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Grape antioxidant dietary fibre reduced apoptosis and induced a pro-reducing shift in the glutathione redox state of the rat proximal colonic mucosa

Published online by Cambridge University Press:  24 November 2009

María Elvira López-Oliva*
Affiliation:
Sección Departamental de Fisiología, Facultad de Farmacia, Universidad Complutense de Madrid, 28040Madrid, Spain
Angel Agis-Torres
Affiliation:
Sección Departamental de Fisiología, Facultad de Farmacia, Universidad Complutense de Madrid, 28040Madrid, Spain
Isabel Goñi
Affiliation:
Departamento de Nutrición, Facultad de Farmacia, Universidad Complutense de Madrid, 28040Madrid, Spain
Emilia Muñoz-Martínez
Affiliation:
Sección Departamental de Fisiología, Facultad de Farmacia, Universidad Complutense de Madrid, 28040Madrid, Spain
*
*Corresponding author: Dr María Elvira López-Oliva, fax +34 91 394 1838, email elopez@farm.ucm.es
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Abstract

Grape antioxidant dietary fibre (GADF) is a grape product rich in dietary fibre and natural antioxidants. We showed previously that the GADF intake induced an epithelial hypoplasia in the rat colonic mucosa. In the present study, we propose that the antioxidant effect of GADF could modulate mucosal apoptosis via modulation of the cellular redox environment. Male Wistar rats (n 20) were fed with diets containing either cellulose (control diet group) or GADF (GADF diet group) as fibre for 4 weeks. The GSH:GSSG ratio, the redox state of the GSSG/2GSH couple (Ehc), the mitochondrial and/or cytosolic antioxidant enzyme activities (superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx)), lipid peroxidation (LPO) and apoptosis were evaluated. GADF enhanced the cytosolic GSH:GSSG ratio, shifting the redox potential (Ehc) to a more pro-reducing status. Decreased Cu,ZnSOD:CAT, Cu,ZnSOD:GPx and MnSOD:GPx ratios could indicate an enhanced capacity for reducing H2O2, contributing to decreased cytosolic LPO. Reduced apoptosis in GADF-treated mucosa was inversely related to MnSOD activity. Furthermore, apoptosis increased directly as GSSG content increased. These results suggest that the reduction in apoptosis associated with GADF intake may be due to a modulation of the glutathione redox system and endogenous antioxidant enzymes.

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Full Papers
Copyright
Copyright © The Authors 2009
Figure 0

Table 1 Composition of experimental diets*

Figure 1

Table 2 Effect of grape antioxidant dietary fibre (GADF) on GSH, GSSG, GSH:GSSG ratio and the redox potential (Ehc) associated with GSSG/2GSH couple in cytosol of the rat proximal colonic mucosa(Means with their standard errors for ten animals per group)

Figure 2

Table 3 Effect of grape antioxidant dietary fibre (GADF) on cytosolic antioxidant enzyme activities of the rat proximal colonic mucosa(Means with their standard errors for ten animals per group)

Figure 3

Table 4 Effect of grape antioxidant dietary fibre (GADF) on mitochondrial antioxidant enzyme activities of the rat proximal colonic mucosa(Means with their standard errors for ten animals per group)

Figure 4

Fig. 1 Effects of grape antioxidant dietary fibre (GADF) on lipid peroxidation in cytosolic (a) and mitochondrial (b) fractions of the rat proximal colonic mucosa. Lipid peroxidation (malonyldialdehyde (MDA) and 4-hydroxynonenal (4-HNE); nmol/mg protein) was determined using the Bioxytech LPO-586 kit. Values are means with their standard errors represented by vertical bars (n 10). * Significant difference between GADF and control groups (P < 0·05, two-sided unpaired t test, df 18).

Figure 5

Fig. 2 Effects of grape antioxidant dietary fibre (GADF) on apoptosis in the rat proximal colonic mucosa. Apoptosis (DNA fragmentation; optical density (OD)/mg protein) of cytosolic colon mucosa was determined using the Cell Death Detection ELISA Assay (Roche Applied Science). Values are means with their standard errors represented by vertical bars (n 10). * Significant difference between GADF and control groups (P < 0·05, two-sided unpaired t test, df 18).

Figure 6

Fig. 3 Scatter plots of the relationships between mitochondrial Mn-containing superoxide dismutase (MnSOD) activity (U/mg protein) (a) and cytosolic GSSG concentration (nmol/mg protein) (b) with apoptosis (DNA fragmentation; optical density (OD)/mg protein) in the proximal colonic mucosa of GADF rats. Each linear regression analysis is represented by its correlation coefficient (R), P value and the fitted regression line. No significant correlation relationship was found in control group (P>0·01). (a) R − 0·870, P = 0·001; (b) R 0·891, P = 0·0005.