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High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model

Hemoglobin-based oxygen carriers (HBOCs) are an investigational replacement for blood transfusions and are known to cause oxidative damage to tissues. To investigate the correlation between their oxygen binding properties and these detrimental effects, we investigated two PEGylated HBOCs endowed wit...

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Autores principales: Alomari, Esra'a, Ronda, Luca, Bruno, Stefano, Paredi, Gianluca, Marchetti, Marialaura, Bettati, Stefano, Olivari, Davide, Fumagalli, Francesca, Novelli, Deborah, Ristagno, Giuseppe, Latini, Roberto, Cooper, Chris E., Reeder, Brandon J., Mozzarelli, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6191936/
https://www.ncbi.nlm.nih.gov/pubmed/29920341
http://dx.doi.org/10.1016/j.freeradbiomed.2018.06.018
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author Alomari, Esra'a
Ronda, Luca
Bruno, Stefano
Paredi, Gianluca
Marchetti, Marialaura
Bettati, Stefano
Olivari, Davide
Fumagalli, Francesca
Novelli, Deborah
Ristagno, Giuseppe
Latini, Roberto
Cooper, Chris E.
Reeder, Brandon J.
Mozzarelli, Andrea
author_facet Alomari, Esra'a
Ronda, Luca
Bruno, Stefano
Paredi, Gianluca
Marchetti, Marialaura
Bettati, Stefano
Olivari, Davide
Fumagalli, Francesca
Novelli, Deborah
Ristagno, Giuseppe
Latini, Roberto
Cooper, Chris E.
Reeder, Brandon J.
Mozzarelli, Andrea
author_sort Alomari, Esra'a
collection PubMed
description Hemoglobin-based oxygen carriers (HBOCs) are an investigational replacement for blood transfusions and are known to cause oxidative damage to tissues. To investigate the correlation between their oxygen binding properties and these detrimental effects, we investigated two PEGylated HBOCs endowed with different oxygen binding properties - but otherwise chemically identical - in a Guinea pig transfusion model. Plasma samples were analyzed for biochemical markers of inflammation, tissue damage and organ dysfunction; proteins and lipids of heart and kidney extracts were analyzed for markers of oxidative damage. Overall, both HBOCs produced higher oxidative stress in comparison to an auto-transfusion control group. Particularly, tissue 4-hydroxynonenal adducts, tissue malondialdehyde adducts and plasma 8-oxo-2'-deoxyguanosine exhibited significantly higher levels in comparison with the control group. For malondialdehyde adducts, a higher level in the renal tissue was observed for animals treated with the high-affinity HBOC, hinting at a correlation between the HBOCs oxygen binding properties and the oxidative stress they produce. Moreover, we found that the high-affinity HBOC produced greater tissue oxygenation in comparison with the low affinity one, possibly correlating with the higher oxidative stress it induced.
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spelling pubmed-61919362018-10-19 High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model Alomari, Esra'a Ronda, Luca Bruno, Stefano Paredi, Gianluca Marchetti, Marialaura Bettati, Stefano Olivari, Davide Fumagalli, Francesca Novelli, Deborah Ristagno, Giuseppe Latini, Roberto Cooper, Chris E. Reeder, Brandon J. Mozzarelli, Andrea Free Radic Biol Med Article Hemoglobin-based oxygen carriers (HBOCs) are an investigational replacement for blood transfusions and are known to cause oxidative damage to tissues. To investigate the correlation between their oxygen binding properties and these detrimental effects, we investigated two PEGylated HBOCs endowed with different oxygen binding properties - but otherwise chemically identical - in a Guinea pig transfusion model. Plasma samples were analyzed for biochemical markers of inflammation, tissue damage and organ dysfunction; proteins and lipids of heart and kidney extracts were analyzed for markers of oxidative damage. Overall, both HBOCs produced higher oxidative stress in comparison to an auto-transfusion control group. Particularly, tissue 4-hydroxynonenal adducts, tissue malondialdehyde adducts and plasma 8-oxo-2'-deoxyguanosine exhibited significantly higher levels in comparison with the control group. For malondialdehyde adducts, a higher level in the renal tissue was observed for animals treated with the high-affinity HBOC, hinting at a correlation between the HBOCs oxygen binding properties and the oxidative stress they produce. Moreover, we found that the high-affinity HBOC produced greater tissue oxygenation in comparison with the low affinity one, possibly correlating with the higher oxidative stress it induced. Elsevier Science 2018-08-20 /pmc/articles/PMC6191936/ /pubmed/29920341 http://dx.doi.org/10.1016/j.freeradbiomed.2018.06.018 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Alomari, Esra'a
Ronda, Luca
Bruno, Stefano
Paredi, Gianluca
Marchetti, Marialaura
Bettati, Stefano
Olivari, Davide
Fumagalli, Francesca
Novelli, Deborah
Ristagno, Giuseppe
Latini, Roberto
Cooper, Chris E.
Reeder, Brandon J.
Mozzarelli, Andrea
High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title_full High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title_fullStr High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title_full_unstemmed High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title_short High- and low-affinity PEGylated hemoglobin-based oxygen carriers: Differential oxidative stress in a Guinea pig transfusion model
title_sort high- and low-affinity pegylated hemoglobin-based oxygen carriers: differential oxidative stress in a guinea pig transfusion model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6191936/
https://www.ncbi.nlm.nih.gov/pubmed/29920341
http://dx.doi.org/10.1016/j.freeradbiomed.2018.06.018
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