4.4 Article

Effects of red grape juice polyphenols in NADPH oxidase subunit expression in human neutrophils and mononuclear blood cells

期刊

BRITISH JOURNAL OF NUTRITION
卷 102, 期 8, 页码 1125-1135

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/S0007114509382148

关键词

Endothelial cells; Gene expression; Grapes; Leucocytes; NADPH oxidase; Polyphenols

资金

  1. Instituto Nacional de Investigacion y Tecnologia Agraria y Alimentaria [VIN03-027]
  2. Fondos FEDER, Ministerio de Educacion y Ciencia [AGL2004-07075, SAF2005-07308]
  3. Ministerio de Ciencia e Innovacion [SAF2008-01104]
  4. Instituto de Salud Carlos III, Spain

向作者/读者索取更多资源

The NADPH oxidase enzyme system is the main source of superoxide anions in phagocytic and vascular cells. NADPH oxidase-dependent superoxide generation has been found to be abnormally enhanced in several chronic diseases. Evidence is accumulating that polyphenols may have the potential to improve cardiovascular health, although the mechanism is not fully established. Consumption of concentrated red grape juice, rich in polyphenols, has been recently shown to reduce NADPH oxidase activity in circulating neutrophils from human Subjects. In the present work we studied whether red grape juice polyphenols affected NADPH oxidase subunit expression at the transcription level. For this, we used human neutrophils and mononuclear cells from peripheral blood, HL-60-derived neutrophils and the endothelial cell line EA.hy926.Superoxide production was measured with 2'7'-dichlorofluorescein diacetate or lucigenin, mRNA expression by real-time RT-PCR and protein expression by Western blot. Each experiment was performed at least three times. In all cell types tested, red grape juice, dealcoholised red wine and pure polyphenols decreased superoxide anion production. Red grape juice and dealcoholised red wine selectively reduced p47phox, p22phox and gp91phox expression at both mRNA and protein levels, without affecting the expression of p67phox. Pure polyphenols, particularly quercetin, also reduced NADPH oxidase subunit expression, especially p47phox, in all cell types tested. The present results showing that red grape juice polyphenols reduce superoxide anion production provide an alternative mechanism by which consumption of grape derivatives may account for a reduction of oxidative stress associated with cardiovascular and/or inflammatory diseases related to NADPH oxidase superoxide overproduction.

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