微生物群
医学
结直肠癌
孟德尔随机化
肠道微生物群
癌症
内科学
肠道菌群
孟德尔遗传
肿瘤科
生物信息学
梅德林
心理干预
风险评估
遗传学
风险因素
生物
基因
失调
作者
Thomas Yates,Molly Went,C. Mills,Philip Law,Richard Houlston
标识
DOI:10.1038/s41366-026-02032-3
摘要
Abstract Background The mechanisms underlying obesity-related cancer risk are incompletely understood. We investigated whether the gut microbiome causally mediates this relationship. Methods We performed two-sample Mendelian randomisation, with mediation analysis, to assess causal links between genetically predicted body mass index (BMI)/waist-to-hip ratio adjusted for BMI (WHRadjBMI), 211 gut microbial taxa, and eight cancers (384,738 cases) of European ancestry. Significant associations were replicated in the FinnGen cohort. Results Genetically predicted BMI was associated with risk of colorectal (CRC; odds ratio per standard deviation (OR SD ): 1.12; 95% confidence interval (CI): [1.06–1.17]; P = 4.95 × 10 −6 ), kidney (RCC) (OR SD : 1.48; 95% CI: [1.34–1.63]; P = 1.61 × 10 −15 ), endometrial (OR SD : 1.70; 95% CI: [1.55–1.87]; P = 2.09 × 10 −27 ), lung (OR SD : 1.20; 95% CI: [1.12–1.29]; P = 1.40 × 10 −7 ), and oesophageal cancer (OR SD : 1.25; 95% CI: [1.13–1.39]; P = 3.09 × 10 −5 ). Seven microbial taxa were associated with CRC risk. Phylum and class Actinobacteria showed the strongest effects (OR SD : 1.48; 95% CI: [1.29–1.70]; P = 1.78 × 10 −8 ) and (OR SD : 1.36; 95% CI: [1.22–1.51]; P = 2.57 × 10 −8 ), respectively, and replicated in FinnGen, mediating 29% (95% CI: [8-50]) and 21% (95% CI: [4–37]) of the BMI to CRC risk—collectively accounting for 50% of the relationship. No consistent microbiome mediation was observed for other cancers. Conclusions Gut Actinobacteria may contribute to obesity-driven CRC risk, supporting the rationale of microbiome-targeted interventions to reduce CRC risk.
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