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Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases

Protease-antiprotease imbalance and oxidative stress are considered to be major pathophysiological hallmarks of severe obstructive lung diseases including chronic obstructive pulmonary disease (COPD) and cystic fibrosis (CF), but limited information is available on their direct roles in the regulati...

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Autores principales: Shuto, Tsuyoshi, Kamei, Shunsuke, Nohara, Hirofumi, Fujikawa, Haruka, Tasaki, Yukihiro, Sugahara, Takuya, Ono, Tomomi, Matsumoto, Chizuru, Sakaguchi, Yuki, Maruta, Kasumi, Nakashima, Ryunosuke, Kawakami, Taisei, Suico, Mary Ann, Kondo, Yoshitaka, Ishigami, Akihito, Takeo, Toru, Tanaka, Ken-ichiro, Watanabe, Hiroshi, Nakagata, Naomi, Uchimura, Kohei, Kitamura, Kenichiro, Li, Jian-Dong, Kai, Hirofumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159865/
https://www.ncbi.nlm.nih.gov/pubmed/27982104
http://dx.doi.org/10.1038/srep39305
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author Shuto, Tsuyoshi
Kamei, Shunsuke
Nohara, Hirofumi
Fujikawa, Haruka
Tasaki, Yukihiro
Sugahara, Takuya
Ono, Tomomi
Matsumoto, Chizuru
Sakaguchi, Yuki
Maruta, Kasumi
Nakashima, Ryunosuke
Kawakami, Taisei
Suico, Mary Ann
Kondo, Yoshitaka
Ishigami, Akihito
Takeo, Toru
Tanaka, Ken-ichiro
Watanabe, Hiroshi
Nakagata, Naomi
Uchimura, Kohei
Kitamura, Kenichiro
Li, Jian-Dong
Kai, Hirofumi
author_facet Shuto, Tsuyoshi
Kamei, Shunsuke
Nohara, Hirofumi
Fujikawa, Haruka
Tasaki, Yukihiro
Sugahara, Takuya
Ono, Tomomi
Matsumoto, Chizuru
Sakaguchi, Yuki
Maruta, Kasumi
Nakashima, Ryunosuke
Kawakami, Taisei
Suico, Mary Ann
Kondo, Yoshitaka
Ishigami, Akihito
Takeo, Toru
Tanaka, Ken-ichiro
Watanabe, Hiroshi
Nakagata, Naomi
Uchimura, Kohei
Kitamura, Kenichiro
Li, Jian-Dong
Kai, Hirofumi
author_sort Shuto, Tsuyoshi
collection PubMed
description Protease-antiprotease imbalance and oxidative stress are considered to be major pathophysiological hallmarks of severe obstructive lung diseases including chronic obstructive pulmonary disease (COPD) and cystic fibrosis (CF), but limited information is available on their direct roles in the regulation of pulmonary phenotypes. Here, we utilized βENaC-transgenic (Tg) mice, the previously established mouse model of severe obstructive lung diseases, to produce lower-mortality but pathophysiologically highly useful mouse model by backcrossing the original line with C57/BL6J mice. C57/BL6J-βENaC-Tg mice showed higher survival rates and key pulmonary abnormalities of COPD/CF, including mucous hypersecretion, inflammatory and emphysematous phenotypes and pulmonary dysfunction. DNA microarray analysis confirmed that protease- and oxidative stress-dependent pathways are activated in the lung tissue of C57/BL6J-βENaC-Tg mice. Treatments of C57/BL6J-βENaC-Tg mice with a serine protease inhibitor ONO-3403, a derivative of camostat methylate (CM), but not CM, and with an anti-oxidant N-acetylcystein significantly improved pulmonary emphysema and dysfunction. Moreover, depletion of a murine endogenous antioxidant vitamin C (VC), by genetic disruption of VC-synthesizing enzyme SMP30 in C57/BL6J-βENaC-Tg mice, exaggerated pulmonary phenotypes. Thus, these assessments clarified that protease-antiprotease imbalance and oxidative stress are critical pathways that exacerbate the pulmonary phenotypes of C57/BL6J-βENaC-Tg mice, consistent with the characteristics of human COPD/CF.
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spelling pubmed-51598652016-12-21 Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases Shuto, Tsuyoshi Kamei, Shunsuke Nohara, Hirofumi Fujikawa, Haruka Tasaki, Yukihiro Sugahara, Takuya Ono, Tomomi Matsumoto, Chizuru Sakaguchi, Yuki Maruta, Kasumi Nakashima, Ryunosuke Kawakami, Taisei Suico, Mary Ann Kondo, Yoshitaka Ishigami, Akihito Takeo, Toru Tanaka, Ken-ichiro Watanabe, Hiroshi Nakagata, Naomi Uchimura, Kohei Kitamura, Kenichiro Li, Jian-Dong Kai, Hirofumi Sci Rep Article Protease-antiprotease imbalance and oxidative stress are considered to be major pathophysiological hallmarks of severe obstructive lung diseases including chronic obstructive pulmonary disease (COPD) and cystic fibrosis (CF), but limited information is available on their direct roles in the regulation of pulmonary phenotypes. Here, we utilized βENaC-transgenic (Tg) mice, the previously established mouse model of severe obstructive lung diseases, to produce lower-mortality but pathophysiologically highly useful mouse model by backcrossing the original line with C57/BL6J mice. C57/BL6J-βENaC-Tg mice showed higher survival rates and key pulmonary abnormalities of COPD/CF, including mucous hypersecretion, inflammatory and emphysematous phenotypes and pulmonary dysfunction. DNA microarray analysis confirmed that protease- and oxidative stress-dependent pathways are activated in the lung tissue of C57/BL6J-βENaC-Tg mice. Treatments of C57/BL6J-βENaC-Tg mice with a serine protease inhibitor ONO-3403, a derivative of camostat methylate (CM), but not CM, and with an anti-oxidant N-acetylcystein significantly improved pulmonary emphysema and dysfunction. Moreover, depletion of a murine endogenous antioxidant vitamin C (VC), by genetic disruption of VC-synthesizing enzyme SMP30 in C57/BL6J-βENaC-Tg mice, exaggerated pulmonary phenotypes. Thus, these assessments clarified that protease-antiprotease imbalance and oxidative stress are critical pathways that exacerbate the pulmonary phenotypes of C57/BL6J-βENaC-Tg mice, consistent with the characteristics of human COPD/CF. Nature Publishing Group 2016-12-16 /pmc/articles/PMC5159865/ /pubmed/27982104 http://dx.doi.org/10.1038/srep39305 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Shuto, Tsuyoshi
Kamei, Shunsuke
Nohara, Hirofumi
Fujikawa, Haruka
Tasaki, Yukihiro
Sugahara, Takuya
Ono, Tomomi
Matsumoto, Chizuru
Sakaguchi, Yuki
Maruta, Kasumi
Nakashima, Ryunosuke
Kawakami, Taisei
Suico, Mary Ann
Kondo, Yoshitaka
Ishigami, Akihito
Takeo, Toru
Tanaka, Ken-ichiro
Watanabe, Hiroshi
Nakagata, Naomi
Uchimura, Kohei
Kitamura, Kenichiro
Li, Jian-Dong
Kai, Hirofumi
Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title_full Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title_fullStr Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title_full_unstemmed Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title_short Pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
title_sort pharmacological and genetic reappraisals of protease and oxidative stress pathways in a mouse model of obstructive lung diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159865/
https://www.ncbi.nlm.nih.gov/pubmed/27982104
http://dx.doi.org/10.1038/srep39305
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