Oxidative stress regulates collagen synthesis and matrix metalloproteinase activity in cardiac fibroblasts

被引:519
作者
Siwik, DA
Pagano, PJ
Colucci, WS
机构
[1] Boston Univ, Med Ctr, Div Cardiovasc, Boston, MA 02118 USA
[2] Boston Univ, Sch Med, Whitaker Cardiovasc Inst, Myocardial Biol Unit, Boston, MA 02118 USA
[3] Henry Ford Hosp, Div Hypertens & Vasc Res, Detroit, MI 48202 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY | 2001年 / 280卷 / 01期
关键词
reactive oxygen species; H2O2; superoxide; superoxide dismutase; glucose-6-phosphate dehydrogenase; in vitro;
D O I
10.1152/ajpcell.2001.280.1.C53
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Oxidative stress has been implicated in the pathophysiology of myocardial failure. We tested the hypothesis that oxidative stress can regulate extracellular matrix in cardiac fibroblasts. Neonatal and adult rat cardiac fibroblasts in vitro were exposed to H2O2 (0.05-5 muM) or the superoxide-generating system xanthine (500 muM) plus xanthine oxidase (0.001-0.1 mU/ml) (XXO) for 24 h. In-gel zymography demonstrated that H2O2 and XXO each increased gelatinase activity corresponding to matrix metalloproteinases (MMP) MMP-13, MMP-2, and MMP-9. H2O2 and XXO decreased collagen synthesis (collagenase-sensitive [H-3] proline incorporation) without affecting total protein synthesis ([H-3] leucine incorporation). H2O2 and XXO decreased the expression of procollagen alpha (1)(I), alpha (2)(I), and alpha (1)(III) mRNA but increased the expression of fibronectin mRNA, suggesting a selective transcriptional effect on collagen synthesis. H2O2, but not XXO, also decreased the expression of nonfibrillar procollagen alpha (1)(IV) and alpha (2)(IV) mRNA. To determine the role of endogenous antioxidant systems, cells were treated with the superoxide dismutase (SOD) inhibitor diethyldithiocarbamic acid (DDC, 100 muM) to increase intracellular superoxide or with the glucose-6-phosphate dehydrogenase inhibitor dehydroisoandrosterone 3-acetate (DHEA; 10 muM) to increase intracellular H2O2. DDC and DHEA decreased collagen synthesis and increased MMP activity, and both effects were inhibited by an SOD/catalase mimetic. Thus increased oxidative stress activates MMPs and decreases fibrillar collagen synthesis in cardiac fibroblasts. Oxidative stress may play a role in the pathogenesis of myocardial remodeling by regulating the quantity and quality of extracellular matrix.
引用
收藏
页码:C53 / C60
页数:8
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