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Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis

BACKGROUND: No effective treatment for acute lung injury and fibrosis currently exists. Aim of this study was to investigate the time-dependent effect of bone marrow-derived mesenchymal stem cells (BMDMSCs) on bleomycin (BLM)-induced acute lung injury and fibrosis and nitric oxide metabolites and in...

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Autores principales: Lee, Shin-Hwa, Jang, An-Soo, Kim, Young-Eun, Cha, Ji-Yeon, Kim, Tae-Hoon, Jung, Seok, Park, Seong-Kyu, Lee, You-Kyoung, Won, Jong-Ho, Kim, Yong-Hoon, Park, Choon-Sik
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2827393/
https://www.ncbi.nlm.nih.gov/pubmed/20137099
http://dx.doi.org/10.1186/1465-9921-11-16
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author Lee, Shin-Hwa
Jang, An-Soo
Kim, Young-Eun
Cha, Ji-Yeon
Kim, Tae-Hoon
Jung, Seok
Park, Seong-Kyu
Lee, You-Kyoung
Won, Jong-Ho
Kim, Yong-Hoon
Park, Choon-Sik
author_facet Lee, Shin-Hwa
Jang, An-Soo
Kim, Young-Eun
Cha, Ji-Yeon
Kim, Tae-Hoon
Jung, Seok
Park, Seong-Kyu
Lee, You-Kyoung
Won, Jong-Ho
Kim, Yong-Hoon
Park, Choon-Sik
author_sort Lee, Shin-Hwa
collection PubMed
description BACKGROUND: No effective treatment for acute lung injury and fibrosis currently exists. Aim of this study was to investigate the time-dependent effect of bone marrow-derived mesenchymal stem cells (BMDMSCs) on bleomycin (BLM)-induced acute lung injury and fibrosis and nitric oxide metabolites and inflammatory cytokine production. METHODS: BMDMSCs were transferred 4 days after BLM inhalation. Wet/dry ratio, bronchoalveolar lavage cell profiles, histologic changes and deposition of collagen were analyzed. RESULTS: Nitrite, nitrate and cytokines were measured weekly through day 28. At day 7, the wet/dry ratio, neutrophilic inflammation, and amount of collagen were elevated in BLM-treated rats compared to sham rats (p = 0.05-0.002). Levels nitrite, nitrate, IL-1β, IL-6, TNF-α, TGF-β and VEGF were also higher at day 7 (p < 0.05). Degree of lymphocyte and macrophage infiltration increased steadily over time. BMDMSC transfer significantly reduced the BLM-induced increase in wet/dry ratio, degree of neutrophilic infiltration, collagen deposition, and levels of the cytokines, nitrite, and nitrate to those in sham-treated rats (p < 0.05). Fluorescence in situ hybridization localized the engrafted cells to areas of lung injury. CONCLUSION: Systemic transfer of BMDMSCs effectively reduced the BLM-induced lung injury and fibrosis through the down-regulation of nitric oxide metabolites, and proinflammatory and angiogenic cytokines.
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spelling pubmed-28273932010-02-24 Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis Lee, Shin-Hwa Jang, An-Soo Kim, Young-Eun Cha, Ji-Yeon Kim, Tae-Hoon Jung, Seok Park, Seong-Kyu Lee, You-Kyoung Won, Jong-Ho Kim, Yong-Hoon Park, Choon-Sik Respir Res Research BACKGROUND: No effective treatment for acute lung injury and fibrosis currently exists. Aim of this study was to investigate the time-dependent effect of bone marrow-derived mesenchymal stem cells (BMDMSCs) on bleomycin (BLM)-induced acute lung injury and fibrosis and nitric oxide metabolites and inflammatory cytokine production. METHODS: BMDMSCs were transferred 4 days after BLM inhalation. Wet/dry ratio, bronchoalveolar lavage cell profiles, histologic changes and deposition of collagen were analyzed. RESULTS: Nitrite, nitrate and cytokines were measured weekly through day 28. At day 7, the wet/dry ratio, neutrophilic inflammation, and amount of collagen were elevated in BLM-treated rats compared to sham rats (p = 0.05-0.002). Levels nitrite, nitrate, IL-1β, IL-6, TNF-α, TGF-β and VEGF were also higher at day 7 (p < 0.05). Degree of lymphocyte and macrophage infiltration increased steadily over time. BMDMSC transfer significantly reduced the BLM-induced increase in wet/dry ratio, degree of neutrophilic infiltration, collagen deposition, and levels of the cytokines, nitrite, and nitrate to those in sham-treated rats (p < 0.05). Fluorescence in situ hybridization localized the engrafted cells to areas of lung injury. CONCLUSION: Systemic transfer of BMDMSCs effectively reduced the BLM-induced lung injury and fibrosis through the down-regulation of nitric oxide metabolites, and proinflammatory and angiogenic cytokines. BioMed Central 2010 2010-02-08 /pmc/articles/PMC2827393/ /pubmed/20137099 http://dx.doi.org/10.1186/1465-9921-11-16 Text en Copyright ©2010 Lee et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Lee, Shin-Hwa
Jang, An-Soo
Kim, Young-Eun
Cha, Ji-Yeon
Kim, Tae-Hoon
Jung, Seok
Park, Seong-Kyu
Lee, You-Kyoung
Won, Jong-Ho
Kim, Yong-Hoon
Park, Choon-Sik
Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title_full Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title_fullStr Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title_full_unstemmed Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title_short Modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
title_sort modulation of cytokine and nitric oxide by mesenchymal stem cell transfer in lung injury/fibrosis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2827393/
https://www.ncbi.nlm.nih.gov/pubmed/20137099
http://dx.doi.org/10.1186/1465-9921-11-16
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