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Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle

Carbon monoxide (CO) poisoning is the leading cause of poisoning-related deaths globally. The currently available therapy options are normobaric oxygen (NBO) and hyperbaric oxygen (HBO). While NBO lacks in efficacy, HBO is not available in all areas and countries. We present a novel method, extracor...

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Autores principales: Steuer, Niklas B., Schlanstein, Peter C., Hannig, Anke, Sibirtsev, Stephan, Jupke, Andreas, Schmitz-Rode, Thomas, Kopp, Rüdger, Steinseifer, Ulrich, Wagner, Georg, Arens, Jutta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8779470/
https://www.ncbi.nlm.nih.gov/pubmed/35054581
http://dx.doi.org/10.3390/membranes12010056
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author Steuer, Niklas B.
Schlanstein, Peter C.
Hannig, Anke
Sibirtsev, Stephan
Jupke, Andreas
Schmitz-Rode, Thomas
Kopp, Rüdger
Steinseifer, Ulrich
Wagner, Georg
Arens, Jutta
author_facet Steuer, Niklas B.
Schlanstein, Peter C.
Hannig, Anke
Sibirtsev, Stephan
Jupke, Andreas
Schmitz-Rode, Thomas
Kopp, Rüdger
Steinseifer, Ulrich
Wagner, Georg
Arens, Jutta
author_sort Steuer, Niklas B.
collection PubMed
description Carbon monoxide (CO) poisoning is the leading cause of poisoning-related deaths globally. The currently available therapy options are normobaric oxygen (NBO) and hyperbaric oxygen (HBO). While NBO lacks in efficacy, HBO is not available in all areas and countries. We present a novel method, extracorporeal hyperoxygenation therapy (EHT), for the treatment of CO poisoning that eliminates the CO by treating blood extracorporeally at elevated oxygen partial pressure. In this study, we proof the principle of the method in vitro using procine blood: Firstly, we investigated the difference in the CO elimination of a hollow fibre membrane oxygenator and a specifically designed batch oxygenator based on the bubble oxygenator principle at elevated pressures (1, 3 bar). Secondly, the batch oxygenator was redesigned and tested for a broader range of pressures (1, 3, 5, 7 bar) and temperatures (23, 30, 37 °C). So far, the shortest measured carboxyhemoglobin half-life in the blood was 21.32 min. In conclusion, EHT has the potential to provide an easily available and effective method for the treatment of CO poisoning.
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spelling pubmed-87794702022-01-22 Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle Steuer, Niklas B. Schlanstein, Peter C. Hannig, Anke Sibirtsev, Stephan Jupke, Andreas Schmitz-Rode, Thomas Kopp, Rüdger Steinseifer, Ulrich Wagner, Georg Arens, Jutta Membranes (Basel) Article Carbon monoxide (CO) poisoning is the leading cause of poisoning-related deaths globally. The currently available therapy options are normobaric oxygen (NBO) and hyperbaric oxygen (HBO). While NBO lacks in efficacy, HBO is not available in all areas and countries. We present a novel method, extracorporeal hyperoxygenation therapy (EHT), for the treatment of CO poisoning that eliminates the CO by treating blood extracorporeally at elevated oxygen partial pressure. In this study, we proof the principle of the method in vitro using procine blood: Firstly, we investigated the difference in the CO elimination of a hollow fibre membrane oxygenator and a specifically designed batch oxygenator based on the bubble oxygenator principle at elevated pressures (1, 3 bar). Secondly, the batch oxygenator was redesigned and tested for a broader range of pressures (1, 3, 5, 7 bar) and temperatures (23, 30, 37 °C). So far, the shortest measured carboxyhemoglobin half-life in the blood was 21.32 min. In conclusion, EHT has the potential to provide an easily available and effective method for the treatment of CO poisoning. MDPI 2021-12-31 /pmc/articles/PMC8779470/ /pubmed/35054581 http://dx.doi.org/10.3390/membranes12010056 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Steuer, Niklas B.
Schlanstein, Peter C.
Hannig, Anke
Sibirtsev, Stephan
Jupke, Andreas
Schmitz-Rode, Thomas
Kopp, Rüdger
Steinseifer, Ulrich
Wagner, Georg
Arens, Jutta
Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title_full Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title_fullStr Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title_full_unstemmed Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title_short Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning: In-Vitro Proof of Principle
title_sort extracorporeal hyperoxygenation therapy (eht) for carbon monoxide poisoning: in-vitro proof of principle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8779470/
https://www.ncbi.nlm.nih.gov/pubmed/35054581
http://dx.doi.org/10.3390/membranes12010056
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