Synthetic hydrogel nanoparticles for sepsis therapy
Sepsis caused by the release of inflammatory mediators into the blood is a life threatening disease. Here, the authors report on the development of hydrogel nanoparticles for the capture and neutralisation of histones, major inflammatory mediators, and demonstrate sepsis treatment in a murine model.
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2021-09-01
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Series: | Nature Communications |
Online Access: | https://doi.org/10.1038/s41467-021-25847-2 |
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doaj-eb612ef6ea67468793984170be09b6f22021-09-26T11:44:52ZengNature Publishing GroupNature Communications2041-17232021-09-0112111410.1038/s41467-021-25847-2Synthetic hydrogel nanoparticles for sepsis therapyHiroyuki Koide0Anna Okishima1Yu Hoshino2Yuri Kamon3Keiichi Yoshimatsu4Kazuhiro Saito5Ikumi Yamauchi6Saki Ariizumi7Yuqi Zhou8Ting-Hui Xiao9Keisuke Goda10Naoto Oku11Tomohiro Asai12Kenneth J. Shea13Department of Medical Biochemistry, University of ShizuokaDepartment of Medical Biochemistry, University of ShizuokaDepartment of Chemical Engineering, Kyushu UniversityDepartment of Chemistry, University of California IrvineDepartment of Chemistry, University of California IrvineDepartment of Medical Biochemistry, University of ShizuokaDepartment of Medical Biochemistry, University of ShizuokaDepartment of Medical Biochemistry, University of ShizuokaDepartment of Chemistry, The University of TokyoDepartment of Chemistry, The University of TokyoDepartment of Chemistry, The University of TokyoDepartment of Medical Biochemistry, University of ShizuokaDepartment of Medical Biochemistry, University of ShizuokaDepartment of Chemistry, University of California IrvineSepsis caused by the release of inflammatory mediators into the blood is a life threatening disease. Here, the authors report on the development of hydrogel nanoparticles for the capture and neutralisation of histones, major inflammatory mediators, and demonstrate sepsis treatment in a murine model.https://doi.org/10.1038/s41467-021-25847-2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hiroyuki Koide Anna Okishima Yu Hoshino Yuri Kamon Keiichi Yoshimatsu Kazuhiro Saito Ikumi Yamauchi Saki Ariizumi Yuqi Zhou Ting-Hui Xiao Keisuke Goda Naoto Oku Tomohiro Asai Kenneth J. Shea |
spellingShingle |
Hiroyuki Koide Anna Okishima Yu Hoshino Yuri Kamon Keiichi Yoshimatsu Kazuhiro Saito Ikumi Yamauchi Saki Ariizumi Yuqi Zhou Ting-Hui Xiao Keisuke Goda Naoto Oku Tomohiro Asai Kenneth J. Shea Synthetic hydrogel nanoparticles for sepsis therapy Nature Communications |
author_facet |
Hiroyuki Koide Anna Okishima Yu Hoshino Yuri Kamon Keiichi Yoshimatsu Kazuhiro Saito Ikumi Yamauchi Saki Ariizumi Yuqi Zhou Ting-Hui Xiao Keisuke Goda Naoto Oku Tomohiro Asai Kenneth J. Shea |
author_sort |
Hiroyuki Koide |
title |
Synthetic hydrogel nanoparticles for sepsis therapy |
title_short |
Synthetic hydrogel nanoparticles for sepsis therapy |
title_full |
Synthetic hydrogel nanoparticles for sepsis therapy |
title_fullStr |
Synthetic hydrogel nanoparticles for sepsis therapy |
title_full_unstemmed |
Synthetic hydrogel nanoparticles for sepsis therapy |
title_sort |
synthetic hydrogel nanoparticles for sepsis therapy |
publisher |
Nature Publishing Group |
series |
Nature Communications |
issn |
2041-1723 |
publishDate |
2021-09-01 |
description |
Sepsis caused by the release of inflammatory mediators into the blood is a life threatening disease. Here, the authors report on the development of hydrogel nanoparticles for the capture and neutralisation of histones, major inflammatory mediators, and demonstrate sepsis treatment in a murine model. |
url |
https://doi.org/10.1038/s41467-021-25847-2 |
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