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Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study

BACKGROUND: Intravascular hemolysis is an intrinsic feature of severe malaria pathophysiology but the pathogenic role of cell-free hemoglobin-mediated oxidative stress in severe malaria associated acute kidney injury (AKI) is unknown. METHODS: As part of a prospective observational study, enrolment...

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Autores principales: Plewes, Katherine, Kingston, Hugh W.F., Ghose, Aniruddha, Maude, Richard J., Herdman, M. Trent, Leopold, Stije J., Ishioka, Haruhiko, Hasan, Md. Mahtab Uddin, Haider, Md. Shafiul, Alam, Shamsul, Piera, Kim A., Charunwatthana, Prakaykaew, Silamut, Kamolrat, Yeo, Tsin W., Faiz, Md. Abul, Lee, Sue J, Mukaka, Mavuto, Turner, Gareth D.H., Anstey, Nicholas M., Jackson Roberts, L., White, Nicholas J., Day, Nicholas P.J., Hossain, Md. Amir, Dondorp, Arjen M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408414/
https://www.ncbi.nlm.nih.gov/pubmed/28449641
http://dx.doi.org/10.1186/s12879-017-2373-1
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author Plewes, Katherine
Kingston, Hugh W.F.
Ghose, Aniruddha
Maude, Richard J.
Herdman, M. Trent
Leopold, Stije J.
Ishioka, Haruhiko
Hasan, Md. Mahtab Uddin
Haider, Md. Shafiul
Alam, Shamsul
Piera, Kim A.
Charunwatthana, Prakaykaew
Silamut, Kamolrat
Yeo, Tsin W.
Faiz, Md. Abul
Lee, Sue J
Mukaka, Mavuto
Turner, Gareth D.H.
Anstey, Nicholas M.
Jackson Roberts, L.
White, Nicholas J.
Day, Nicholas P.J.
Hossain, Md. Amir
Dondorp, Arjen M.
author_facet Plewes, Katherine
Kingston, Hugh W.F.
Ghose, Aniruddha
Maude, Richard J.
Herdman, M. Trent
Leopold, Stije J.
Ishioka, Haruhiko
Hasan, Md. Mahtab Uddin
Haider, Md. Shafiul
Alam, Shamsul
Piera, Kim A.
Charunwatthana, Prakaykaew
Silamut, Kamolrat
Yeo, Tsin W.
Faiz, Md. Abul
Lee, Sue J
Mukaka, Mavuto
Turner, Gareth D.H.
Anstey, Nicholas M.
Jackson Roberts, L.
White, Nicholas J.
Day, Nicholas P.J.
Hossain, Md. Amir
Dondorp, Arjen M.
author_sort Plewes, Katherine
collection PubMed
description BACKGROUND: Intravascular hemolysis is an intrinsic feature of severe malaria pathophysiology but the pathogenic role of cell-free hemoglobin-mediated oxidative stress in severe malaria associated acute kidney injury (AKI) is unknown. METHODS: As part of a prospective observational study, enrolment plasma cell-free hemoglobin (CFH), lipid peroxidation markers (F(2)-isoprostanes (F(2)-IsoPs) and isofurans (IsoFs)), red cell deformability, and serum creatinine were quantified in Bangladeshi patients with severe falciparum malaria (n = 107), uncomplicated malaria (n = 80) and sepsis (n = 28). The relationships between these indices and kidney function and clinical outcomes were examined. RESULTS: AKI was diagnosed at enrolment in 58% (62/107) of consecutive patients with severe malaria, defined by an increase in creatinine ≥1.5 times expected baseline. Severe malaria patients with AKI had significantly higher plasma cell-free hemoglobin (geometric mean CFH: 8.8 μM; 95% CI, 6.2–12.3 μM), F(2)-isoprostane (56.7 pg/ml; 95% CI, 45.3–71.0 pg/ml) and isofuran (109.2 pg/ml; 95% CI, 85.1–140.1 pg/ml) concentrations on enrolment compared to those without AKI (CFH: 5.1 μM; 95% CI, 4.0–6.6 μM; P = 0.018; F(2)-IsoPs: 27.8 pg/ml; 95% CI, 23.7–32.7 pg/ml; P < 0.001; IsoFs: 41.7 pg/ml; 95% CI, 30.2–57.6 pg/ml; P < 0.001). Cell-free hemoglobin correlated with markers of hemolysis, parasite burden (P. falciparum histidine rich protein 2 (PfHRP2)), and F(2)-IsoPs. Plasma F(2)-IsoPs and IsoFs inversely correlated with pH, positively correlated with creatinine, PfHRP2 and fractional excretion of sodium, and were higher in patients later requiring hemodialysis. Plasma F(2)-IsoP concentrations also inversely correlated with red cell deformability and were higher in fatal cases. Mixed effects modeling including an interaction term for CFH and time showed that F(2)-IsoPs, IsoFs, PfHRP2, CFH, and red cell rigidity were independently associated with increasing creatinine over 72 h. Multivariable logistic regression showed that admission F(2)-IsoPs, IsoFs and red cell deformability were associated with the need for subsequent hemodialysis. CONCLUSIONS: Cell-free hemoglobin and lipid peroxidation are associated with acute kidney injury and disease severity in falciparum malaria, suggesting a pathophysiological role in renal tubular injury. Evaluation of adjunctive therapies targeting cell-free hemoglobin-mediated oxidative stress is warranted. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12879-017-2373-1) contains supplementary material, which is available to authorized users.
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spelling pubmed-54084142017-05-02 Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study Plewes, Katherine Kingston, Hugh W.F. Ghose, Aniruddha Maude, Richard J. Herdman, M. Trent Leopold, Stije J. Ishioka, Haruhiko Hasan, Md. Mahtab Uddin Haider, Md. Shafiul Alam, Shamsul Piera, Kim A. Charunwatthana, Prakaykaew Silamut, Kamolrat Yeo, Tsin W. Faiz, Md. Abul Lee, Sue J Mukaka, Mavuto Turner, Gareth D.H. Anstey, Nicholas M. Jackson Roberts, L. White, Nicholas J. Day, Nicholas P.J. Hossain, Md. Amir Dondorp, Arjen M. BMC Infect Dis Research Article BACKGROUND: Intravascular hemolysis is an intrinsic feature of severe malaria pathophysiology but the pathogenic role of cell-free hemoglobin-mediated oxidative stress in severe malaria associated acute kidney injury (AKI) is unknown. METHODS: As part of a prospective observational study, enrolment plasma cell-free hemoglobin (CFH), lipid peroxidation markers (F(2)-isoprostanes (F(2)-IsoPs) and isofurans (IsoFs)), red cell deformability, and serum creatinine were quantified in Bangladeshi patients with severe falciparum malaria (n = 107), uncomplicated malaria (n = 80) and sepsis (n = 28). The relationships between these indices and kidney function and clinical outcomes were examined. RESULTS: AKI was diagnosed at enrolment in 58% (62/107) of consecutive patients with severe malaria, defined by an increase in creatinine ≥1.5 times expected baseline. Severe malaria patients with AKI had significantly higher plasma cell-free hemoglobin (geometric mean CFH: 8.8 μM; 95% CI, 6.2–12.3 μM), F(2)-isoprostane (56.7 pg/ml; 95% CI, 45.3–71.0 pg/ml) and isofuran (109.2 pg/ml; 95% CI, 85.1–140.1 pg/ml) concentrations on enrolment compared to those without AKI (CFH: 5.1 μM; 95% CI, 4.0–6.6 μM; P = 0.018; F(2)-IsoPs: 27.8 pg/ml; 95% CI, 23.7–32.7 pg/ml; P < 0.001; IsoFs: 41.7 pg/ml; 95% CI, 30.2–57.6 pg/ml; P < 0.001). Cell-free hemoglobin correlated with markers of hemolysis, parasite burden (P. falciparum histidine rich protein 2 (PfHRP2)), and F(2)-IsoPs. Plasma F(2)-IsoPs and IsoFs inversely correlated with pH, positively correlated with creatinine, PfHRP2 and fractional excretion of sodium, and were higher in patients later requiring hemodialysis. Plasma F(2)-IsoP concentrations also inversely correlated with red cell deformability and were higher in fatal cases. Mixed effects modeling including an interaction term for CFH and time showed that F(2)-IsoPs, IsoFs, PfHRP2, CFH, and red cell rigidity were independently associated with increasing creatinine over 72 h. Multivariable logistic regression showed that admission F(2)-IsoPs, IsoFs and red cell deformability were associated with the need for subsequent hemodialysis. CONCLUSIONS: Cell-free hemoglobin and lipid peroxidation are associated with acute kidney injury and disease severity in falciparum malaria, suggesting a pathophysiological role in renal tubular injury. Evaluation of adjunctive therapies targeting cell-free hemoglobin-mediated oxidative stress is warranted. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12879-017-2373-1) contains supplementary material, which is available to authorized users. BioMed Central 2017-04-27 /pmc/articles/PMC5408414/ /pubmed/28449641 http://dx.doi.org/10.1186/s12879-017-2373-1 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Plewes, Katherine
Kingston, Hugh W.F.
Ghose, Aniruddha
Maude, Richard J.
Herdman, M. Trent
Leopold, Stije J.
Ishioka, Haruhiko
Hasan, Md. Mahtab Uddin
Haider, Md. Shafiul
Alam, Shamsul
Piera, Kim A.
Charunwatthana, Prakaykaew
Silamut, Kamolrat
Yeo, Tsin W.
Faiz, Md. Abul
Lee, Sue J
Mukaka, Mavuto
Turner, Gareth D.H.
Anstey, Nicholas M.
Jackson Roberts, L.
White, Nicholas J.
Day, Nicholas P.J.
Hossain, Md. Amir
Dondorp, Arjen M.
Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title_full Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title_fullStr Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title_full_unstemmed Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title_short Cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
title_sort cell-free hemoglobin mediated oxidative stress is associated with acute kidney injury and renal replacement therapy in severe falciparum malaria: an observational study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408414/
https://www.ncbi.nlm.nih.gov/pubmed/28449641
http://dx.doi.org/10.1186/s12879-017-2373-1
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