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A Method to Define the Effects of Environmental Enrichment on Colon Microbiome Biodiversity in a Mouse Colon Tumor Model
Published on: February 28, 2018
Effects of Walnut Consumption on Colon Carcinogenesis and Microbial Community Structure
Masako Nakanishi1, Yanfei Chen2, Veneta Qendro3
1University of Connecticut Health Center, Farmington, Connecticut.
Abstract:
Walnuts are composed of a complex array of biologically active constituents with individual cancer-protective properties. Here, we assessed the potential benefit of whole walnut consumption in a mouse tumor bioassay using azoxymethane. In study 1, a modest reduction (1.3-fold) in tumor numbers was observed in mice fed a standard diet (AIN-76A) containing 9.4% walnuts (15% of total fat). In study 2, the effects of walnut supplementation was tested in the Total Western Diet (TWD). There was a significant reduction (2.3-fold; P < 0.02) in tumor numbers in male mice fed TWD containing 7% walnuts (10.5% of total fat). Higher concentrations of walnuts lacked inhibitory effects, particularly in female mice, indicating there may be optimal levels of dietary walnut intake for cancer prevention. Since components of the Mediterranean diet have been shown to affect the gut microbiome, the effects of walnuts were therefore tested in fecal samples using 16S rRNA gene sequencing. Carcinogen treatment reduced the diversity and richness of the gut microbiome, especially in male mice, which exhibited lower variability and greater sensitivity to environmental changes. Analysis of individual operational taxonomic units (OTU) identified specific groups of bacteria associated with carcinogen exposure, walnut consumption, and/or both variables. Correlation analysis also identified specific OTU clades that were strongly associated with the presence and number of tumors. Taken together, our results indicate that walnuts afford partial protection to the colon against a potent carcinogenic insult, and this may be due, in part, to walnut-induced changes to the gut microbiome. Cancer Prev Res; 9(8); 692-703. ©2016 AACR.
Insights
Whole walnut consumption partially protected mice against colon cancer by altering the gut microbiome. Optimal intake levels are suggested for cancer prevention, especially in males.
Area of Science:
- Oncology
- Nutritional Science
- Microbiome Research
Background:
- Walnuts contain bioactive compounds with potential cancer-protective effects.
- Dietary interventions are being explored for cancer prevention strategies.
- The gut microbiome's role in cancer development is an active area of research.
Purpose of the Study:
- To evaluate the cancer-preventive effects of whole walnut consumption in a mouse model.
- To investigate the impact of walnuts on the gut microbiome composition.
- To identify potential mechanisms linking walnut intake, gut bacteria, and colon cancer prevention.
Main Methods:
- A mouse tumor bioassay using azoxymethane as a carcinogen.
- Dietary administration of whole walnuts at different concentrations.
- Analysis of tumor development and gut microbiome composition using 16S rRNA gene sequencing.
Main Results:
- Walnut consumption at 7% in the Total Western Diet (TWD) significantly reduced tumor numbers in male mice (2.3-fold decrease).
- Higher walnut concentrations did not show inhibitory effects and were less effective in female mice.
- Carcinogen exposure altered gut microbiome diversity and richness, with specific bacterial taxa associated with tumor presence and walnut consumption.
Conclusions:
- Whole walnuts offer partial protection against carcinogen-induced colon tumors in mice.
- Walnut-induced modifications of the gut microbiome may contribute to cancer prevention.
- Optimal dietary levels of walnuts may exist for cancer prevention, with potential sex-specific differences.
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