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D. B. Nikityuk

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Open access Aug 2026

Sex-Specific Associations Between MTHFR, PPARG and ADRB3 Polymorphisms, Habitual Nutrient Intake and Metabolic Risk in Obesity: A Cross-Sectional Single-Centre Study

Background/Objectives: Genetic polymorphisms modulate the risk of metabolic complications of obesity; yet, it remains unclear how genotype reshapes actual dietary intake and why these mechanisms differ between men and women. The aim of this study was to identify sex-specific associations of three common polymorphisms (MTHFR C677T, PPARG Pro12Ala, ADRB3 Trp64Arg) with habitual nutrient intake in patients with obesity, and to explore candidate sex-differentiated dietary hypotheses for future prospective testing. Methods: A single-centre cross-sectional study was performed in 348 patients with obesity (83 men, 265 women; BMI ≥ 30 kg/m2; age 18–60 years). Genotyping was performed by allele-specific real-time PCR from buccal swabs. Habitual intake of more than 18 nutrients was assessed using a standardised Russian software-based questionnaire. Statistical analysis included Kruskal–Wallis and Mann–Whitney tests with Bonferroni correction (threshold p < 0.017), as well as odds ratios (OR) with 95% confidence intervals. Genotype distributions were tested for Hardy–Weinberg equilibrium, and genotype–nutrient associations were additionally examined in models adjusted for age, BMI and total energy intake. Results: Three genotype–phenotype associations remained significant after Bonferroni correction. In men, the dominant-heterozygous MTHFR C/T genotype was associated with a hypercaloric dietary pattern—excess protein, fat, sodium and phosphorus—and with a high risk of arterial hypertension (OR 5.96, 95% CI 1.48–24.08; p = 0.010). The sodium load in C/T carriers was a consequence of overall overeating rather than a selective preference for salty foods. In men, ADRB3 Trp64Arg carriage was associated with massive dietary cholesterol overconsumption (+466% vs. +153% in Trp/Trp; p = 0.012), whereas in women the opposite direction was observed. The PPARG G/G genotype in women was associated with elevated alanine aminotransferase (p = 0.027), most pronounced under 40 years (p = 0.011), and is considered a marker of hepatic risk without a confirmed dietary target. In women, the MTHFR T/T homozygous genotype showed suggestive associations with excessive mono-/disaccharide intake and a tendency toward hypertension (OR 2.62, 95% CI 1.07–6.43; p = 0.035); however, these did not survive FDR correction and require independent validation. Conclusions: Genetic polymorphisms were associated with sex-specific patterns of actual dietary intake, a finding that extends current knowledge beyond biochemical risk associations. Based on these associations, we propose testable hypotheses rather than clinical recommendations: that caloric restriction (with consequent sodium reduction) in men with MTHFR C/T, cholesterol restriction in men with ADRB3 Arg64, and mono-/disaccharide restriction in women with MTHFR T/T might reduce metabolic risk; women with PPARG G/G may warrant ALT monitoring. These findings suggest that genotype-informed dietary strategies may need to be sex-specific, and that the window for intervention may be earlier in life than currently practised. However, these hypotheses require prospective interventional validation before any clinical application.

I. Lapik, I. Tarmaeva, D. B. Nikityuk · 0 citations