzabotta, Federica
Cristofaro, Rosalba
Ceol, Monica
Del Prete, Dorella
Priante, Giovanna
Familiari, Alessandra
Fabris, Antonia
D'Angelo, Angela
Gambaro, Giovanni
Anglani, Franca
author_sort Mezzabotta, Federica
collection PubMed
description Medullary nephrocalcinosis is a hallmark of medullary sponge kidney (MSK). We had the opportunity to study a spontaneous calcification process in vitro by utilizing the renal cells of a patient with MSK who was heterozygous for the c.-27 + 18G>A variant in the GDNF gene encoding glial cell-derived neurotrophic factor. The cells were obtained by collagenase digestion of papillary tissues from the MSK patient and from two patients who had no MSK or nephrocalcinosis. These cells were typed by immunocytochemistry, and the presence of mineral deposits was studied using von Kossa staining, scanning electron microscopy analysis and an ALP assay. Osteoblastic lineage markers were studied using immunocytochemistry and RT-PCR. Staminality markers were also analysed using flow cytometry, magnetic cell separation technology, immunocytochemistry and RT-PCR. Starting from p2, MSK and control cells formed nodules with a behaviour similar to that of calcifying pericytes; however, Ca(2)PO(4) was only found in the MSK cultures. The MSK cells had morphologies and immunophenotypes resembling those of pericytes or stromal stem cells and were positive for vimentin, ZO1, αSMA and CD146. In addition, the MSK cells expressed osteocalcin and osteonectin, indicating an osteoblast-like phenotype. In contrast to the control cells, GDNF was down-regulated in the MSK cells. Stable GDNF knockdown was established in the HK2 cell line and was found to promote Ca(2)PO(4) deposition when the cells were incubated with calcifying medium by regulating the osteonectin/osteopontin ratio in favour of osteonectin. Our data indicate that the human papilla may be a perivascular niche in which pericyte/stromal-like cells can undergo osteogenic differentiation under particular conditions and suggest that GDNF down-regulation may have influenced the observed phenomenon.
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spelling pubmed-43952022015-04-20 Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation Mezzabotta, Federica Cristofaro, Rosalba Ceol, Monica Del Prete, Dorella Priante, Giovanna Familiari, Alessandra Fabris, Antonia D'Angelo, Angela Gambaro, Giovanni Anglani, Franca J Cell Mol Med Original Articles Medullary nephrocalcinosis is a hallmark of medullary sponge kidney (MSK). We had the opportunity to study a spontaneous calcification process in vitro by utilizing the renal cells of a patient with MSK who was heterozygous for the c.-27 + 18G>A variant in the GDNF gene encoding glial cell-derived neurotrophic factor. The cells were obtained by collagenase digestion of papillary tissues from the MSK patient and from two patients who had no MSK or nephrocalcinosis. These cells were typed by immunocytochemistry, and the presence of mineral deposits was studied using von Kossa staining, scanning electron microscopy analysis and an ALP assay. Osteoblastic lineage markers were studied using immunocytochemistry and RT-PCR. Staminality markers were also analysed using flow cytometry, magnetic cell separation technology, immunocytochemistry and RT-PCR. Starting from p2, MSK and control cells formed nodules with a behaviour similar to that of calcifying pericytes; however, Ca(2)PO(4) was only found in the MSK cultures. The MSK cells had morphologies and immunophenotypes resembling those of pericytes or stromal stem cells and were positive for vimentin, ZO1, αSMA and CD146. In addition, the MSK cells expressed osteocalcin and osteonectin, indicating an osteoblast-like phenotype. In contrast to the control cells, GDNF was down-regulated in the MSK cells. Stable GDNF knockdown was established in the HK2 cell line and was found to promote Ca(2)PO(4) deposition when the cells were incubated with calcifying medium by regulating the osteonectin/osteopontin ratio in favour of osteonectin. Our data indicate that the human papilla may be a perivascular niche in which pericyte/stromal-like cells can undergo osteogenic differentiation under particular conditions and suggest that GDNF down-regulation may have influenced the observed phenomenon. BlackWell Publishing Ltd 2015-04 2015-02-18 /pmc/articles/PMC4395202/ /pubmed/25692823 http://dx.doi.org/10.1111/jcmm.12514 Text en © 2015 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Mezzabotta, Federica
Cristofaro, Rosalba
Ceol, Monica
Del Prete, Dorella
Priante, Giovanna
Familiari, Alessandra
Fabris, Antonia
D'Angelo, Angela
Gambaro, Giovanni
Anglani, Franca
Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title_full Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title_fullStr Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title_full_unstemmed Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title_short Spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a GDNF mutation
title_sort spontaneous calcification process in primary renal cells from a medullary sponge kidney patient harbouring a gdnf mutation
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4395202/
https://www.ncbi.nlm.nih.gov/pubmed/25692823
http://dx.doi.org/10.1111/jcmm.12514
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