Cargando…

Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation

Current anti-fibrotic effect of antioxidants in vivo is disappointing due probably to the fact that once liver fibrogenesis is established it is too advanced to be reversed by anti-oxidation mechanism. We consider antioxidant may only act on the early phase of fibrogenesis. Thus, we had previously e...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Kun-Lin, Chang, Wen-Teng, Hong, Ming-Yuan, Hung, Kuo-Chen, Chuang, Chia-Chang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383026/
https://www.ncbi.nlm.nih.gov/pubmed/28384213
http://dx.doi.org/10.1371/journal.pone.0174008
_version_ 1782520206042595328
author Yang, Kun-Lin
Chang, Wen-Teng
Hong, Ming-Yuan
Hung, Kuo-Chen
Chuang, Chia-Chang
author_facet Yang, Kun-Lin
Chang, Wen-Teng
Hong, Ming-Yuan
Hung, Kuo-Chen
Chuang, Chia-Chang
author_sort Yang, Kun-Lin
collection PubMed
description Current anti-fibrotic effect of antioxidants in vivo is disappointing due probably to the fact that once liver fibrogenesis is established it is too advanced to be reversed by anti-oxidation mechanism. We consider antioxidant may only act on the early phase of fibrogenesis. Thus, we had previously established an early liver fibrosis animal model using an inducible expression vector (pPK9a), which contains TGF-β gene and was hydro-dynamically transferred into mice to induce a transient liver fibrosis. TGF-β1 has been well documented to up-regulate the expression of α2(1) collagen (Col 1A2) gene in the liver via the reactive oxygen species (ROS); the process triggers inflammation, leading to hepatic stellate cells (HSC) activation and liver fibrogenesis. Using our animal model and ROS, cyclooxygenase-2 (Cox-2) and Col 1A2 promoter assays as screening targets, we report here that a maleic acid derivative isolated from the Antrodia camphorata mycelium strongly decreases ROS production, promoter activity of Cox-2 and Col 1A2, intracellular calcium, expression of alpha-smooth muscle actin (α-SMA), Smad4-p-Smad2/3 co-localization in cell nucleus and the DNA binding activity of Sp1. Our results suggest that the maleic acid derivative prevents liver fibrosis at an early phase both in vitro and in vivo through the inhibition of ROS, inflammation and the activation of HSC.
format Online
Article
Text
id pubmed-5383026
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-53830262017-05-03 Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation Yang, Kun-Lin Chang, Wen-Teng Hong, Ming-Yuan Hung, Kuo-Chen Chuang, Chia-Chang PLoS One Research Article Current anti-fibrotic effect of antioxidants in vivo is disappointing due probably to the fact that once liver fibrogenesis is established it is too advanced to be reversed by anti-oxidation mechanism. We consider antioxidant may only act on the early phase of fibrogenesis. Thus, we had previously established an early liver fibrosis animal model using an inducible expression vector (pPK9a), which contains TGF-β gene and was hydro-dynamically transferred into mice to induce a transient liver fibrosis. TGF-β1 has been well documented to up-regulate the expression of α2(1) collagen (Col 1A2) gene in the liver via the reactive oxygen species (ROS); the process triggers inflammation, leading to hepatic stellate cells (HSC) activation and liver fibrogenesis. Using our animal model and ROS, cyclooxygenase-2 (Cox-2) and Col 1A2 promoter assays as screening targets, we report here that a maleic acid derivative isolated from the Antrodia camphorata mycelium strongly decreases ROS production, promoter activity of Cox-2 and Col 1A2, intracellular calcium, expression of alpha-smooth muscle actin (α-SMA), Smad4-p-Smad2/3 co-localization in cell nucleus and the DNA binding activity of Sp1. Our results suggest that the maleic acid derivative prevents liver fibrosis at an early phase both in vitro and in vivo through the inhibition of ROS, inflammation and the activation of HSC. Public Library of Science 2017-04-06 /pmc/articles/PMC5383026/ /pubmed/28384213 http://dx.doi.org/10.1371/journal.pone.0174008 Text en © 2017 Yang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yang, Kun-Lin
Chang, Wen-Teng
Hong, Ming-Yuan
Hung, Kuo-Chen
Chuang, Chia-Chang
Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title_full Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title_fullStr Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title_full_unstemmed Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title_short Prevention of TGF-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ROS, inflammation and hepatic stellate cells activation
title_sort prevention of tgf-β-induced early liver fibrosis by a maleic acid derivative anti-oxidant through suppression of ros, inflammation and hepatic stellate cells activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383026/
https://www.ncbi.nlm.nih.gov/pubmed/28384213
http://dx.doi.org/10.1371/journal.pone.0174008
work_keys_str_mv AT yangkunlin preventionoftgfbinducedearlyliverfibrosisbyamaleicacidderivativeantioxidantthroughsuppressionofrosinflammationandhepaticstellatecellsactivation
AT changwenteng preventionoftgfbinducedearlyliverfibrosisbyamaleicacidderivativeantioxidantthroughsuppressionofrosinflammationandhepaticstellatecellsactivation
AT hongmingyuan preventionoftgfbinducedearlyliverfibrosisbyamaleicacidderivativeantioxidantthroughsuppressionofrosinflammationandhepaticstellatecellsactivation
AT hungkuochen preventionoftgfbinducedearlyliverfibrosisbyamaleicacidderivativeantioxidantthroughsuppressionofrosinflammationandhepaticstellatecellsactivation
AT chuangchiachang preventionoftgfbinducedearlyliverfibrosisbyamaleicacidderivativeantioxidantthroughsuppressionofrosinflammationandhepaticstellatecellsactivation