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PMID: 9525474 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Increase of reactive oxygen species (ROS) in endothelial cells by shear flow and involvement of ROS in shear-induced c-fos expression.

Journal of cellular physiology ·Vol. 175 ·No. 2 ·1998-05-00 ·Pages 156-62

Hsieh HJ, Cheng CC, Wu ST, Chiu JJ, Wung BS, Wang DL

Abstract

Intracellular reactive oxygen species (ROS) may participate in cellular responses to various stimuli including hemodynamic forces and act as signal transduction messengers. Human umbilical vein endothelial cells (ECs) were subjected to laminar shear flow with shear stress of 15, 25, or 40 dynes/cm2 in a parallel plate flow chamber to demonstrate the potential role of ROS in shear-induced cellular response. The use of 2',7'-dichlorofluorescin diacetate (DCFH-DA) to measure ROS levels in ECs indicated that shear flow for 15 minutes resulted in a 0.5- to 1.5-fold increase in intracellular ROS. The levels remained elevated under shear flow conditions for 2 hours when compared to unsheared controls. The shear-induced elevation of ROS was blocked by either antioxidant N-acetyl-cysteine (NAC) or catalase. An iron chelator, deferoxamine mesylate, also significantly reduced the ROS elevation. A similar inhibitory effect was seen with a hydroxyl radical (.OH) scavenger, 1,3-dimethyl-2-thiourea (DMTU), suggesting that hydrogen peroxide (H202), .OH, and possibly other ROS molecules in ECs were modulated by shear flow. Concomitantly, a 1.3-fold increase of decomposition of exogenously added H2O2 was observed in extracts from ECs sheared for 60 minutes. This antioxidant activity, abolished by a catalase inhibitor (3-amino-1,2,4-triazole), was primarily due to the catalase. The effect of ROS on intracellular events was examined in c-fos gene expression which was previously shown to be shear inducible. Decreasing ROS levels by antioxidant (NAC or catalase) significantly reduced the induction of c-fos expression in sheared ECs. We demonstrate for the first time that shear force can modulate intracellular ROS levels and antioxidant activity in ECs. Furthermore, the ROS generation is involved in mediating shear-induced c-fos expression. Our study illustrates the importance of ROS in the response and adaptation of ECs to shear flow.

MeSH Terms
Acetylcysteine/metabolism Amitrole/pharmacology Antioxidants/metabolism Catalase/metabolism Chelating Agents/pharmacology Deferoxamine/pharmacology Endothelium, Vascular/physiology Fluoresceins/metabolism Free Radical Scavengers/pharmacology Gene Expression Regulation/genetics Genes, fos/genetics Hemodynamics/physiology Humans Hydrogen Peroxide/metabolism RNA/analysis Reactive Oxygen Species/metabolism Thiourea/analogs & derivatives,pharmacology Umbilical Cord
Chemicals
Antioxidants Chelating Agents Fluoresceins Free Radical Scavengers Reactive Oxygen Species diacetyldichlorofluorescein RNA 1,3-dimethylthiourea Hydrogen Peroxide Catalase Thiourea Deferoxamine Acetylcysteine Amitrole
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hsieh H J
Department of Chemical Engineering, National Taiwan University, Taipei, Republic of China.
Cheng C C
Wu S T
Chiu J J
Wung B S
Wang D L
Article Info
Journal
Journal of cellular physiology
Abbr.
J Cell Physiol
ISSN
0021-9541
Published
1998-05-00
Pages
156-62
Language
English
Region
United States
NLM ID
0050222
Subset
IM
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