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Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest

After cardiac arrest, organ damage consequent to ischemia-reperfusion has been attributed to oxidative stress. Mild therapeutic hypothermia has been applied to reduce this damage, and it may reduce oxidative damage as well. This study aimed to compare oxidative damage and antioxidant defenses in pat...

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Autores principales: Hackenhaar, Fernanda S., Medeiros, Tássia M., Heemann, Fernanda M., Behling, Camile S., Putti, Jordana S., Mahl, Camila D., Verona, Cleber, da Silva, Ana Carolina A., Guerra, Maria C., Gonçalves, Carlos A. S., Oliveira, Vanessa M., Riveiro, Diego F. M., Vieira, Silvia R. R., Benfato, Mara S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434234/
https://www.ncbi.nlm.nih.gov/pubmed/28553435
http://dx.doi.org/10.1155/2017/8704352
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author Hackenhaar, Fernanda S.
Medeiros, Tássia M.
Heemann, Fernanda M.
Behling, Camile S.
Putti, Jordana S.
Mahl, Camila D.
Verona, Cleber
da Silva, Ana Carolina A.
Guerra, Maria C.
Gonçalves, Carlos A. S.
Oliveira, Vanessa M.
Riveiro, Diego F. M.
Vieira, Silvia R. R.
Benfato, Mara S.
author_facet Hackenhaar, Fernanda S.
Medeiros, Tássia M.
Heemann, Fernanda M.
Behling, Camile S.
Putti, Jordana S.
Mahl, Camila D.
Verona, Cleber
da Silva, Ana Carolina A.
Guerra, Maria C.
Gonçalves, Carlos A. S.
Oliveira, Vanessa M.
Riveiro, Diego F. M.
Vieira, Silvia R. R.
Benfato, Mara S.
author_sort Hackenhaar, Fernanda S.
collection PubMed
description After cardiac arrest, organ damage consequent to ischemia-reperfusion has been attributed to oxidative stress. Mild therapeutic hypothermia has been applied to reduce this damage, and it may reduce oxidative damage as well. This study aimed to compare oxidative damage and antioxidant defenses in patients treated with controlled normothermia versus mild therapeutic hypothermia during postcardiac arrest syndrome. The sample consisted of 31 patients under controlled normothermia (36°C) and 11 patients treated with 24 h mild therapeutic hypothermia (33°C), victims of in- or out-of-hospital cardiac arrest. Parameters were assessed at 6, 12, 36, and 72 h after cardiac arrest in the central venous blood samples. Hypothermic and normothermic patients had similar S100B levels, a biomarker of brain injury. Xanthine oxidase activity is similar between hypothermic and normothermic patients; however, it decreases posthypothermia treatment. Xanthine oxidase activity is positively correlated with lactate and S100B and inversely correlated with pH, calcium, and sodium levels. Hypothermia reduces malondialdehyde and protein carbonyl levels, markers of oxidative damage. Concomitantly, hypothermia increases the activity of erythrocyte antioxidant enzymes superoxide dismutase, glutathione peroxidase, and glutathione S-transferase while decreasing the activity of serum paraoxonase-1. These findings suggest that mild therapeutic hypothermia reduces oxidative damage and alters antioxidant defenses in postcardiac arrest patients.
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spelling pubmed-54342342017-05-28 Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest Hackenhaar, Fernanda S. Medeiros, Tássia M. Heemann, Fernanda M. Behling, Camile S. Putti, Jordana S. Mahl, Camila D. Verona, Cleber da Silva, Ana Carolina A. Guerra, Maria C. Gonçalves, Carlos A. S. Oliveira, Vanessa M. Riveiro, Diego F. M. Vieira, Silvia R. R. Benfato, Mara S. Oxid Med Cell Longev Research Article After cardiac arrest, organ damage consequent to ischemia-reperfusion has been attributed to oxidative stress. Mild therapeutic hypothermia has been applied to reduce this damage, and it may reduce oxidative damage as well. This study aimed to compare oxidative damage and antioxidant defenses in patients treated with controlled normothermia versus mild therapeutic hypothermia during postcardiac arrest syndrome. The sample consisted of 31 patients under controlled normothermia (36°C) and 11 patients treated with 24 h mild therapeutic hypothermia (33°C), victims of in- or out-of-hospital cardiac arrest. Parameters were assessed at 6, 12, 36, and 72 h after cardiac arrest in the central venous blood samples. Hypothermic and normothermic patients had similar S100B levels, a biomarker of brain injury. Xanthine oxidase activity is similar between hypothermic and normothermic patients; however, it decreases posthypothermia treatment. Xanthine oxidase activity is positively correlated with lactate and S100B and inversely correlated with pH, calcium, and sodium levels. Hypothermia reduces malondialdehyde and protein carbonyl levels, markers of oxidative damage. Concomitantly, hypothermia increases the activity of erythrocyte antioxidant enzymes superoxide dismutase, glutathione peroxidase, and glutathione S-transferase while decreasing the activity of serum paraoxonase-1. These findings suggest that mild therapeutic hypothermia reduces oxidative damage and alters antioxidant defenses in postcardiac arrest patients. Hindawi 2017 2017-05-01 /pmc/articles/PMC5434234/ /pubmed/28553435 http://dx.doi.org/10.1155/2017/8704352 Text en Copyright © 2017 Fernanda S. Hackenhaar et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hackenhaar, Fernanda S.
Medeiros, Tássia M.
Heemann, Fernanda M.
Behling, Camile S.
Putti, Jordana S.
Mahl, Camila D.
Verona, Cleber
da Silva, Ana Carolina A.
Guerra, Maria C.
Gonçalves, Carlos A. S.
Oliveira, Vanessa M.
Riveiro, Diego F. M.
Vieira, Silvia R. R.
Benfato, Mara S.
Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title_full Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title_fullStr Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title_full_unstemmed Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title_short Therapeutic Hypothermia Reduces Oxidative Damage and Alters Antioxidant Defenses after Cardiac Arrest
title_sort therapeutic hypothermia reduces oxidative damage and alters antioxidant defenses after cardiac arrest
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434234/
https://www.ncbi.nlm.nih.gov/pubmed/28553435
http://dx.doi.org/10.1155/2017/8704352
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