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Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo

Uromodulin (UMOD) is produced and secreted by tubular epithelial cells. Secreted UMOD polymerizes (pUMOD) in the tubular lumen, where it regulates salt transport and protects the kidney from bacteria and stone formation. Under various pathological conditions, pUMOD accumulates within the tubular lum...

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Autores principales: Immler, Roland, Lange-Sperandio, Bärbel, Steffen, Tobias, Beck, Heike, Rohwedder, Ina, Roth, Jonas, Napoli, Matteo, Hupel, Georg, Pfister, Frederik, Popper, Bastian, Uhl, Bernd, Mannell, Hanna, Reichel, Christoph A., Vielhauer, Volker, Scherberich, Jürgen, Sperandio, Markus, Pruenster, Monika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7783395/
https://www.ncbi.nlm.nih.gov/pubmed/33414784
http://dx.doi.org/10.3389/fimmu.2020.588245
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author Immler, Roland
Lange-Sperandio, Bärbel
Steffen, Tobias
Beck, Heike
Rohwedder, Ina
Roth, Jonas
Napoli, Matteo
Hupel, Georg
Pfister, Frederik
Popper, Bastian
Uhl, Bernd
Mannell, Hanna
Reichel, Christoph A.
Vielhauer, Volker
Scherberich, Jürgen
Sperandio, Markus
Pruenster, Monika
author_facet Immler, Roland
Lange-Sperandio, Bärbel
Steffen, Tobias
Beck, Heike
Rohwedder, Ina
Roth, Jonas
Napoli, Matteo
Hupel, Georg
Pfister, Frederik
Popper, Bastian
Uhl, Bernd
Mannell, Hanna
Reichel, Christoph A.
Vielhauer, Volker
Scherberich, Jürgen
Sperandio, Markus
Pruenster, Monika
author_sort Immler, Roland
collection PubMed
description Uromodulin (UMOD) is produced and secreted by tubular epithelial cells. Secreted UMOD polymerizes (pUMOD) in the tubular lumen, where it regulates salt transport and protects the kidney from bacteria and stone formation. Under various pathological conditions, pUMOD accumulates within the tubular lumen and reaches extratubular sites where it may interact with renal interstitial cells. Here, we investigated the potential of extratubular pUMOD to act as a damage associated molecular pattern (DAMP) molecule thereby creating local inflammation. We found that intrascrotal and intraperitoneal injection of pUMOD induced leukocyte recruitment in vivo and led to TNF-α secretion by F4/80 positive macrophages. Additionally, pUMOD directly affected vascular permeability and increased neutrophil extravasation independent of macrophage-released TNF-α. Interestingly, pUMOD displayed no chemotactic properties on neutrophils, did not directly activate β2 integrins and did not upregulate adhesion molecules on endothelial cells. In obstructed neonatal murine kidneys, we observed extratubular UMOD accumulation in the renal interstitium with tubular atrophy and leukocyte infiltrates. Finally, we found extratubular UMOD deposits associated with peritubular leukocyte infiltration in kidneys from patients with inflammatory kidney diseases. Taken together, we identified extratubular pUMOD as a strong inducer of leukocyte recruitment, underlining its critical role in mounting an inflammatory response in various kidneys pathologies.
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spelling pubmed-77833952021-01-06 Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo Immler, Roland Lange-Sperandio, Bärbel Steffen, Tobias Beck, Heike Rohwedder, Ina Roth, Jonas Napoli, Matteo Hupel, Georg Pfister, Frederik Popper, Bastian Uhl, Bernd Mannell, Hanna Reichel, Christoph A. Vielhauer, Volker Scherberich, Jürgen Sperandio, Markus Pruenster, Monika Front Immunol Immunology Uromodulin (UMOD) is produced and secreted by tubular epithelial cells. Secreted UMOD polymerizes (pUMOD) in the tubular lumen, where it regulates salt transport and protects the kidney from bacteria and stone formation. Under various pathological conditions, pUMOD accumulates within the tubular lumen and reaches extratubular sites where it may interact with renal interstitial cells. Here, we investigated the potential of extratubular pUMOD to act as a damage associated molecular pattern (DAMP) molecule thereby creating local inflammation. We found that intrascrotal and intraperitoneal injection of pUMOD induced leukocyte recruitment in vivo and led to TNF-α secretion by F4/80 positive macrophages. Additionally, pUMOD directly affected vascular permeability and increased neutrophil extravasation independent of macrophage-released TNF-α. Interestingly, pUMOD displayed no chemotactic properties on neutrophils, did not directly activate β2 integrins and did not upregulate adhesion molecules on endothelial cells. In obstructed neonatal murine kidneys, we observed extratubular UMOD accumulation in the renal interstitium with tubular atrophy and leukocyte infiltrates. Finally, we found extratubular UMOD deposits associated with peritubular leukocyte infiltration in kidneys from patients with inflammatory kidney diseases. Taken together, we identified extratubular pUMOD as a strong inducer of leukocyte recruitment, underlining its critical role in mounting an inflammatory response in various kidneys pathologies. Frontiers Media S.A. 2020-12-22 /pmc/articles/PMC7783395/ /pubmed/33414784 http://dx.doi.org/10.3389/fimmu.2020.588245 Text en Copyright © 2020 Immler, Lange-Sperandio, Steffen, Beck, Rohwedder, Roth, Napoli, Hupel, Pfister, Popper, Uhl, Mannell, Reichel, Vielhauer, Scherberich, Sperandio and Pruenster http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Immler, Roland
Lange-Sperandio, Bärbel
Steffen, Tobias
Beck, Heike
Rohwedder, Ina
Roth, Jonas
Napoli, Matteo
Hupel, Georg
Pfister, Frederik
Popper, Bastian
Uhl, Bernd
Mannell, Hanna
Reichel, Christoph A.
Vielhauer, Volker
Scherberich, Jürgen
Sperandio, Markus
Pruenster, Monika
Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title_full Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title_fullStr Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title_full_unstemmed Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title_short Extratubular Polymerized Uromodulin Induces Leukocyte Recruitment and Inflammation In Vivo
title_sort extratubular polymerized uromodulin induces leukocyte recruitment and inflammation in vivo
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7783395/
https://www.ncbi.nlm.nih.gov/pubmed/33414784
http://dx.doi.org/10.3389/fimmu.2020.588245
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