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Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx

BACKGROUND AND PURPOSE: Disruption of the endothelial glycocalyx is causally related to microvascular endothelial dysfunction, a characteristic of sepsis‐induced acute respiratory distress syndrome (ARDS). Recombinant human thrombomodulin (rhTM) attenuates vascular endothelial injuries, but the unde...

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Autores principales: Suzuki, Kodai, Okada, Hideshi, Takemura, Genzou, Takada, Chihiro, Tomita, Hiroyuki, Yano, Hirohisa, Muraki, Isamu, Zaikokuji, Ryogen, Kuroda, Ayumi, Fukuda, Hirotsugu, Nishio, Ayane, Takashima, Shigeo, Suzuki, Akio, Miyazaki, Nagisa, Fukuta, Tetsuya, Yamada, Noriaki, Watanabe, Takatomo, Doi, Tomoaki, Yoshida, Takahiro, Kumada, Keisuke, Ushikoshi, Hiroaki, Yoshida, Shozo, Ogura, Shinji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7429482/
https://www.ncbi.nlm.nih.gov/pubmed/32497259
http://dx.doi.org/10.1111/bph.15153
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author Suzuki, Kodai
Okada, Hideshi
Takemura, Genzou
Takada, Chihiro
Tomita, Hiroyuki
Yano, Hirohisa
Muraki, Isamu
Zaikokuji, Ryogen
Kuroda, Ayumi
Fukuda, Hirotsugu
Nishio, Ayane
Takashima, Shigeo
Suzuki, Akio
Miyazaki, Nagisa
Fukuta, Tetsuya
Yamada, Noriaki
Watanabe, Takatomo
Doi, Tomoaki
Yoshida, Takahiro
Kumada, Keisuke
Ushikoshi, Hiroaki
Yoshida, Shozo
Ogura, Shinji
author_facet Suzuki, Kodai
Okada, Hideshi
Takemura, Genzou
Takada, Chihiro
Tomita, Hiroyuki
Yano, Hirohisa
Muraki, Isamu
Zaikokuji, Ryogen
Kuroda, Ayumi
Fukuda, Hirotsugu
Nishio, Ayane
Takashima, Shigeo
Suzuki, Akio
Miyazaki, Nagisa
Fukuta, Tetsuya
Yamada, Noriaki
Watanabe, Takatomo
Doi, Tomoaki
Yoshida, Takahiro
Kumada, Keisuke
Ushikoshi, Hiroaki
Yoshida, Shozo
Ogura, Shinji
author_sort Suzuki, Kodai
collection PubMed
description BACKGROUND AND PURPOSE: Disruption of the endothelial glycocalyx is causally related to microvascular endothelial dysfunction, a characteristic of sepsis‐induced acute respiratory distress syndrome (ARDS). Recombinant human thrombomodulin (rhTM) attenuates vascular endothelial injuries, but the underlying mechanism remains elusive. Here, we investigated the structural basis and molecular mechanisms of rhTM effects on vascular endothelial injury in a model of sepsis. EXPERIMENTAL APPROACH: LPS (20 mg·kg(−1)) was intraperitoneally injected into 10‐week‐old male C57BL6 mice, and saline or rhTM was intraperitoneally injected 3 and 24 h after LPS injection. Using serum and/or lung tissue, histological, ultrastructural, and microarray analyses were performed. KEY RESULTS: Survival rate of rhTM‐treated mice was significantly higher than that of control mice 48 h after LPS injection. Serum concentrations of IL‐6 and high‐mobility group box 1 were lower in the rhTM‐treated group than in the control. Injury to the endothelial glycocalyx in pulmonary capillaries was attenuated by rhTM treatment. Gene set enrichment analysis revealed up‐regulation of gene sets corresponding to cell proliferation/differentiation and anti‐inflammation, such as the TGF‐β pathway, and negative regulation of IL‐6, upon rhTM treatment. Gene expression of heparan sulfate 6‐O‐sulfotransferase 1 and endothelial cell‐specific molecule 1 (components of the endothelial glycocalyx) was significantly preserved by rhTM treatment, and their protein expression levels were maintained in endothelial cells. CONCLUSION AND IMPLICATIONS: Our findings show that rhTM treatment affected inflammation, cell proliferation/differentiation, and glycocalyx synthesis in serum and lung tissue, subsequently attenuating ARDS caused by endothelial injury.
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spelling pubmed-74294822020-08-18 Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx Suzuki, Kodai Okada, Hideshi Takemura, Genzou Takada, Chihiro Tomita, Hiroyuki Yano, Hirohisa Muraki, Isamu Zaikokuji, Ryogen Kuroda, Ayumi Fukuda, Hirotsugu Nishio, Ayane Takashima, Shigeo Suzuki, Akio Miyazaki, Nagisa Fukuta, Tetsuya Yamada, Noriaki Watanabe, Takatomo Doi, Tomoaki Yoshida, Takahiro Kumada, Keisuke Ushikoshi, Hiroaki Yoshida, Shozo Ogura, Shinji Br J Pharmacol Research Papers BACKGROUND AND PURPOSE: Disruption of the endothelial glycocalyx is causally related to microvascular endothelial dysfunction, a characteristic of sepsis‐induced acute respiratory distress syndrome (ARDS). Recombinant human thrombomodulin (rhTM) attenuates vascular endothelial injuries, but the underlying mechanism remains elusive. Here, we investigated the structural basis and molecular mechanisms of rhTM effects on vascular endothelial injury in a model of sepsis. EXPERIMENTAL APPROACH: LPS (20 mg·kg(−1)) was intraperitoneally injected into 10‐week‐old male C57BL6 mice, and saline or rhTM was intraperitoneally injected 3 and 24 h after LPS injection. Using serum and/or lung tissue, histological, ultrastructural, and microarray analyses were performed. KEY RESULTS: Survival rate of rhTM‐treated mice was significantly higher than that of control mice 48 h after LPS injection. Serum concentrations of IL‐6 and high‐mobility group box 1 were lower in the rhTM‐treated group than in the control. Injury to the endothelial glycocalyx in pulmonary capillaries was attenuated by rhTM treatment. Gene set enrichment analysis revealed up‐regulation of gene sets corresponding to cell proliferation/differentiation and anti‐inflammation, such as the TGF‐β pathway, and negative regulation of IL‐6, upon rhTM treatment. Gene expression of heparan sulfate 6‐O‐sulfotransferase 1 and endothelial cell‐specific molecule 1 (components of the endothelial glycocalyx) was significantly preserved by rhTM treatment, and their protein expression levels were maintained in endothelial cells. CONCLUSION AND IMPLICATIONS: Our findings show that rhTM treatment affected inflammation, cell proliferation/differentiation, and glycocalyx synthesis in serum and lung tissue, subsequently attenuating ARDS caused by endothelial injury. John Wiley and Sons Inc. 2020-07-14 2020-09 /pmc/articles/PMC7429482/ /pubmed/32497259 http://dx.doi.org/10.1111/bph.15153 Text en © 2020 The Authors. British Journal of Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Suzuki, Kodai
Okada, Hideshi
Takemura, Genzou
Takada, Chihiro
Tomita, Hiroyuki
Yano, Hirohisa
Muraki, Isamu
Zaikokuji, Ryogen
Kuroda, Ayumi
Fukuda, Hirotsugu
Nishio, Ayane
Takashima, Shigeo
Suzuki, Akio
Miyazaki, Nagisa
Fukuta, Tetsuya
Yamada, Noriaki
Watanabe, Takatomo
Doi, Tomoaki
Yoshida, Takahiro
Kumada, Keisuke
Ushikoshi, Hiroaki
Yoshida, Shozo
Ogura, Shinji
Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title_full Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title_fullStr Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title_full_unstemmed Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title_short Recombinant thrombomodulin protects against LPS‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
title_sort recombinant thrombomodulin protects against lps‐induced acute respiratory distress syndrome via preservation of pulmonary endothelial glycocalyx
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7429482/
https://www.ncbi.nlm.nih.gov/pubmed/32497259
http://dx.doi.org/10.1111/bph.15153
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