Curcumin modulates hemeoxygenase‐1, eNOS, and endothelial cell cycle progression

Abstract

Curcumin (CMN), a component of turmeric spice that imparts flavor and color to curry, is a known anti‐inflammatory and angiogenesis‐suppressing bioactive agent. Here, we provide the first evidence that CMN inhibits proliferation of endothelial cells, while modulating hemeoxygenase‐1 (HO‐1) and eNOS protein expression. Exposure of non‐confluent bovine aortic endothelial (BAE) cells to CMN, at concentrations as low as 2 μM, resulted in suppressed proliferation, upregulated HO‐1, and downregulated eNOS within 24 h. In confluent cells, HO‐1 protein was similarly upregulated, while eNOS expression was unaffected by CMN. Concentrations of CMN in excess of 5 μM triggered G2/M cell cycle block in non‐confluent BAE cells, while 15 μM CMN clearly disrupted microtubule polymerization. Taken together, these findings indicate differential effects of CMN in cycling vs. noncycling endothelial cells, with potential dose‐dependent implications for wound healing related to endothelial tissue growth and repair. (Supported by USAMRMC)

Document Details

Document Type
Pub Defense Publication
Publication Date
Apr 01, 2010
Source ID
10.1096/fasebj.24.1_supplement.541.9

Entities

People

  • Andrew J Young
  • Keith W. Singletary
  • Laura L. Murphy
  • Richard C. Venema
  • Steven J. T. Jackson

Organizations

  • Medical College of Georgia
  • Southern Illinois University
  • United States Army Medical Research and Development Command
  • United States Army Research Institute of Environmental Medicine
  • University of Illinois Urbana–Champaign

Tags

Fields of Study

  • Biology
  • Chemistry

Readers

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