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. 2009 Mar 7:6:11.
doi: 10.1186/1743-7075-6-11.

Effect of high amylose maize starches on colonic fermentation and apoptotic response to DNA-damage in the colon of rats

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Effect of high amylose maize starches on colonic fermentation and apoptotic response to DNA-damage in the colon of rats

Richard K Le Leu et al. Nutr Metab (Lond). .

Abstract

Background: We investigated in rats the effects of feeding different forms of high amylose maize starches (HAMS) rich in resistant starch (RS) to understand what the implications of RS heterogeneity might be for colonic biology, including innate cellular responses to DNA-damage.

Methods: A range of maize starches were compared: digestible cornstarch (Control), HYLON® VII, Hi-maize® 1043, Hi-maize® 240, Hi-maize® 260 and NOVELOSE® 330. Included in the comparison was Cellulose. End-points after 4 weeks included: pH, short chain fatty acids (SCFA) levels, colonic epithelial cell kinetics and apoptotic response to carcinogen 'azoxymethane' in the colonic epithelium.

Results: The RS diets significantly increased SCFA and reduced pH in caecal content and faeces. Hi-maize 260 resulted in the highest butyrate concentrations. All RS diets prevented the mucosal atrophy as seen in the rats fed the Control diet. Epithelial cell turnover was increased in the Control and Cellulose groups compared to the Hi-maize 260, HYLON VII and NOVELOSE 330 groups (P < 0.01). The apoptotic response to azoxymethane was higher only in the Hi-maize 260 group compared to the Control group (P < 0.01). Butyrate correlated positively with the apoptotic response (P < 0.01).

Conclusion: The consumption of RS elicits a range of beneficial physiological and protective effects associated with the fermentation of RS. Increased production of butyrate seems a likely explanation by which RS enhances the apoptotic response to carcinogen-induced DNA damage which is consistent with the proposed role of this SCFA in promoting a normal cell phenotype and preventing the development of abnormal cell populations.

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Figures

Figure 1
Figure 1
Effect of experimental diets on colonic epithelial events. Effect of experimental diets on colonic crypt column height (A), colonic epithelial cell turnover (B), colonic positive Ki-67 cells (C) and AOM-induced apoptosis (D). Means ± SEM, n = 12. Means with superscripts without a common letter differ, P < 0.05.

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References

    1. Englyst HN, Kingman SM, Cummings JH. Classification and measurement of nutritionally important starch fractions. Eur J Clin Nutr. 1992;46:S33–50. - PubMed
    1. Topping DL, Clifton PM. Short-chain fatty acids and human colonic function: roles of resistant starch and nonstarch polysaccharides. Physiol Rev. 2001;81:1031–1064. - PubMed
    1. Young GP, Le Leu RK. Resistant starch and colorectal neoplasia. J AOAC Int. 2004;87:775–786. - PubMed
    1. Cassidy A, Bingham SA, Cummings JH. Starch intake and colorectal cancer risk: an international comparison. Br J Cancer. 1994;69:937–942. - PMC - PubMed
    1. Le Leu RK, Brown IL, Hu Y, Bird AR, Jackson M, Esterman A, Young GP. A synbiotic combination of resistant starch and Bifidobacterium lactis facilitates apoptotic deletion of carcinogen-damaged cells in rat colon. J Nutr. 2005;135:996–1001. - PubMed

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