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Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model

VEGF inhibition can promote renal vascular and parenchymal injury, causing proteinuria, hypertension and thrombotic microangiopathy. The mechanisms underlying these side effects are unclear. We investigated the renal effects of the administration, during 45 days, of sunitinib (Su), a VEGF receptor i...

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Autores principales: Machado, Flavia G., Kuriki, Patrícia Semedo, Fujihara, Clarice K., Fanelli, Camilla, Arias, Simone C. A., Malheiros, Denise M. A. C., Camara, Niels O. S., Zatz, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382123/
https://www.ncbi.nlm.nih.gov/pubmed/22745791
http://dx.doi.org/10.1371/journal.pone.0039580
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author Machado, Flavia G.
Kuriki, Patrícia Semedo
Fujihara, Clarice K.
Fanelli, Camilla
Arias, Simone C. A.
Malheiros, Denise M. A. C.
Camara, Niels O. S.
Zatz, Roberto
author_facet Machado, Flavia G.
Kuriki, Patrícia Semedo
Fujihara, Clarice K.
Fanelli, Camilla
Arias, Simone C. A.
Malheiros, Denise M. A. C.
Camara, Niels O. S.
Zatz, Roberto
author_sort Machado, Flavia G.
collection PubMed
description VEGF inhibition can promote renal vascular and parenchymal injury, causing proteinuria, hypertension and thrombotic microangiopathy. The mechanisms underlying these side effects are unclear. We investigated the renal effects of the administration, during 45 days, of sunitinib (Su), a VEGF receptor inhibitor, to rats with 5/6 renal ablation (Nx). Adult male Munich-Wistar rats were distributed among groups S+V, sham-operated rats receiving vehicle only; S+Su, S rats given Su, 4 mg/kg/day; Nx+V, Nx rats receiving V; and Nx+Su, Nx rats receiving Su. Su caused no change in Group S. Seven and 45 days after renal ablation, renal cortical interstitium was expanded, in association with rarefaction of peritubular capillaries. Su did not worsen hypertension, proteinuria or interstitial expansion, nor did it affect capillary rarefaction, suggesting little angiogenic activity in this model. Nx animals exhibited glomerulosclerosis (GS), which was aggravated by Su. This effect could not be explained by podocyte damage, nor could it be ascribed to tuft hypertrophy or hyperplasia. GS may have derived from organization of capillary microthrombi, frequently observed in Group Nx+Su. Treatment with Su did not reduce the fractional glomerular endothelial area, suggesting functional rather than structural cell injury. Chronic VEGF inhibition has little effect on normal rats, but can affect glomerular endothelium when renal damage is already present.
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spelling pubmed-33821232012-06-28 Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model Machado, Flavia G. Kuriki, Patrícia Semedo Fujihara, Clarice K. Fanelli, Camilla Arias, Simone C. A. Malheiros, Denise M. A. C. Camara, Niels O. S. Zatz, Roberto PLoS One Research Article VEGF inhibition can promote renal vascular and parenchymal injury, causing proteinuria, hypertension and thrombotic microangiopathy. The mechanisms underlying these side effects are unclear. We investigated the renal effects of the administration, during 45 days, of sunitinib (Su), a VEGF receptor inhibitor, to rats with 5/6 renal ablation (Nx). Adult male Munich-Wistar rats were distributed among groups S+V, sham-operated rats receiving vehicle only; S+Su, S rats given Su, 4 mg/kg/day; Nx+V, Nx rats receiving V; and Nx+Su, Nx rats receiving Su. Su caused no change in Group S. Seven and 45 days after renal ablation, renal cortical interstitium was expanded, in association with rarefaction of peritubular capillaries. Su did not worsen hypertension, proteinuria or interstitial expansion, nor did it affect capillary rarefaction, suggesting little angiogenic activity in this model. Nx animals exhibited glomerulosclerosis (GS), which was aggravated by Su. This effect could not be explained by podocyte damage, nor could it be ascribed to tuft hypertrophy or hyperplasia. GS may have derived from organization of capillary microthrombi, frequently observed in Group Nx+Su. Treatment with Su did not reduce the fractional glomerular endothelial area, suggesting functional rather than structural cell injury. Chronic VEGF inhibition has little effect on normal rats, but can affect glomerular endothelium when renal damage is already present. Public Library of Science 2012-06-22 /pmc/articles/PMC3382123/ /pubmed/22745791 http://dx.doi.org/10.1371/journal.pone.0039580 Text en Machado 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
Machado, Flavia G.
Kuriki, Patrícia Semedo
Fujihara, Clarice K.
Fanelli, Camilla
Arias, Simone C. A.
Malheiros, Denise M. A. C.
Camara, Niels O. S.
Zatz, Roberto
Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title_full Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title_fullStr Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title_full_unstemmed Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title_short Chronic VEGF Blockade Worsens Glomerular Injury in the Remnant Kidney Model
title_sort chronic vegf blockade worsens glomerular injury in the remnant kidney model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382123/
https://www.ncbi.nlm.nih.gov/pubmed/22745791
http://dx.doi.org/10.1371/journal.pone.0039580
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