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Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients

Acute pyelonephritis (APN), which is mainly caused by uropathogenic Escherichia coli (UPEC), is the most common bacterial complication in renal transplant recipients receiving immunosuppressive treatment. However, it remains unclear how immunosuppressive drugs, such as the calcineurin inhibitor cycl...

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Autores principales: Tourneur, Emilie, Ben Mkaddem, Sanae, Chassin, Cécilia, Bens, Marcelle, Goujon, Jean-Michel, Charles, Nicolas, Pellefigues, Christophe, Aloulou, Meryem, Hertig, Alexandre, Monteiro, Renato C., Girardin, Stephen E., Philpott, Dana J., Rondeau, Eric, Elbim, Carole, Werts, Catherine, Vandewalle, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561241/
https://www.ncbi.nlm.nih.gov/pubmed/23382681
http://dx.doi.org/10.1371/journal.ppat.1003152
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author Tourneur, Emilie
Ben Mkaddem, Sanae
Chassin, Cécilia
Bens, Marcelle
Goujon, Jean-Michel
Charles, Nicolas
Pellefigues, Christophe
Aloulou, Meryem
Hertig, Alexandre
Monteiro, Renato C.
Girardin, Stephen E.
Philpott, Dana J.
Rondeau, Eric
Elbim, Carole
Werts, Catherine
Vandewalle, Alain
author_facet Tourneur, Emilie
Ben Mkaddem, Sanae
Chassin, Cécilia
Bens, Marcelle
Goujon, Jean-Michel
Charles, Nicolas
Pellefigues, Christophe
Aloulou, Meryem
Hertig, Alexandre
Monteiro, Renato C.
Girardin, Stephen E.
Philpott, Dana J.
Rondeau, Eric
Elbim, Carole
Werts, Catherine
Vandewalle, Alain
author_sort Tourneur, Emilie
collection PubMed
description Acute pyelonephritis (APN), which is mainly caused by uropathogenic Escherichia coli (UPEC), is the most common bacterial complication in renal transplant recipients receiving immunosuppressive treatment. However, it remains unclear how immunosuppressive drugs, such as the calcineurin inhibitor cyclosporine A (CsA), decrease renal resistance to UPEC. Here, we investigated the effects of CsA in host defense against UPEC in an experimental model of APN. We show that CsA-treated mice exhibit impaired production of the chemoattractant chemokines CXCL2 and CXCL1, decreased intrarenal recruitment of neutrophils, and greater susceptibility to UPEC than vehicle-treated mice. Strikingly, renal expression of Toll-like receptor 4 (Tlr4) and nucleotide-binding oligomerization domain 1 (Nod1), neutrophil migration capacity, and phagocytic killing of E. coli were significantly reduced in CsA-treated mice. CsA inhibited lipopolysaccharide (LPS)-induced, Tlr4-mediated production of CXCL2 by epithelial collecting duct cells. In addition, CsA markedly inhibited Nod1 expression in neutrophils, macrophages, and renal dendritic cells. CsA, acting through inhibition of the nuclear factor of activated T-cells (NFATs), also markedly downregulated Nod1 in neutrophils and macrophages. Silencing the NFATc1 isoform mRNA, similar to CsA, downregulated Nod1 expression in macrophages, and administration of the 11R-VIVIT peptide inhibitor of NFATs to mice also reduced neutrophil bacterial phagocytosis and renal resistance to UPEC. Conversely, synthetic Nod1 stimulating agonists given to CsA-treated mice significantly increased renal resistance to UPEC. Renal transplant recipients receiving CsA exhibited similar decrease in NOD1 expression and neutrophil phagocytosis of E. coli. The findings suggest that such mechanism of NFATc1-dependent inhibition of Nod1-mediated innate immune response together with the decrease in Tlr4-mediated production of chemoattractant chemokines caused by CsA may contribute to sensitizing kidney grafts to APN.
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spelling pubmed-35612412013-02-04 Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients Tourneur, Emilie Ben Mkaddem, Sanae Chassin, Cécilia Bens, Marcelle Goujon, Jean-Michel Charles, Nicolas Pellefigues, Christophe Aloulou, Meryem Hertig, Alexandre Monteiro, Renato C. Girardin, Stephen E. Philpott, Dana J. Rondeau, Eric Elbim, Carole Werts, Catherine Vandewalle, Alain PLoS Pathog Research Article Acute pyelonephritis (APN), which is mainly caused by uropathogenic Escherichia coli (UPEC), is the most common bacterial complication in renal transplant recipients receiving immunosuppressive treatment. However, it remains unclear how immunosuppressive drugs, such as the calcineurin inhibitor cyclosporine A (CsA), decrease renal resistance to UPEC. Here, we investigated the effects of CsA in host defense against UPEC in an experimental model of APN. We show that CsA-treated mice exhibit impaired production of the chemoattractant chemokines CXCL2 and CXCL1, decreased intrarenal recruitment of neutrophils, and greater susceptibility to UPEC than vehicle-treated mice. Strikingly, renal expression of Toll-like receptor 4 (Tlr4) and nucleotide-binding oligomerization domain 1 (Nod1), neutrophil migration capacity, and phagocytic killing of E. coli were significantly reduced in CsA-treated mice. CsA inhibited lipopolysaccharide (LPS)-induced, Tlr4-mediated production of CXCL2 by epithelial collecting duct cells. In addition, CsA markedly inhibited Nod1 expression in neutrophils, macrophages, and renal dendritic cells. CsA, acting through inhibition of the nuclear factor of activated T-cells (NFATs), also markedly downregulated Nod1 in neutrophils and macrophages. Silencing the NFATc1 isoform mRNA, similar to CsA, downregulated Nod1 expression in macrophages, and administration of the 11R-VIVIT peptide inhibitor of NFATs to mice also reduced neutrophil bacterial phagocytosis and renal resistance to UPEC. Conversely, synthetic Nod1 stimulating agonists given to CsA-treated mice significantly increased renal resistance to UPEC. Renal transplant recipients receiving CsA exhibited similar decrease in NOD1 expression and neutrophil phagocytosis of E. coli. The findings suggest that such mechanism of NFATc1-dependent inhibition of Nod1-mediated innate immune response together with the decrease in Tlr4-mediated production of chemoattractant chemokines caused by CsA may contribute to sensitizing kidney grafts to APN. Public Library of Science 2013-01-31 /pmc/articles/PMC3561241/ /pubmed/23382681 http://dx.doi.org/10.1371/journal.ppat.1003152 Text en © 2013 Tourneur 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
Tourneur, Emilie
Ben Mkaddem, Sanae
Chassin, Cécilia
Bens, Marcelle
Goujon, Jean-Michel
Charles, Nicolas
Pellefigues, Christophe
Aloulou, Meryem
Hertig, Alexandre
Monteiro, Renato C.
Girardin, Stephen E.
Philpott, Dana J.
Rondeau, Eric
Elbim, Carole
Werts, Catherine
Vandewalle, Alain
Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title_full Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title_fullStr Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title_full_unstemmed Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title_short Cyclosporine A Impairs Nucleotide Binding Oligomerization Domain (Nod1)-Mediated Innate Antibacterial Renal Defenses in Mice and Human Transplant Recipients
title_sort cyclosporine a impairs nucleotide binding oligomerization domain (nod1)-mediated innate antibacterial renal defenses in mice and human transplant recipients
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561241/
https://www.ncbi.nlm.nih.gov/pubmed/23382681
http://dx.doi.org/10.1371/journal.ppat.1003152
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