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HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model

Hypoxic pulmonary hypertension (HPH), a form of pulmonary hypertension (PH) caused by hypoxia, could cause serious complications and has a high mortality rate, and no clinically effective treatments are currently available. In this study, we established an HPH preclinical model in rats by simulating...

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Autores principales: Li, Wen-Juan, Wen, Zhi-Peng, Xing, Yan, Yang, Jing-Ping, Xu, Xi-Yuan, Wang, Hong-Yan, Zhu, Wen-Yan, Li, Yue-Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325572/
https://www.ncbi.nlm.nih.gov/pubmed/35903436
http://dx.doi.org/10.1155/2022/6823743
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author Li, Wen-Juan
Wen, Zhi-Peng
Xing, Yan
Yang, Jing-Ping
Xu, Xi-Yuan
Wang, Hong-Yan
Zhu, Wen-Yan
Li, Yue-Hua
author_facet Li, Wen-Juan
Wen, Zhi-Peng
Xing, Yan
Yang, Jing-Ping
Xu, Xi-Yuan
Wang, Hong-Yan
Zhu, Wen-Yan
Li, Yue-Hua
author_sort Li, Wen-Juan
collection PubMed
description Hypoxic pulmonary hypertension (HPH), a form of pulmonary hypertension (PH) caused by hypoxia, could cause serious complications and has a high mortality rate, and no clinically effective treatments are currently available. In this study, we established an HPH preclinical model in rats by simulating clinicopathological indicators of the disease. Our results showed that high mobility group box-1 protein (HMGB1) aggravated the clinical symptoms of HPH. We aimed at establishing protocols and ideas for the clinical treatment of HPH by identifying downstream HMGB1 binding receptors. Our investigation showed that continuous hypoxia could cause significant lung injury in rats. ELISA and western blotting experiments revealed that HPH induces inflammation in the lung tissue and increases the expression of a hypoxia-inducible factor. Testing of lung tissue proteins in vivo and in human pulmonary artery endothelial cells in vitro revealed that the HMGB1-mediated increase in the receptor for advanced glycation end products (RAGE) expression promoted inflammation. In summary, we successfully established an HPH rat model providing a new model for preclinical HPH research and elucidated the role of HMGB1 in HPH. Furthermore, we describe that HMGB1 induced inflammation in the HPH model via RAGE, causing severe lung dysfunction. This study could potentially provide novel ideas and methods for the clinical treatment of HPH.
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spelling pubmed-93255722022-07-27 HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model Li, Wen-Juan Wen, Zhi-Peng Xing, Yan Yang, Jing-Ping Xu, Xi-Yuan Wang, Hong-Yan Zhu, Wen-Yan Li, Yue-Hua Comput Math Methods Med Research Article Hypoxic pulmonary hypertension (HPH), a form of pulmonary hypertension (PH) caused by hypoxia, could cause serious complications and has a high mortality rate, and no clinically effective treatments are currently available. In this study, we established an HPH preclinical model in rats by simulating clinicopathological indicators of the disease. Our results showed that high mobility group box-1 protein (HMGB1) aggravated the clinical symptoms of HPH. We aimed at establishing protocols and ideas for the clinical treatment of HPH by identifying downstream HMGB1 binding receptors. Our investigation showed that continuous hypoxia could cause significant lung injury in rats. ELISA and western blotting experiments revealed that HPH induces inflammation in the lung tissue and increases the expression of a hypoxia-inducible factor. Testing of lung tissue proteins in vivo and in human pulmonary artery endothelial cells in vitro revealed that the HMGB1-mediated increase in the receptor for advanced glycation end products (RAGE) expression promoted inflammation. In summary, we successfully established an HPH rat model providing a new model for preclinical HPH research and elucidated the role of HMGB1 in HPH. Furthermore, we describe that HMGB1 induced inflammation in the HPH model via RAGE, causing severe lung dysfunction. This study could potentially provide novel ideas and methods for the clinical treatment of HPH. Hindawi 2022-07-19 /pmc/articles/PMC9325572/ /pubmed/35903436 http://dx.doi.org/10.1155/2022/6823743 Text en Copyright © 2022 Wen-Juan Li et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Li, Wen-Juan
Wen, Zhi-Peng
Xing, Yan
Yang, Jing-Ping
Xu, Xi-Yuan
Wang, Hong-Yan
Zhu, Wen-Yan
Li, Yue-Hua
HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title_full HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title_fullStr HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title_full_unstemmed HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title_short HMGB1 Upregulates RAGE to Trigger the Expression of Inflammatory Factors in the Lung Tissue in a Hypoxic Pulmonary Hypertension Rat Model
title_sort hmgb1 upregulates rage to trigger the expression of inflammatory factors in the lung tissue in a hypoxic pulmonary hypertension rat model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325572/
https://www.ncbi.nlm.nih.gov/pubmed/35903436
http://dx.doi.org/10.1155/2022/6823743
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