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Published on: February 28, 2018
Changes in Microbial Community Composition Related to Sex and Colon Cancer by Nrf2 Knockout
Chin-Hee Song1, Nayoung Kim1,2, Ryoung Hee Nam1
1Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam, South Korea.
Abstract:
The frequency of azoxymethane/dextran sulfate sodium (AOM/DSS)-induced carcinogenesis in male mice is higher than that in female mice. Previous studies have reported that 17β-estradiol inhibits tumorigenesis in males by modulating nuclear factor-erythroid 2-related factor 2 (Nrf2). This study aimed to investigate the changes in mouse gut microbiome composition based on sex, AOM/DSS-induced colorectal cancer (CRC), and Nrf2 genotype. The gut microbiome composition was determined by 16S rRNA gene sequencing fecal samples obtained at week 16 post-AOM administration. In terms of sex differences, our results showed that the wild-type (WT) male control mice had higher alpha diversity (i.e. Chao1, Shannon, and Simpson) than the WT female control mice. The linear discriminant analysis effect size (LEfSe) results revealed that the abundances of Akkermansia muciniphila and Lactobacillus murinus were higher in WT male control mice than in WT female controls. In terms of colon tumorigenesis, the alpha diversity of the male CRC group was lower than that of the male controls in both WT and Nrf2 KO, but did not show such changes in females. Furthermore, the abundance of A. muciniphila was higher in male CRC groups than in male controls in both WT and Nrf2 KO. The abundance of Bacteroides vulgatus was higher in WT CRC groups than in WT controls in both males and females. However, the abundance of L. murinus was lower in WT female CRC and Nrf2 KO male CRC groups than in its controls. The abundance of A. muciniphila was not altered by Nrf2 KO. In contrast, the abundances of L. murinus and B. vulgatus were changed differently by Nrf2 KO depending on sex and CRC. Interestingly, L. murinus showed negative correlation with tumor numbers in the whole colon. In addition, B. vulgatus showed positive correlation with inflammatory markers (i.e. myeloperoxidase and IL-1β levels), tumor numbers, and high-grade adenoma, especially, developed mucosal and submucosal invasive adenocarcinoma at the distal part of the colon. In conclusion, Nrf2 differentially alters the gut microbiota composition depending on sex and CRC induction.
Insights
Sex and Nrf2 genotype influence gut microbiome changes in mice with colorectal cancer (CRC). Male mice show distinct microbial profiles and altered diversity compared to females, with specific bacteria correlating to tumor development and inflammation.
Area of Science:
- Microbiology
- Gastroenterology
- Oncology
Background:
- Azoxymethane/dextran sulfate sodium (AOM/DSS) induces colorectal cancer (CRC) more frequently in male mice than female mice.
- 17β-estradiol is known to inhibit tumorigenesis in males by modulating nuclear factor-erythroid 2-related factor 2 (Nrf2).
Purpose of the Study:
- To investigate sex-based differences in gut microbiome composition.
- To analyze the impact of AOM/DSS-induced CRC on the gut microbiome.
- To examine the role of Nrf2 genotype in modulating gut microbiota during CRC development.
Main Methods:
- 16S rRNA gene sequencing was used to analyze fecal samples from mice at 16 weeks post-AOM administration.
- Analysis included comparisons based on sex (male vs. female), CRC induction (control vs. AOM/DSS), and Nrf2 genotype (wild-type vs. knockout).
- Statistical analyses included alpha diversity (Chao1, Shannon, Simpson) and linear discriminant analysis effect size (LEfSe).
Main Results:
- Wild-type male control mice exhibited higher alpha diversity than wild-type female controls, with increased abundances of *Akkermansia muciniphila* and *Lactobacillus murinus*.
- CRC induction in males led to decreased alpha diversity, while females showed no significant change.
- *A. muciniphila* abundance increased in male CRC groups, *Bacteroides vulgatus* increased in both sexes with CRC, and *L. murinus* decreased in female CRC and Nrf2 knockout male CRC groups.
- *L. murinus* negatively correlated with tumor count, while *B. vulgatus* positively correlated with inflammation markers, tumor count, and advanced adenoma, including invasive adenocarcinoma.
Conclusions:
- Nrf2 plays a differential role in altering gut microbiota composition based on sex and CRC induction.
- Gut microbiome composition is significantly influenced by sex, CRC development, and Nrf2 genotype.
- Specific bacterial species like *L. murinus* and *B. vulgatus* show distinct associations with CRC progression, inflammation, and tumor burden, highlighting their potential as biomarkers or therapeutic targets.
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