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The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues

Hypoxia, even at non-lethal levels, is one of the most stressful events for all aerobic organisms as it significantly affects a wide spectrum of physiological functions and energy production. Aerobic organisms activate countless molecular responses directed to respond at cellular, tissue, organ, and...

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Autores principales: Salvagno, Michele, Coppalini, Giacomo, Taccone, Fabio Silvio, Strapazzon, Giacomo, Mrakic-Sposta, Simona, Rocco, Monica, Khalife, Maher, Balestra, Costantino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820104/
https://www.ncbi.nlm.nih.gov/pubmed/36613522
http://dx.doi.org/10.3390/ijms24010082
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author Salvagno, Michele
Coppalini, Giacomo
Taccone, Fabio Silvio
Strapazzon, Giacomo
Mrakic-Sposta, Simona
Rocco, Monica
Khalife, Maher
Balestra, Costantino
author_facet Salvagno, Michele
Coppalini, Giacomo
Taccone, Fabio Silvio
Strapazzon, Giacomo
Mrakic-Sposta, Simona
Rocco, Monica
Khalife, Maher
Balestra, Costantino
author_sort Salvagno, Michele
collection PubMed
description Hypoxia, even at non-lethal levels, is one of the most stressful events for all aerobic organisms as it significantly affects a wide spectrum of physiological functions and energy production. Aerobic organisms activate countless molecular responses directed to respond at cellular, tissue, organ, and whole-body levels to cope with oxygen shortage allowing survival, including enhanced neo-angiogenesis and systemic oxygen delivery. The benefits of hypoxia may be evoked without its detrimental consequences by exploiting the so-called normobaric oxygen paradox. The intermittent shift between hyperoxic-normoxic exposure, in addition to being safe and feasible, has been shown to enhance erythropoietin production and raise hemoglobin levels with numerous different potential applications in many fields of therapy as a new strategy for surgical preconditioning aimed at frail patients and prevention of postoperative anemia. This narrative review summarizes the physiological processes behind the proposed normobaric oxygen paradox, focusing on the latest scientific evidence and the potential applications for this strategy. Future possibilities for hyperoxic-normoxic exposure therapy include implementation as a synergistic strategy to improve a patient’s pre-surgical condition, a stimulating treatment in critically ill patients, preconditioning of athletes during physical preparation, and, in combination with surgery and conventional chemotherapy, to improve patients’ outcomes and quality of life.
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spelling pubmed-98201042023-01-07 The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues Salvagno, Michele Coppalini, Giacomo Taccone, Fabio Silvio Strapazzon, Giacomo Mrakic-Sposta, Simona Rocco, Monica Khalife, Maher Balestra, Costantino Int J Mol Sci Review Hypoxia, even at non-lethal levels, is one of the most stressful events for all aerobic organisms as it significantly affects a wide spectrum of physiological functions and energy production. Aerobic organisms activate countless molecular responses directed to respond at cellular, tissue, organ, and whole-body levels to cope with oxygen shortage allowing survival, including enhanced neo-angiogenesis and systemic oxygen delivery. The benefits of hypoxia may be evoked without its detrimental consequences by exploiting the so-called normobaric oxygen paradox. The intermittent shift between hyperoxic-normoxic exposure, in addition to being safe and feasible, has been shown to enhance erythropoietin production and raise hemoglobin levels with numerous different potential applications in many fields of therapy as a new strategy for surgical preconditioning aimed at frail patients and prevention of postoperative anemia. This narrative review summarizes the physiological processes behind the proposed normobaric oxygen paradox, focusing on the latest scientific evidence and the potential applications for this strategy. Future possibilities for hyperoxic-normoxic exposure therapy include implementation as a synergistic strategy to improve a patient’s pre-surgical condition, a stimulating treatment in critically ill patients, preconditioning of athletes during physical preparation, and, in combination with surgery and conventional chemotherapy, to improve patients’ outcomes and quality of life. MDPI 2022-12-21 /pmc/articles/PMC9820104/ /pubmed/36613522 http://dx.doi.org/10.3390/ijms24010082 Text en © 2022 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 Review
Salvagno, Michele
Coppalini, Giacomo
Taccone, Fabio Silvio
Strapazzon, Giacomo
Mrakic-Sposta, Simona
Rocco, Monica
Khalife, Maher
Balestra, Costantino
The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title_full The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title_fullStr The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title_full_unstemmed The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title_short The Normobaric Oxygen Paradox—Hyperoxic Hypoxic Paradox: A Novel Expedient Strategy in Hematopoiesis Clinical Issues
title_sort normobaric oxygen paradox—hyperoxic hypoxic paradox: a novel expedient strategy in hematopoiesis clinical issues
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820104/
https://www.ncbi.nlm.nih.gov/pubmed/36613522
http://dx.doi.org/10.3390/ijms24010082
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