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Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity

Our aim was to identify proteins that reflect an acute systemic response to prolonged hyperbaric stress and discover potential biomarker pathways for pulmonary O(2) toxicity. The study was a double-blind, randomized, crossover design in trained male Navy diver subjects. Each subject completed two dr...

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Autores principales: Mahoney, Kyle J., Bowie, Jacob S., Ford, Austin E., Perera, Neranjan, Sekiguchi, Yasuki, Fothergill, David M., Lee, Elaine C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534745/
https://www.ncbi.nlm.nih.gov/pubmed/37755249
http://dx.doi.org/10.3390/metabo13090970
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author Mahoney, Kyle J.
Bowie, Jacob S.
Ford, Austin E.
Perera, Neranjan
Sekiguchi, Yasuki
Fothergill, David M.
Lee, Elaine C.
author_facet Mahoney, Kyle J.
Bowie, Jacob S.
Ford, Austin E.
Perera, Neranjan
Sekiguchi, Yasuki
Fothergill, David M.
Lee, Elaine C.
author_sort Mahoney, Kyle J.
collection PubMed
description Our aim was to identify proteins that reflect an acute systemic response to prolonged hyperbaric stress and discover potential biomarker pathways for pulmonary O(2) toxicity. The study was a double-blind, randomized, crossover design in trained male Navy diver subjects. Each subject completed two dry resting hyperbaric chamber dives separated by a minimum of one week. One dive exposed the subject to 6.5 h of 100% oxygen (O(2)) at 2ATA. The alternate dive exposed the subjects to an enhanced air nitrox mixture (EAN) containing 30.6% O(2) at the same depth for the same duration. Venous blood samples collected before (PRE) and after (POST) each dive were prepared and submitted to LC-MS/MS analysis (2 h runs). A total of 346 total proteins were detected and analyzed. A total of 12 proteins were significantly increased at EANPOST (vs. EANPRE), including proteins in hemostasis and immune signaling and activation. Significantly increased proteins at O(2)PRE (vs. O(2)POST) included neural cell adhesion molecule 1, glycoprotein Ib, catalase, hemoglobin subunit beta, fibulin-like proteins, and complement proteins. EANPOST and O(2)POST differed in biomarkers related to coagulation, immune signaling and activation, and metabolism. Of particular interest is (EANPOST vs. O(2)POST), which is protective against oxidative stress.
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spelling pubmed-105347452023-09-29 Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity Mahoney, Kyle J. Bowie, Jacob S. Ford, Austin E. Perera, Neranjan Sekiguchi, Yasuki Fothergill, David M. Lee, Elaine C. Metabolites Article Our aim was to identify proteins that reflect an acute systemic response to prolonged hyperbaric stress and discover potential biomarker pathways for pulmonary O(2) toxicity. The study was a double-blind, randomized, crossover design in trained male Navy diver subjects. Each subject completed two dry resting hyperbaric chamber dives separated by a minimum of one week. One dive exposed the subject to 6.5 h of 100% oxygen (O(2)) at 2ATA. The alternate dive exposed the subjects to an enhanced air nitrox mixture (EAN) containing 30.6% O(2) at the same depth for the same duration. Venous blood samples collected before (PRE) and after (POST) each dive were prepared and submitted to LC-MS/MS analysis (2 h runs). A total of 346 total proteins were detected and analyzed. A total of 12 proteins were significantly increased at EANPOST (vs. EANPRE), including proteins in hemostasis and immune signaling and activation. Significantly increased proteins at O(2)PRE (vs. O(2)POST) included neural cell adhesion molecule 1, glycoprotein Ib, catalase, hemoglobin subunit beta, fibulin-like proteins, and complement proteins. EANPOST and O(2)POST differed in biomarkers related to coagulation, immune signaling and activation, and metabolism. Of particular interest is (EANPOST vs. O(2)POST), which is protective against oxidative stress. MDPI 2023-08-23 /pmc/articles/PMC10534745/ /pubmed/37755249 http://dx.doi.org/10.3390/metabo13090970 Text en © 2023 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
Mahoney, Kyle J.
Bowie, Jacob S.
Ford, Austin E.
Perera, Neranjan
Sekiguchi, Yasuki
Fothergill, David M.
Lee, Elaine C.
Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title_full Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title_fullStr Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title_full_unstemmed Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title_short Plasma Proteomics-Based Discovery of Mechanistic Biomarkers of Hyperbaric Stress and Pulmonary Oxygen Toxicity
title_sort plasma proteomics-based discovery of mechanistic biomarkers of hyperbaric stress and pulmonary oxygen toxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534745/
https://www.ncbi.nlm.nih.gov/pubmed/37755249
http://dx.doi.org/10.3390/metabo13090970
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