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Colon Cancer Prevention with Walnuts: A Longitudinal Study in Mice from the Perspective of a Gut Enterotype-like
Yanfei Chen1,2, Masako Nakanishi3, Eddy J Bautista2
1State Key Laboratory for Diagnosis and Treatment of Infectious Disease, The First Affiliated Hospital, Zhejiang University, Hangzhou, China.
Abstract:
There is limited understanding of how walnut consumption inhibits the development of colorectal cancer. A possible mechanism may involve alterations to the gut microbiota. In this study, the effects of walnut on gut microbiota were tested in a mouse tumor bioassay using the colonotropic carcinogen, azoxymethane (AOM) added to the total Western diet (TWD). 16S rRNA pyrosequencing identified three enterotype-like clusters (E1, E2, and E3) in this murine model. E1, E2, and E3 are associated with AOM exposure, walnut consumption, and TWD diet, respectively. E2 and E3 showed distinct taxonomic and functional characteristics, while E1 represented an intermediate state. At the family level, E1 and E3 were both enriched with Bacteroidaceae, but driven by two different operational taxonomic units (OTU; OTU-2 for E1, OTU-4 for E3). E2 was overrepresented with Porphyromonadaceae and Lachnospiraceae, with OTU-3 (family Porphyromonadaceae) as the "driver" OTU for this cluster. Functionally, E3 is overrepresented with genes of glycan biosynthesis and metabolism, xenobiotic metabolism, and lipid metabolism. E2 is enriched with genes associated with cell motility, replication and repair, and amino acid metabolism. Longitudinally, E2 represents the gut microbial status of early life in these mice. In comparison with E1 and E3, E2 is associated with a moderate lower tumor burden (P = 0.12). Our results suggest that walnuts may reduce the risk of colorectal cancer within a Western diet by altering the gut microbiota. Our findings provide further evidence that colorectal cancer risk is potentially modifiable by diet via alterations to the microbiota.
Insights
Walnut consumption may reduce colorectal cancer risk by altering gut microbiota composition. This study identified specific microbial clusters linked to walnut intake, suggesting a dietary intervention pathway for cancer prevention.
Area of Science:
- Microbiology
- Oncology
- Nutritional Science
Background:
- Colorectal cancer (CRC) development is not fully understood.
- Dietary interventions, like walnut consumption, show potential for CRC prevention.
- Gut microbiota alterations are a proposed mechanism for walnut's anti-cancer effects.
Purpose of the Study:
- To investigate the impact of walnut consumption on gut microbiota composition and its relation to colorectal cancer development in a mouse model.
- To identify specific microbial taxa and functions associated with walnut intake and CRC risk.
Main Methods:
- A mouse model was used with azoxymethane (AOM) carcinogen and a total Western diet (TWD).
- Walnut consumption was introduced as a dietary variable.
- 16S rRNA pyrosequencing was employed to analyze gut microbial communities and identify enterotype-like clusters (E1, E2, E3).
Main Results:
- Three distinct enterotype-like clusters were identified: E1 (AOM exposure), E2 (walnut consumption), and E3 (TWD diet).
- E2 and E3 exhibited unique taxonomic and functional profiles, with E2 enriched in Porphyromonadaceae and Lachnospiraceae, and E3 in Bacteroidaceae.
- E2, associated with early-life gut microbial status, showed a trend towards lower tumor burden compared to E1 and E3.
Conclusions:
- Walnut consumption may mitigate colorectal cancer risk by modulating the gut microbiota.
- Specific microbial alterations driven by walnut intake could be a key factor in cancer prevention.
- Dietary modifications targeting the gut microbiota represent a promising strategy for managing colorectal cancer risk.
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