03047nas a2200481 4500008004100000022001400041245012800055210006900183260001300252300001100265490000700276520158000283653001201863653001701875653001601892653001901908653001501927653002701942653002501969653001801994653002402012653002002036653001302056653001702069653002502086653002202111653002102133653000902154653000902163653001802172653001002190100002602200700002302226700002002249700002402269700002902293700002002322700002102342700002902363700002202392700002002414856013102434 2013 eng d a1460-218000aGrape antioxidant dietary fiber inhibits intestinal polyposis in ApcMin/+ mice: relation to cell cycle and immune response.0 aGrape antioxidant dietary fiber inhibits intestinal polyposis in c2013 Aug a1881-80 v343 a
Epidemiological and experimental studies suggest that fiber and phenolic compounds might have a protective effect on the development of colon cancer in humans. Accordingly, we assessed the chemopreventive efficacy and associated mechanisms of action of a lyophilized red grape pomace containing proanthocyanidin (PA)-rich dietary fiber [grape antioxidant dietary fiber (GADF)] on spontaneous intestinal tumorigenesis in the Apc(Min/+) mouse model. Mice were fed a standard diet (control group) or a 1% (w/w) GADF-supplemented diet (GADF group) for 6 weeks. GADF supplementation greatly reduced intestinal tumorigenesis, significantly decreasing the total number of polyps by 76%. Moreover, size distribution analysis showed a considerable reduction in all polyp size categories [diameter <1mm (65%), 1-2mm (67%) and >2mm (87%)]. In terms of polyp formation in the proximal, middle and distal portions of the small intestine, a decrease of 76, 81 and 73% was observed, respectively. Putative molecular mechanisms underlying the inhibition of intestinal tumorigenesis were investigated by comparison of microarray expression profiles of GADF-treated and non-treated mice. We observed that the effects of GADF are mainly associated with the induction of a G1 cell cycle arrest and the downregulation of genes related to the immune response and inflammation. Our findings show for the first time the efficacy and associated mechanisms of action of GADF against intestinal tumorigenesis in Apc(Min/+) mice, suggesting its potential for the prevention of colorectal cancer.
10aAnimals10aAntioxidants10aBody Weight10aCarcinogenesis10aCell Cycle10aCell Cycle Checkpoints10aColorectal Neoplasms10aDietary Fiber10aDietary Supplements10aDown-Regulation10aG1 Phase10aInflammation10aIntestinal Polyposis10aIntestinal Polyps10aIntestine, Small10aMale10aMice10aTranscriptome10aVitis1 aSánchez-Tena, Susana1 aLizarraga, Daneida1 aMiranda, Anibal1 aVinardell, Maria, P1 aGarcia-Garcia, Francisco1 aDopazo, Joaquin1 aTorres, Josep, L1 aSaura-Calixto, Fulgencio1 aCapellà , Gabriel1 aCascante, Marta uhttps://www.clinbioinfosspa.es/content/grape-antioxidant-dietary-fiber-inhibits-intestinal-polyposis-apcmin-mice-relation-cell