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suPAR links a dysregulated immune response to tissue inflammation and sepsis-induced acute kidney injury
by
Fiedler, Mascha O.
, Brenner, Thorsten
, Reiser, Jochen
, Wei, Changli
, Szudarek, Roman
, Speer, Claudius
, Merle, Uta
, Zeier, Martin
, Li, Jing
, Eugen-Olsen, Jesper
, Samelko, Beata
, Cao, Yanxia
, Rodriguez, Ricardo
, Schmitt, Felix C.F.
, Schaier, Matthias
, Uhle, Florian
, Weigand, Markus A.
, Kälble, Florian
, Krautkrämer, Ellen
, Hayek, Salim S.
, Nusshag, Christian
, Rupp, Christoph
, Morath, Christian
, Hahm, Eunsil
in
Acute Kidney Injury - diagnosis
/ Animals
/ Biomarkers
/ Cell cycle
/ Chemotactic factors
/ Creatinine
/ Disease
/ Immune response
/ Inflammation
/ Kidneys
/ Lymphocytes T
/ Medical prognosis
/ Mice
/ Mice, Transgenic
/ Mortality
/ Nephrology
/ Patients
/ Receptors, Urokinase Plasminogen Activator - genetics
/ Renal replacement therapy
/ Sepsis
/ Sepsis - complications
/ Transgenic mice
/ U-Plasminogen activator
/ Urine
2023
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suPAR links a dysregulated immune response to tissue inflammation and sepsis-induced acute kidney injury
by
Fiedler, Mascha O.
, Brenner, Thorsten
, Reiser, Jochen
, Wei, Changli
, Szudarek, Roman
, Speer, Claudius
, Merle, Uta
, Zeier, Martin
, Li, Jing
, Eugen-Olsen, Jesper
, Samelko, Beata
, Cao, Yanxia
, Rodriguez, Ricardo
, Schmitt, Felix C.F.
, Schaier, Matthias
, Uhle, Florian
, Weigand, Markus A.
, Kälble, Florian
, Krautkrämer, Ellen
, Hayek, Salim S.
, Nusshag, Christian
, Rupp, Christoph
, Morath, Christian
, Hahm, Eunsil
in
Acute Kidney Injury - diagnosis
/ Animals
/ Biomarkers
/ Cell cycle
/ Chemotactic factors
/ Creatinine
/ Disease
/ Immune response
/ Inflammation
/ Kidneys
/ Lymphocytes T
/ Medical prognosis
/ Mice
/ Mice, Transgenic
/ Mortality
/ Nephrology
/ Patients
/ Receptors, Urokinase Plasminogen Activator - genetics
/ Renal replacement therapy
/ Sepsis
/ Sepsis - complications
/ Transgenic mice
/ U-Plasminogen activator
/ Urine
2023
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suPAR links a dysregulated immune response to tissue inflammation and sepsis-induced acute kidney injury
by
Fiedler, Mascha O.
, Brenner, Thorsten
, Reiser, Jochen
, Wei, Changli
, Szudarek, Roman
, Speer, Claudius
, Merle, Uta
, Zeier, Martin
, Li, Jing
, Eugen-Olsen, Jesper
, Samelko, Beata
, Cao, Yanxia
, Rodriguez, Ricardo
, Schmitt, Felix C.F.
, Schaier, Matthias
, Uhle, Florian
, Weigand, Markus A.
, Kälble, Florian
, Krautkrämer, Ellen
, Hayek, Salim S.
, Nusshag, Christian
, Rupp, Christoph
, Morath, Christian
, Hahm, Eunsil
in
Acute Kidney Injury - diagnosis
/ Animals
/ Biomarkers
/ Cell cycle
/ Chemotactic factors
/ Creatinine
/ Disease
/ Immune response
/ Inflammation
/ Kidneys
/ Lymphocytes T
/ Medical prognosis
/ Mice
/ Mice, Transgenic
/ Mortality
/ Nephrology
/ Patients
/ Receptors, Urokinase Plasminogen Activator - genetics
/ Renal replacement therapy
/ Sepsis
/ Sepsis - complications
/ Transgenic mice
/ U-Plasminogen activator
/ Urine
2023
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suPAR links a dysregulated immune response to tissue inflammation and sepsis-induced acute kidney injury
Journal Article
suPAR links a dysregulated immune response to tissue inflammation and sepsis-induced acute kidney injury
2023
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Overview
Acute kidney injury (AKI) secondary to sepsis results in poor outcomes and conventional kidney function indicators lack diagnostic value. Soluble urokinase plasminogen activator receptor (suPAR) is an innate immune–derived molecule implicated in inflammatory organ damage. We characterized the diagnostic ability of longitudinal serum suPAR levels to discriminate severity and course of sepsis-induced AKI (SI-AKI) in 200 critically ill patients meeting Sepsis-3 criteria. The pathophysiologic relevance of varying suPAR levels in SI-AKI was explored in a polymicrobial sepsis model in WT, (s)uPAR-knockout, and transgenic suPAR-overexpressing mice. At all time points studied, suPAR provided a robust classification of SI-AKI disease severity, with improved prediction of renal replacement therapy (RRT) and mortality compared with established kidney biomarkers. Patients with suPAR levels of greater than 12.7 ng/mL were at highest risk for RRT or death, with an adjusted odds ratio of 7.48 (95% CI, 3.00–18.63). suPAR deficiency protected mice against SI-AKI. suPAR-overexpressing mice exhibited greater kidney damage and poorer survival through inflamed kidneys, accompanied by local upregulation of potent chemoattractants and pronounced kidney T cell infiltration. Hence, suPAR allows for an innate immune–derived and kidney function–independent staging of SI-AKI and offers improved longitudinal risk stratification. suPAR promotes T cell–based kidney inflammation, while suPAR deficiency improves SI-AKI.
Publisher
American Society for Clinical Investigation,American Society for Clinical investigation
Subject
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