Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard

Introduction: The airway epithelium as a physiological barrier defend airway against environmental hazards in lung disease such as Chronic Obstructive Pulmonary Disease (COPD). This defense seems to be regulated via alteration of inflammatory genes and Reactive oxygen species (ROS) have an important...

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Main Authors: S. Yazdani, M.H. Karimfar, A.A. Imani Fooladi, M.R. Nourani
Format: Article
Language:fas
Published: Afarand Scholarly Publishing Institute 2011-03-01
Series:طب جانباز
Subjects:
ros
Online Access:http://ijwph.ir/article-1-96-en.html
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spelling doaj-2eb8a3ad73024ab7944fdd9bf15f7c642021-07-20T15:02:53ZfasAfarand Scholarly Publishing Instituteطب جانباز2008-26222008-26302011-03-01324652Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur MustardS. Yazdani0M.H. Karimfar1A.A. Imani Fooladi2M.R. Nourani3 Baqiyatallah Medical Sciences University Ilam medical sciences Unuv. & Zabol Medical sciences Univ. Baqiyatallah Medical Sciences University Baqiyatallah Medical Sciences University Introduction: The airway epithelium as a physiological barrier defend airway against environmental hazards in lung disease such as Chronic Obstructive Pulmonary Disease (COPD). This defense seems to be regulated via alteration of inflammatory genes and Reactive oxygen species (ROS) have an important role in expression of inflammatory proteins. ROS promote the upregulation of cytokines and inflammatory proteins via activation of transcription factors such as Activated Protein 1 (AP-1). Sulfur Mustard (SM) is one of the hazardous agents which cause increase of ROS. In this study we will highlight the role of AP-1 in activation of cytokines and inflammatory molecules following the increase of ROS after exposure to SM in airway wall and for this purpose we chose C-fos which is the most common monodimer of AP-1. Materials and Methods: Ten control individuals and twenty SM exposed patients were considered. RT-PCR and Real-time PCR measured the quantity of C-fos mRNA in control and SM exposed specimens. Results: Although this research showed 2.89 fold changes in expression levels of C-fos in SM exposed patients in compare to normal group, our result was not statistically remarkable (P> 0.05). Discussion: Our evidence suggested that the induction of C-fos is may be because of increase of ROS after exposure to SM and having no statistically remarkable result is might refer to depletion of antioxidants.http://ijwph.ir/article-1-96-en.htmlbronchial wallsulfur mustardap-1rosc-fos
collection DOAJ
language fas
format Article
sources DOAJ
author S. Yazdani
M.H. Karimfar
A.A. Imani Fooladi
M.R. Nourani
spellingShingle S. Yazdani
M.H. Karimfar
A.A. Imani Fooladi
M.R. Nourani
Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
طب جانباز
bronchial wall
sulfur mustard
ap-1
ros
c-fos
author_facet S. Yazdani
M.H. Karimfar
A.A. Imani Fooladi
M.R. Nourani
author_sort S. Yazdani
title Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
title_short Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
title_full Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
title_fullStr Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
title_full_unstemmed Genomic analysis of C-fos in Airway Wall of COPD Patients at mRNA level via increase of Reactive Oxygen Species after Countering to Sulfur Mustard
title_sort genomic analysis of c-fos in airway wall of copd patients at mrna level via increase of reactive oxygen species after countering to sulfur mustard
publisher Afarand Scholarly Publishing Institute
series طب جانباز
issn 2008-2622
2008-2630
publishDate 2011-03-01
description Introduction: The airway epithelium as a physiological barrier defend airway against environmental hazards in lung disease such as Chronic Obstructive Pulmonary Disease (COPD). This defense seems to be regulated via alteration of inflammatory genes and Reactive oxygen species (ROS) have an important role in expression of inflammatory proteins. ROS promote the upregulation of cytokines and inflammatory proteins via activation of transcription factors such as Activated Protein 1 (AP-1). Sulfur Mustard (SM) is one of the hazardous agents which cause increase of ROS. In this study we will highlight the role of AP-1 in activation of cytokines and inflammatory molecules following the increase of ROS after exposure to SM in airway wall and for this purpose we chose C-fos which is the most common monodimer of AP-1. Materials and Methods: Ten control individuals and twenty SM exposed patients were considered. RT-PCR and Real-time PCR measured the quantity of C-fos mRNA in control and SM exposed specimens. Results: Although this research showed 2.89 fold changes in expression levels of C-fos in SM exposed patients in compare to normal group, our result was not statistically remarkable (P> 0.05). Discussion: Our evidence suggested that the induction of C-fos is may be because of increase of ROS after exposure to SM and having no statistically remarkable result is might refer to depletion of antioxidants.
topic bronchial wall
sulfur mustard
ap-1
ros
c-fos
url http://ijwph.ir/article-1-96-en.html
work_keys_str_mv AT syazdani genomicanalysisofcfosinairwaywallofcopdpatientsatmrnalevelviaincreaseofreactiveoxygenspeciesaftercounteringtosulfurmustard
AT mhkarimfar genomicanalysisofcfosinairwaywallofcopdpatientsatmrnalevelviaincreaseofreactiveoxygenspeciesaftercounteringtosulfurmustard
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