Cargando…

Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo

Kidney injury significantly increases overall mortality. Neutrophilic granulocytes (neutrophils) are the most abundant human blood leukocytes. They are characterized by a high turnover rate, chiefly controlled by granulocyte colony stimulating factor (G‐CSF). The role of kidney injury and uremia in...

Descripción completa

Detalles Bibliográficos
Autores principales: Volkmann, J., Schmitz, J., Nordlohne, J., Dong, L., Helmke, A., Sen, P., Immenschuh, S., Bernhardt, W. M., Gwinner, W., Bräsen, J. H., Schmitt, R., Haller, H., von Vietinghoff, S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6904607/
https://www.ncbi.nlm.nih.gov/pubmed/31509227
http://dx.doi.org/10.1111/cei.13372
_version_ 1783478028063473664
author Volkmann, J.
Schmitz, J.
Nordlohne, J.
Dong, L.
Helmke, A.
Sen, P.
Immenschuh, S.
Bernhardt, W. M.
Gwinner, W.
Bräsen, J. H.
Schmitt, R.
Haller, H.
von Vietinghoff, S.
author_facet Volkmann, J.
Schmitz, J.
Nordlohne, J.
Dong, L.
Helmke, A.
Sen, P.
Immenschuh, S.
Bernhardt, W. M.
Gwinner, W.
Bräsen, J. H.
Schmitt, R.
Haller, H.
von Vietinghoff, S.
author_sort Volkmann, J.
collection PubMed
description Kidney injury significantly increases overall mortality. Neutrophilic granulocytes (neutrophils) are the most abundant human blood leukocytes. They are characterized by a high turnover rate, chiefly controlled by granulocyte colony stimulating factor (G‐CSF). The role of kidney injury and uremia in regulation of granulopoiesis has not been reported. Kidney transplantation, which inherently causes ischemia–reperfusion injury of the graft, elevated human neutrophil expression of the surface glycoprotein CD177. CD177 is among the most G‐CSF‐responsive neutrophil genes and reversibly increased on neutrophils of healthy donors who received recombinant G‐CSF. In kidney graft recipients, a transient rise in neutrophil CD177 correlated with renal tubular epithelial G‐CSF expression. In contrast, CD177 was unaltered in patients with chronic renal impairment and independent of renal replacement therapy. Under controlled conditions of experimental ischemia–reperfusion and unilateral ureteral obstruction injuries in mice, renal G‐CSF mRNA and protein expression significantly increased and systemic neutrophilia developed. Human renal tubular epithelial cell G‐CSF expression was promoted by hypoxia and proinflammatory cytokine interleukin 17A in vitro. Clinically, recipients of ABO blood group‐incompatible kidney grafts developed a larger rise in neutrophil CD177. Their grafts are characterized by complement C4d deposition on the renal endothelium, even in the absence of rejection. Indeed, complement activation, but not hypoxia, induced primary human endothelial cell G‐CSF expression. Our data demonstrate that kidney injury induces renal G‐CSF expression and modulates granulopoiesis. They delineate differential G‐CSF regulation in renal epithelium and endothelium. Altered granulopoiesis may contribute to the systemic impact of kidney injury.
format Online
Article
Text
id pubmed-6904607
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-69046072019-12-20 Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo Volkmann, J. Schmitz, J. Nordlohne, J. Dong, L. Helmke, A. Sen, P. Immenschuh, S. Bernhardt, W. M. Gwinner, W. Bräsen, J. H. Schmitt, R. Haller, H. von Vietinghoff, S. Clin Exp Immunol Original Articles Kidney injury significantly increases overall mortality. Neutrophilic granulocytes (neutrophils) are the most abundant human blood leukocytes. They are characterized by a high turnover rate, chiefly controlled by granulocyte colony stimulating factor (G‐CSF). The role of kidney injury and uremia in regulation of granulopoiesis has not been reported. Kidney transplantation, which inherently causes ischemia–reperfusion injury of the graft, elevated human neutrophil expression of the surface glycoprotein CD177. CD177 is among the most G‐CSF‐responsive neutrophil genes and reversibly increased on neutrophils of healthy donors who received recombinant G‐CSF. In kidney graft recipients, a transient rise in neutrophil CD177 correlated with renal tubular epithelial G‐CSF expression. In contrast, CD177 was unaltered in patients with chronic renal impairment and independent of renal replacement therapy. Under controlled conditions of experimental ischemia–reperfusion and unilateral ureteral obstruction injuries in mice, renal G‐CSF mRNA and protein expression significantly increased and systemic neutrophilia developed. Human renal tubular epithelial cell G‐CSF expression was promoted by hypoxia and proinflammatory cytokine interleukin 17A in vitro. Clinically, recipients of ABO blood group‐incompatible kidney grafts developed a larger rise in neutrophil CD177. Their grafts are characterized by complement C4d deposition on the renal endothelium, even in the absence of rejection. Indeed, complement activation, but not hypoxia, induced primary human endothelial cell G‐CSF expression. Our data demonstrate that kidney injury induces renal G‐CSF expression and modulates granulopoiesis. They delineate differential G‐CSF regulation in renal epithelium and endothelium. Altered granulopoiesis may contribute to the systemic impact of kidney injury. John Wiley and Sons Inc. 2019-09-30 2020-01 /pmc/articles/PMC6904607/ /pubmed/31509227 http://dx.doi.org/10.1111/cei.13372 Text en © 2019 The Authors. Clinical & Experimental Immunology published by John Wiley & Sons Ltd on behalf of British Society for Immunology This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Volkmann, J.
Schmitz, J.
Nordlohne, J.
Dong, L.
Helmke, A.
Sen, P.
Immenschuh, S.
Bernhardt, W. M.
Gwinner, W.
Bräsen, J. H.
Schmitt, R.
Haller, H.
von Vietinghoff, S.
Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title_full Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title_fullStr Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title_full_unstemmed Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title_short Kidney injury enhances renal G‐CSF expression and modulates granulopoiesis and human neutrophil CD177 in vivo
title_sort kidney injury enhances renal g‐csf expression and modulates granulopoiesis and human neutrophil cd177 in vivo
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6904607/
https://www.ncbi.nlm.nih.gov/pubmed/31509227
http://dx.doi.org/10.1111/cei.13372
work_keys_str_mv AT volkmannj kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT schmitzj kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT nordlohnej kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT dongl kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT helmkea kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT senp kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT immenschuhs kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT bernhardtwm kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT gwinnerw kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT brasenjh kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT schmittr kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT hallerh kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo
AT vonvietinghoffs kidneyinjuryenhancesrenalgcsfexpressionandmodulatesgranulopoiesisandhumanneutrophilcd177invivo