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The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process
Human spaceflight is associated with several health-related issues as a result of long-term exposure to microgravity, ionizing radiation, and higher levels of psychological stress. Frequent reported skin problems in space include rashes, itches, and a delayed wound healing. Access to space is restri...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857207/ https://www.ncbi.nlm.nih.gov/pubmed/36672184 http://dx.doi.org/10.3390/cells12020246 |
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author | Radstake, Wilhelmina E. Gautam, Kiran Miranda, Silvana Vermeesen, Randy Tabury, Kevin Rehnberg, Emil Buset, Jasmine Janssen, Ann Leysen, Liselotte Neefs, Mieke Verslegers, Mieke Claesen, Jürgen van Goethem, Marc-Jan Weber, Uli Fournier, Claudia Parisi, Alessio Brandenburg, Sytze Durante, Marco Baselet, Bjorn Baatout, Sarah |
author_facet | Radstake, Wilhelmina E. Gautam, Kiran Miranda, Silvana Vermeesen, Randy Tabury, Kevin Rehnberg, Emil Buset, Jasmine Janssen, Ann Leysen, Liselotte Neefs, Mieke Verslegers, Mieke Claesen, Jürgen van Goethem, Marc-Jan Weber, Uli Fournier, Claudia Parisi, Alessio Brandenburg, Sytze Durante, Marco Baselet, Bjorn Baatout, Sarah |
author_sort | Radstake, Wilhelmina E. |
collection | PubMed |
description | Human spaceflight is associated with several health-related issues as a result of long-term exposure to microgravity, ionizing radiation, and higher levels of psychological stress. Frequent reported skin problems in space include rashes, itches, and a delayed wound healing. Access to space is restricted by financial and logistical issues; as a consequence, experimental sample sizes are often small, which limits the generalization of the results. Earth-based simulation models can be used to investigate cellular responses as a result of exposure to certain spaceflight stressors. Here, we describe the development of an in vitro model of the simulated spaceflight environment, which we used to investigate the combined effect of simulated microgravity using the random positioning machine (RPM), ionizing radiation, and stress hormones on the wound-healing capacity of human dermal fibroblasts. Fibroblasts were exposed to cortisol, after which they were irradiated with different radiation qualities (including X-rays, protons, carbon ions, and iron ions) followed by exposure to simulated microgravity using a random positioning machine (RPM). Data related to the inflammatory, proliferation, and remodeling phase of wound healing has been collected. Results show that spaceflight stressors can interfere with the wound healing process at any phase. Moreover, several interactions between the different spaceflight stressors were found. This highlights the complexity that needs to be taken into account when studying the effect of spaceflight stressors on certain biological processes and for the aim of countermeasures development. |
format | Online Article Text |
id | pubmed-9857207 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-98572072023-01-21 The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process Radstake, Wilhelmina E. Gautam, Kiran Miranda, Silvana Vermeesen, Randy Tabury, Kevin Rehnberg, Emil Buset, Jasmine Janssen, Ann Leysen, Liselotte Neefs, Mieke Verslegers, Mieke Claesen, Jürgen van Goethem, Marc-Jan Weber, Uli Fournier, Claudia Parisi, Alessio Brandenburg, Sytze Durante, Marco Baselet, Bjorn Baatout, Sarah Cells Article Human spaceflight is associated with several health-related issues as a result of long-term exposure to microgravity, ionizing radiation, and higher levels of psychological stress. Frequent reported skin problems in space include rashes, itches, and a delayed wound healing. Access to space is restricted by financial and logistical issues; as a consequence, experimental sample sizes are often small, which limits the generalization of the results. Earth-based simulation models can be used to investigate cellular responses as a result of exposure to certain spaceflight stressors. Here, we describe the development of an in vitro model of the simulated spaceflight environment, which we used to investigate the combined effect of simulated microgravity using the random positioning machine (RPM), ionizing radiation, and stress hormones on the wound-healing capacity of human dermal fibroblasts. Fibroblasts were exposed to cortisol, after which they were irradiated with different radiation qualities (including X-rays, protons, carbon ions, and iron ions) followed by exposure to simulated microgravity using a random positioning machine (RPM). Data related to the inflammatory, proliferation, and remodeling phase of wound healing has been collected. Results show that spaceflight stressors can interfere with the wound healing process at any phase. Moreover, several interactions between the different spaceflight stressors were found. This highlights the complexity that needs to be taken into account when studying the effect of spaceflight stressors on certain biological processes and for the aim of countermeasures development. MDPI 2023-01-07 /pmc/articles/PMC9857207/ /pubmed/36672184 http://dx.doi.org/10.3390/cells12020246 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 Radstake, Wilhelmina E. Gautam, Kiran Miranda, Silvana Vermeesen, Randy Tabury, Kevin Rehnberg, Emil Buset, Jasmine Janssen, Ann Leysen, Liselotte Neefs, Mieke Verslegers, Mieke Claesen, Jürgen van Goethem, Marc-Jan Weber, Uli Fournier, Claudia Parisi, Alessio Brandenburg, Sytze Durante, Marco Baselet, Bjorn Baatout, Sarah The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title | The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title_full | The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title_fullStr | The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title_full_unstemmed | The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title_short | The Effects of Combined Exposure to Simulated Microgravity, Ionizing Radiation, and Cortisol on the In Vitro Wound Healing Process |
title_sort | effects of combined exposure to simulated microgravity, ionizing radiation, and cortisol on the in vitro wound healing process |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857207/ https://www.ncbi.nlm.nih.gov/pubmed/36672184 http://dx.doi.org/10.3390/cells12020246 |
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