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The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment

The progress of space science and technology has ushered in a new era for humanity’s exploration of outer space. Recent studies have indicated that the aerospace special environment including microgravity and space radiation poses a significant risk to the health of astronauts, which involves multip...

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Autores principales: Yan, Liben, Sun, Chunli, Zhang, Yaxi, Zhang, Peng, Chen, Yu, Deng, Yifan, Er, Tianyi, Deng, Yulin, Wang, Zhimin, Ma, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961990/
https://www.ncbi.nlm.nih.gov/pubmed/36835077
http://dx.doi.org/10.3390/ijms24043666
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author Yan, Liben
Sun, Chunli
Zhang, Yaxi
Zhang, Peng
Chen, Yu
Deng, Yifan
Er, Tianyi
Deng, Yulin
Wang, Zhimin
Ma, Hong
author_facet Yan, Liben
Sun, Chunli
Zhang, Yaxi
Zhang, Peng
Chen, Yu
Deng, Yifan
Er, Tianyi
Deng, Yulin
Wang, Zhimin
Ma, Hong
author_sort Yan, Liben
collection PubMed
description The progress of space science and technology has ushered in a new era for humanity’s exploration of outer space. Recent studies have indicated that the aerospace special environment including microgravity and space radiation poses a significant risk to the health of astronauts, which involves multiple pathophysiological effects on the human body as well on tissues and organs. It has been an important research topic to study the molecular mechanism of body damage and further explore countermeasures against the physiological and pathological changes caused by the space environment. In this study, we used the rat model to study the biological effects of the tissue damage and related molecular pathway under either simulated microgravity or heavy ion radiation or combined stimulation. Our study disclosed that ureaplasma-sensitive amino oxidase (SSAO) upregulation is closely related to the systematic inflammatory response (IL-6, TNF-α) in rats under a simulated aerospace environment. In particular, the space environment leads to significant changes in the level of inflammatory genes in heart tissues, thus altering the expression and activity of SSAO and causing inflammatory responses. The detailed molecular mechanisms have been further validated in the genetic engineering cell line model. Overall, this work clearly shows the biological implication of SSAO upregulation in microgravity and radiation-mediated inflammatory response, providing a scientific basis or potential target for further in-depth investigation of the pathological damage and protection strategy under a space environment.
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spelling pubmed-99619902023-02-26 The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment Yan, Liben Sun, Chunli Zhang, Yaxi Zhang, Peng Chen, Yu Deng, Yifan Er, Tianyi Deng, Yulin Wang, Zhimin Ma, Hong Int J Mol Sci Article The progress of space science and technology has ushered in a new era for humanity’s exploration of outer space. Recent studies have indicated that the aerospace special environment including microgravity and space radiation poses a significant risk to the health of astronauts, which involves multiple pathophysiological effects on the human body as well on tissues and organs. It has been an important research topic to study the molecular mechanism of body damage and further explore countermeasures against the physiological and pathological changes caused by the space environment. In this study, we used the rat model to study the biological effects of the tissue damage and related molecular pathway under either simulated microgravity or heavy ion radiation or combined stimulation. Our study disclosed that ureaplasma-sensitive amino oxidase (SSAO) upregulation is closely related to the systematic inflammatory response (IL-6, TNF-α) in rats under a simulated aerospace environment. In particular, the space environment leads to significant changes in the level of inflammatory genes in heart tissues, thus altering the expression and activity of SSAO and causing inflammatory responses. The detailed molecular mechanisms have been further validated in the genetic engineering cell line model. Overall, this work clearly shows the biological implication of SSAO upregulation in microgravity and radiation-mediated inflammatory response, providing a scientific basis or potential target for further in-depth investigation of the pathological damage and protection strategy under a space environment. MDPI 2023-02-11 /pmc/articles/PMC9961990/ /pubmed/36835077 http://dx.doi.org/10.3390/ijms24043666 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
Yan, Liben
Sun, Chunli
Zhang, Yaxi
Zhang, Peng
Chen, Yu
Deng, Yifan
Er, Tianyi
Deng, Yulin
Wang, Zhimin
Ma, Hong
The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title_full The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title_fullStr The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title_full_unstemmed The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title_short The Biological Implication of Semicarbazide-Sensitive Amine Oxidase (SSAO) Upregulation in Rat Systemic Inflammatory Response under Simulated Aerospace Environment
title_sort biological implication of semicarbazide-sensitive amine oxidase (ssao) upregulation in rat systemic inflammatory response under simulated aerospace environment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961990/
https://www.ncbi.nlm.nih.gov/pubmed/36835077
http://dx.doi.org/10.3390/ijms24043666
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