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Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction

BACKGROUND: The ATP-sensitive P2X7 receptor (P2X7R) has been shown to contribute to renal injury in nephrotoxic nephritis, a rodent model of acute glomerulonephritis, and in unilateral ureteric obstruction (UUO), a rodent model of chronic interstitial inflammation and fibrosis. Renal tubular cells,...

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Autores principales: Kim, Min Jeong, Turner, Clare M., Hewitt, Reiko, Smith, Jennifer, Bhangal, Gurjeet, Pusey, Charles D., Unwin, Robert J., Tam, Frederick W.K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4071051/
https://www.ncbi.nlm.nih.gov/pubmed/24574541
http://dx.doi.org/10.1093/ndt/gfu019
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author Kim, Min Jeong
Turner, Clare M.
Hewitt, Reiko
Smith, Jennifer
Bhangal, Gurjeet
Pusey, Charles D.
Unwin, Robert J.
Tam, Frederick W.K.
author_facet Kim, Min Jeong
Turner, Clare M.
Hewitt, Reiko
Smith, Jennifer
Bhangal, Gurjeet
Pusey, Charles D.
Unwin, Robert J.
Tam, Frederick W.K.
author_sort Kim, Min Jeong
collection PubMed
description BACKGROUND: The ATP-sensitive P2X7 receptor (P2X7R) has been shown to contribute to renal injury in nephrotoxic nephritis, a rodent model of acute glomerulonephritis, and in unilateral ureteric obstruction (UUO), a rodent model of chronic interstitial inflammation and fibrosis. Renal tubular cells, endothelial cells and macrophages also express the closely related P2X4 receptor (P2X4R), which is chromosomally co-located with P2X7R and has 40% homology; it is also pro-inflammatory and has been shown to interact with P2X7R to modulate its pro-apoptotic and pro-inflammatory effects. Therefore, we chose to explore the function of P2X4R in the UUO model of renal injury using knockout mice. We hypothesized that UUO-induced tubulointerstitial damage and fibrosis would also be attenuated in P2X4R(−/−) mice. METHOD: P2X4R(−/−) and wild-type (WT) mice were subjected to either UUO or sham operation. Kidney samples taken on Days 7 and 14 were evaluated for renal inflammation and fibrosis, and expression of pro-fibrotic factors. RESULTS: To our surprise, the obstructed kidney in P2X4R(−/−) mice showed more severe renal injury, more collagen deposition (picrosirius red staining, increase of 53%; P < 0.05) and more type I collagen staining (increase of 107%; P < 0.01), as well as increased mRNA for TGF-β (increase of 102%, P < 0.0005) and CTGF (increase of 157%; P < 0.05) by Day 14, compared with the UUO WT mice. CONCLUSION: These findings showed that lack of P2X4R expression leads to increased renal fibrosis, and increased expression of TGF-β and CTGF in the UUO model.
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spelling pubmed-40710512014-06-26 Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction Kim, Min Jeong Turner, Clare M. Hewitt, Reiko Smith, Jennifer Bhangal, Gurjeet Pusey, Charles D. Unwin, Robert J. Tam, Frederick W.K. Nephrol Dial Transplant Original Articles BACKGROUND: The ATP-sensitive P2X7 receptor (P2X7R) has been shown to contribute to renal injury in nephrotoxic nephritis, a rodent model of acute glomerulonephritis, and in unilateral ureteric obstruction (UUO), a rodent model of chronic interstitial inflammation and fibrosis. Renal tubular cells, endothelial cells and macrophages also express the closely related P2X4 receptor (P2X4R), which is chromosomally co-located with P2X7R and has 40% homology; it is also pro-inflammatory and has been shown to interact with P2X7R to modulate its pro-apoptotic and pro-inflammatory effects. Therefore, we chose to explore the function of P2X4R in the UUO model of renal injury using knockout mice. We hypothesized that UUO-induced tubulointerstitial damage and fibrosis would also be attenuated in P2X4R(−/−) mice. METHOD: P2X4R(−/−) and wild-type (WT) mice were subjected to either UUO or sham operation. Kidney samples taken on Days 7 and 14 were evaluated for renal inflammation and fibrosis, and expression of pro-fibrotic factors. RESULTS: To our surprise, the obstructed kidney in P2X4R(−/−) mice showed more severe renal injury, more collagen deposition (picrosirius red staining, increase of 53%; P < 0.05) and more type I collagen staining (increase of 107%; P < 0.01), as well as increased mRNA for TGF-β (increase of 102%, P < 0.0005) and CTGF (increase of 157%; P < 0.05) by Day 14, compared with the UUO WT mice. CONCLUSION: These findings showed that lack of P2X4R expression leads to increased renal fibrosis, and increased expression of TGF-β and CTGF in the UUO model. Oxford University Press 2014-07 2014-02-25 /pmc/articles/PMC4071051/ /pubmed/24574541 http://dx.doi.org/10.1093/ndt/gfu019 Text en © The Author 2014. Published by Oxford University Press on behalf of ERA-EDTA. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kim, Min Jeong
Turner, Clare M.
Hewitt, Reiko
Smith, Jennifer
Bhangal, Gurjeet
Pusey, Charles D.
Unwin, Robert J.
Tam, Frederick W.K.
Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title_full Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title_fullStr Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title_full_unstemmed Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title_short Exaggerated renal fibrosis in P2X4 receptor-deficient mice following unilateral ureteric obstruction
title_sort exaggerated renal fibrosis in p2x4 receptor-deficient mice following unilateral ureteric obstruction
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4071051/
https://www.ncbi.nlm.nih.gov/pubmed/24574541
http://dx.doi.org/10.1093/ndt/gfu019
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