Cargando…

A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice

The aim of this study was to investigate whether a dual endothelin receptor antagonist bosentan modulates the kinetics of bone marrow-derived stem cells in inhibiting the development of pulmonary hypertension. Bone marrow chimeric mice, transplanted with enhanced green fluorescent protein (eGFP)-pos...

Descripción completa

Detalles Bibliográficos
Autores principales: Kato, Taichi, Mitani, Yoshihide, Masuya, Masahiro, Maruyama, Junko, Sawada, Hirofumi, Ohashi, Hiroyuki, Ikeyama, Yukiko, Otsuki, Shoichiro, Yodoya, Noriko, Shinohara, Tsutomu, Miyata, Eri, Zhang, Erquan, Katayama, Naoyuki, Shimpo, Hideto, Maruyama, Kazuo, Komada, Yoshihiro, Hirayama, Masahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238854/
https://www.ncbi.nlm.nih.gov/pubmed/32489640
http://dx.doi.org/10.1177/2045894020919355
_version_ 1783536613354110976
author Kato, Taichi
Mitani, Yoshihide
Masuya, Masahiro
Maruyama, Junko
Sawada, Hirofumi
Ohashi, Hiroyuki
Ikeyama, Yukiko
Otsuki, Shoichiro
Yodoya, Noriko
Shinohara, Tsutomu
Miyata, Eri
Zhang, Erquan
Katayama, Naoyuki
Shimpo, Hideto
Maruyama, Kazuo
Komada, Yoshihiro
Hirayama, Masahiro
author_facet Kato, Taichi
Mitani, Yoshihide
Masuya, Masahiro
Maruyama, Junko
Sawada, Hirofumi
Ohashi, Hiroyuki
Ikeyama, Yukiko
Otsuki, Shoichiro
Yodoya, Noriko
Shinohara, Tsutomu
Miyata, Eri
Zhang, Erquan
Katayama, Naoyuki
Shimpo, Hideto
Maruyama, Kazuo
Komada, Yoshihiro
Hirayama, Masahiro
author_sort Kato, Taichi
collection PubMed
description The aim of this study was to investigate whether a dual endothelin receptor antagonist bosentan modulates the kinetics of bone marrow-derived stem cells in inhibiting the development of pulmonary hypertension. Bone marrow chimeric mice, transplanted with enhanced green fluorescent protein (eGFP)-positive bone marrow mononuclear cells, were exposed to hypobaric hypoxia or kept in the ambient air, and were daily treated with bosentan sodium salt or saline for 21 days. After the treatment period, right ventricular pressure was measured and pulmonary vascular morphometry was conducted. Incorporation of bone marrow-derived cells was analyzed by immunohistochemistry. Gene expression and protein level in the lung tissue were evaluated by quantitative real-time PCR and western blotting, respectively. The results showed that, in hypoxic mice, right ventricular pressure and the percentage of muscularized vessel were increased and pulmonary vascular density was decreased, each of which was reversed by bosentan. Bone marrow-derived endothelial cells and macrophages in lungs were increased by hypoxia. Bosentan promoted bone marrow-derived endothelial cell incorporation but inhibited macrophage infiltration into lungs. Quantitative real-time PCR analysis revealed that interleukin 6, stromal cell-derived factor-1, and monocyte chemoattractant protein-1 were upregulated by hypoxia, in which interleukin 6 and monocyte chemoattractant protein-1 were downregulated and stromal cell-derived factor-1 was upregulated by bosentan. Protein level of endothelial nitric oxide synthase (eNOS) in the whole lung was significantly upregulated by hypoxia, which was further upregulated by bosentan. Bosentan modulated kinetics of bone marrow-derived ECs and macrophages and related gene expression in lungs in ameliorating pulmonary hypertension in mice. Altered kinetics of bone marrow-derived stem cells may be a novel mechanism of the endothelin receptor blockade in vivo and confer a new understanding of the therapeutic basis for pulmonary hypertension.
format Online
Article
Text
id pubmed-7238854
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher SAGE Publications
record_format MEDLINE/PubMed
spelling pubmed-72388542020-06-01 A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice Kato, Taichi Mitani, Yoshihide Masuya, Masahiro Maruyama, Junko Sawada, Hirofumi Ohashi, Hiroyuki Ikeyama, Yukiko Otsuki, Shoichiro Yodoya, Noriko Shinohara, Tsutomu Miyata, Eri Zhang, Erquan Katayama, Naoyuki Shimpo, Hideto Maruyama, Kazuo Komada, Yoshihiro Hirayama, Masahiro Pulm Circ Research Article The aim of this study was to investigate whether a dual endothelin receptor antagonist bosentan modulates the kinetics of bone marrow-derived stem cells in inhibiting the development of pulmonary hypertension. Bone marrow chimeric mice, transplanted with enhanced green fluorescent protein (eGFP)-positive bone marrow mononuclear cells, were exposed to hypobaric hypoxia or kept in the ambient air, and were daily treated with bosentan sodium salt or saline for 21 days. After the treatment period, right ventricular pressure was measured and pulmonary vascular morphometry was conducted. Incorporation of bone marrow-derived cells was analyzed by immunohistochemistry. Gene expression and protein level in the lung tissue were evaluated by quantitative real-time PCR and western blotting, respectively. The results showed that, in hypoxic mice, right ventricular pressure and the percentage of muscularized vessel were increased and pulmonary vascular density was decreased, each of which was reversed by bosentan. Bone marrow-derived endothelial cells and macrophages in lungs were increased by hypoxia. Bosentan promoted bone marrow-derived endothelial cell incorporation but inhibited macrophage infiltration into lungs. Quantitative real-time PCR analysis revealed that interleukin 6, stromal cell-derived factor-1, and monocyte chemoattractant protein-1 were upregulated by hypoxia, in which interleukin 6 and monocyte chemoattractant protein-1 were downregulated and stromal cell-derived factor-1 was upregulated by bosentan. Protein level of endothelial nitric oxide synthase (eNOS) in the whole lung was significantly upregulated by hypoxia, which was further upregulated by bosentan. Bosentan modulated kinetics of bone marrow-derived ECs and macrophages and related gene expression in lungs in ameliorating pulmonary hypertension in mice. Altered kinetics of bone marrow-derived stem cells may be a novel mechanism of the endothelin receptor blockade in vivo and confer a new understanding of the therapeutic basis for pulmonary hypertension. SAGE Publications 2020-05-14 /pmc/articles/PMC7238854/ /pubmed/32489640 http://dx.doi.org/10.1177/2045894020919355 Text en © The Author(s) 2020 https://creativecommons.org/licenses/by-nc/4.0/ Creative Commons Non Commercial CC BY-NC: This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Research Article
Kato, Taichi
Mitani, Yoshihide
Masuya, Masahiro
Maruyama, Junko
Sawada, Hirofumi
Ohashi, Hiroyuki
Ikeyama, Yukiko
Otsuki, Shoichiro
Yodoya, Noriko
Shinohara, Tsutomu
Miyata, Eri
Zhang, Erquan
Katayama, Naoyuki
Shimpo, Hideto
Maruyama, Kazuo
Komada, Yoshihiro
Hirayama, Masahiro
A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title_full A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title_fullStr A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title_full_unstemmed A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title_short A non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
title_sort non-selective endothelin receptor antagonist bosentan modulates kinetics of bone marrow-derived cells in ameliorating pulmonary hypertension in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238854/
https://www.ncbi.nlm.nih.gov/pubmed/32489640
http://dx.doi.org/10.1177/2045894020919355
work_keys_str_mv AT katotaichi anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT mitaniyoshihide anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT masuyamasahiro anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT maruyamajunko anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT sawadahirofumi anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT ohashihiroyuki anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT ikeyamayukiko anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT otsukishoichiro anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT yodoyanoriko anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT shinoharatsutomu anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT miyataeri anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT zhangerquan anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT katayamanaoyuki anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT shimpohideto anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT maruyamakazuo anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT komadayoshihiro anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT hirayamamasahiro anonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT katotaichi nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT mitaniyoshihide nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT masuyamasahiro nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT maruyamajunko nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT sawadahirofumi nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT ohashihiroyuki nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT ikeyamayukiko nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT otsukishoichiro nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT yodoyanoriko nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT shinoharatsutomu nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT miyataeri nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT zhangerquan nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT katayamanaoyuki nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT shimpohideto nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT maruyamakazuo nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT komadayoshihiro nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice
AT hirayamamasahiro nonselectiveendothelinreceptorantagonistbosentanmodulateskineticsofbonemarrowderivedcellsinamelioratingpulmonaryhypertensioninmice