Curcumin inhibits collagen synthesis and hepatic stellate cell activation in-vivo and in-vitro

Author:

Kang Hee-Chul1,Nan Ji-Xing12,Park Pil-Hoon1,Kim Ji-Young1,Lee Sung Hee1,Woo Sun Wook1,Zhao Yu-Zhe1,Park Eun-Jeon1,Sohn Dong Hwan1

Affiliation:

1. Department of Pharmacy, Medicinal Resources Research Center, Wonkwang University, Iksan, Jeonbuk 570-749, South Korea

2. College of Pharmacy, Yanbian University, Yanjim, Jilin, 133000, People's Republic of China

Abstract

Abstract We previously demonstrated that curcumin, a well-known antioxidant, inhibits collagen deposition in carbon tetrachloride-induced liver injury in rats. The major effector cells responsible for collagen synthesis in the liver are activated hepatic stellate cells. In this study, we investigated the inhibitory effects of curcumin on the collagen synthesis and activation of rat hepatic stellate cells in-vitro, and on hepatic stellate cell activation in-vivo. The effects of curcumin on the production of collagen and smooth muscle α-actin proteins and of α1(I) collagen mRNA were studied in-vivo and in-vitro. The effect of curcumin on DNA synthesis was also determined in-vitro. In-vivo, treatment with curcumin reduced collagen deposition and smooth muscle α-actin-positive areas and lowered mRNA levels of type I collagen in the liver. In-vitro, curcumin at a concentration of 5 μg mL−1 reduced DNA synthesis, and downregulated smooth muscle α-actin and type I collagen expression, and α1(I) collagen mRNA expression. We concluded that curcumin inhibits collagen synthesis and hepatic stellate cell activation in-vivo and in-vitro, and thus may prove a valuable anti-fibrogenic agent.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

Reference23 articles.

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