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Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells

AIM: In this study, to clarify the SMAD4 blocking impact on fibrosis process, we investigated its down-regulation by shRNA on activated human LX-2 cell, in vitro. BACKGROUND: Liver fibrosis is a critical consequence of chronic damage to the liver that can progress toward advanced diseases, liver cir...

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Autores principales: Khanizadeh, Sayyad, Ravanshad, Mehrdad, Hosseini, SeyedYounes, Davoodian, Parivash, Nejati Zadeh, Azim, Sarvari, Jamal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600516/
https://www.ncbi.nlm.nih.gov/pubmed/26468346
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author Khanizadeh, Sayyad
Ravanshad, Mehrdad
Hosseini, SeyedYounes
Davoodian, Parivash
Nejati Zadeh, Azim
Sarvari, Jamal
author_facet Khanizadeh, Sayyad
Ravanshad, Mehrdad
Hosseini, SeyedYounes
Davoodian, Parivash
Nejati Zadeh, Azim
Sarvari, Jamal
author_sort Khanizadeh, Sayyad
collection PubMed
description AIM: In this study, to clarify the SMAD4 blocking impact on fibrosis process, we investigated its down-regulation by shRNA on activated human LX-2 cell, in vitro. BACKGROUND: Liver fibrosis is a critical consequence of chronic damage to the liver that can progress toward advanced diseases, liver cirrhosis and hepatocellular carcinoma (HCC). Different SMAD proteins play as major mediators in the fibrogenesis activity of hepatic stellate cells through TGF-β pathways, but the extent of SMAD4 as a co-SMAD protein remained less clear. PATIENTS AND METHODS: vector expressing verified shRNA targeting human SMAD4 gene was transfected into LX-2 cells. The GFP expressing plasmid was transfected in the same manner as a control group while leptin treated cells were employed as positive controls. Subsequently, total RNA was extracted and real-time PCR was performed to measure the mRNA levels of SMAD4, COL-1A1, α-SMA, TGF-β and TIMP-1. Furthermore, trypan blue exclusion was performed to test the effect of plasmid transfection and SMAD4 shutting-down on cellular viability. RESULTS: The results indicated that the expression of SMAD4was down-regulated following shRNA transfection intoLX-2 cells (P<0.001). The gene expression analysis of fibrotic genes in LX-2 cells showed that SMAD4 blocking by shRNA significantly reduced the expression level of fibrotic genes when compared to control plasmids (P<0.001). Vector expressing SMAD4-shRNA induced no significant cytotoxic or proliferative effects on LX-2 cells as determined by viability assay (P<0.05). CONCLUSION: The results of this study suggested that knockdown of SMAD4 expression in stellate cell can control the progression of fibrogenesis through TGF-β pathway blocking.
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spelling pubmed-46005162015-10-14 Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells Khanizadeh, Sayyad Ravanshad, Mehrdad Hosseini, SeyedYounes Davoodian, Parivash Nejati Zadeh, Azim Sarvari, Jamal Gastroenterol Hepatol Bed Bench Original Article AIM: In this study, to clarify the SMAD4 blocking impact on fibrosis process, we investigated its down-regulation by shRNA on activated human LX-2 cell, in vitro. BACKGROUND: Liver fibrosis is a critical consequence of chronic damage to the liver that can progress toward advanced diseases, liver cirrhosis and hepatocellular carcinoma (HCC). Different SMAD proteins play as major mediators in the fibrogenesis activity of hepatic stellate cells through TGF-β pathways, but the extent of SMAD4 as a co-SMAD protein remained less clear. PATIENTS AND METHODS: vector expressing verified shRNA targeting human SMAD4 gene was transfected into LX-2 cells. The GFP expressing plasmid was transfected in the same manner as a control group while leptin treated cells were employed as positive controls. Subsequently, total RNA was extracted and real-time PCR was performed to measure the mRNA levels of SMAD4, COL-1A1, α-SMA, TGF-β and TIMP-1. Furthermore, trypan blue exclusion was performed to test the effect of plasmid transfection and SMAD4 shutting-down on cellular viability. RESULTS: The results indicated that the expression of SMAD4was down-regulated following shRNA transfection intoLX-2 cells (P<0.001). The gene expression analysis of fibrotic genes in LX-2 cells showed that SMAD4 blocking by shRNA significantly reduced the expression level of fibrotic genes when compared to control plasmids (P<0.001). Vector expressing SMAD4-shRNA induced no significant cytotoxic or proliferative effects on LX-2 cells as determined by viability assay (P<0.05). CONCLUSION: The results of this study suggested that knockdown of SMAD4 expression in stellate cell can control the progression of fibrogenesis through TGF-β pathway blocking. Shaheed Beheshti University of Medical Sciences 2015 /pmc/articles/PMC4600516/ /pubmed/26468346 Text en ©2015 RIGLD, Research Institute for Gastroenterology and Liver Diseases This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Khanizadeh, Sayyad
Ravanshad, Mehrdad
Hosseini, SeyedYounes
Davoodian, Parivash
Nejati Zadeh, Azim
Sarvari, Jamal
Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title_full Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title_fullStr Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title_full_unstemmed Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title_short Blocking of SMAD4 expression by shRNA effectively inhibits fibrogenesis of human hepatic stellate cells
title_sort blocking of smad4 expression by shrna effectively inhibits fibrogenesis of human hepatic stellate cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600516/
https://www.ncbi.nlm.nih.gov/pubmed/26468346
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