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High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration

We investigated the role of endothelial glycocalyx and its component syndecan-1 protein in the pathophysiology of sepsis-induced vascular hyper-permeability and examined the therapeutic effects of high-molecular-weight sodium hyaluronate (HMW-SH). METHODS: Sepsis was induced by cotton smoke inhalati...

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Autores principales: Baljinnyam, Tuvshintugs, Radnaa, Enkhtuya, Ouellette, Casey M., Nelson, Christina, Niimi, Yosuke, Andersen, Clark R., Popov, Vsevolod, Lee, Jae-Woo, Prough, Donald S., Enkhbaatar, Perenlei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087021/
https://www.ncbi.nlm.nih.gov/pubmed/33930030
http://dx.doi.org/10.1371/journal.pone.0250327
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author Baljinnyam, Tuvshintugs
Radnaa, Enkhtuya
Ouellette, Casey M.
Nelson, Christina
Niimi, Yosuke
Andersen, Clark R.
Popov, Vsevolod
Lee, Jae-Woo
Prough, Donald S.
Enkhbaatar, Perenlei
author_facet Baljinnyam, Tuvshintugs
Radnaa, Enkhtuya
Ouellette, Casey M.
Nelson, Christina
Niimi, Yosuke
Andersen, Clark R.
Popov, Vsevolod
Lee, Jae-Woo
Prough, Donald S.
Enkhbaatar, Perenlei
author_sort Baljinnyam, Tuvshintugs
collection PubMed
description We investigated the role of endothelial glycocalyx and its component syndecan-1 protein in the pathophysiology of sepsis-induced vascular hyper-permeability and examined the therapeutic effects of high-molecular-weight sodium hyaluronate (HMW-SH). METHODS: Sepsis was induced by cotton smoke inhalation followed by intranasal administration of Pseudomonas aeruginosa in female (> 6 months) Balb/c and syndecan-1 knockout mice. Survival of mice, lung capillary endothelial glycocalyx integrity, lung water content, and vascular hyper-permeability were determined with or without HMW-SH treatment in these mice. Effects of HMW-SH on endothelial permeability and neutrophil migration were tested in in vitro setting. RESULTS: In septic wildtype mice, we found a severely damaged pulmonary microvascular endothelial glycocalyx and elevated levels of shed syndecan-1 in the circulation. These changes were associated with significantly increased pulmonary vascular permeability. In septic syndecan-1 knockout mice, extravascular lung water content was higher, and early death was observed. The administration of HMW-SH significantly reduced mortality and lung water content in septic syndecan-1 knockout mice, but not in septic wildtype mice. In in vitro setting, HMW-SH inhibited neutrophil migration and reduced cultured endothelial cell permeability increases. However, these effects were reversed by the addition of recombinant syndecan-1 ectodomain. CONCLUSIONS: HMW-SH reduced lung tissue damage and mortality in the absence of syndecan-1 protein, possibly by reducing vascular hyper-permeability and neutrophil migration. Our results further suggest that increased shed syndecan-1 protein levels are linked with the inefficiency of HMW-SH in septic wildtype mice.
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spelling pubmed-80870212021-05-06 High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration Baljinnyam, Tuvshintugs Radnaa, Enkhtuya Ouellette, Casey M. Nelson, Christina Niimi, Yosuke Andersen, Clark R. Popov, Vsevolod Lee, Jae-Woo Prough, Donald S. Enkhbaatar, Perenlei PLoS One Research Article We investigated the role of endothelial glycocalyx and its component syndecan-1 protein in the pathophysiology of sepsis-induced vascular hyper-permeability and examined the therapeutic effects of high-molecular-weight sodium hyaluronate (HMW-SH). METHODS: Sepsis was induced by cotton smoke inhalation followed by intranasal administration of Pseudomonas aeruginosa in female (> 6 months) Balb/c and syndecan-1 knockout mice. Survival of mice, lung capillary endothelial glycocalyx integrity, lung water content, and vascular hyper-permeability were determined with or without HMW-SH treatment in these mice. Effects of HMW-SH on endothelial permeability and neutrophil migration were tested in in vitro setting. RESULTS: In septic wildtype mice, we found a severely damaged pulmonary microvascular endothelial glycocalyx and elevated levels of shed syndecan-1 in the circulation. These changes were associated with significantly increased pulmonary vascular permeability. In septic syndecan-1 knockout mice, extravascular lung water content was higher, and early death was observed. The administration of HMW-SH significantly reduced mortality and lung water content in septic syndecan-1 knockout mice, but not in septic wildtype mice. In in vitro setting, HMW-SH inhibited neutrophil migration and reduced cultured endothelial cell permeability increases. However, these effects were reversed by the addition of recombinant syndecan-1 ectodomain. CONCLUSIONS: HMW-SH reduced lung tissue damage and mortality in the absence of syndecan-1 protein, possibly by reducing vascular hyper-permeability and neutrophil migration. Our results further suggest that increased shed syndecan-1 protein levels are linked with the inefficiency of HMW-SH in septic wildtype mice. Public Library of Science 2021-04-30 /pmc/articles/PMC8087021/ /pubmed/33930030 http://dx.doi.org/10.1371/journal.pone.0250327 Text en © 2021 Baljinnyam et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Baljinnyam, Tuvshintugs
Radnaa, Enkhtuya
Ouellette, Casey M.
Nelson, Christina
Niimi, Yosuke
Andersen, Clark R.
Popov, Vsevolod
Lee, Jae-Woo
Prough, Donald S.
Enkhbaatar, Perenlei
High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title_full High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title_fullStr High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title_full_unstemmed High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title_short High molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
title_sort high molecular weight sodium hyaluronate improves survival of syndecan-1-deficient septic mice by inhibiting neutrophil migration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087021/
https://www.ncbi.nlm.nih.gov/pubmed/33930030
http://dx.doi.org/10.1371/journal.pone.0250327
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