Background <p>Parental smoking has been linked to several adverse offspring cardiometabolic outcomes; however, evidence is conflicting regarding the causal and long-term nature of these associations.</p> Methods <p>We investigated the effects of maternal and paternal smoking, capturing exposure before, during, and after pregnancy, on eleven offspring cardiometabolic risk factors related to body composition, blood pressure, glucose, and lipid levels in adulthood. We applied a multi-method intergenerational Mendelian randomization (MR) framework, combining two-sample MR (outcome GWAS, n = up to 564,160) and one-sample MR analyses (n = up to 17,484 genotyped mother-father-offspring trios with offspring cardiometabolic risk factors) from the HUNT cohort, Norway, and the UK Biobank and ALSPAC cohorts in the United Kingdom. Smoking behaviour was instrumented using genome-wide significant variants for smoking initiation and heaviness from large genome-wide association studies (2019 and 2022), with additional analyses of the <i>CHRNA5</i> variant rs16969968.</p> Results <p>Using the two-sample MR approach, we found an average change in adult offspring waist-hip ratio (WHR) per one standard deviation (SD) increase in maternal cigarettes smoked per day of 0.25 SD (95% CI: 0.13, 0.38; 2019 GWAS), 0.19 SD (95% CI: 0.08, 0.31; 2022 GWAS) and 0.27 SD (95% CI: 0.07, 0.47; <i>CHRNA5</i> rs16969968). We also found tentative evidence of comparable effects on offspring body mass index and C-reactive protein. One-sample MR analyses using <i>CHRNA5</i> rs16969968, restricted to maternal ever-smokers, provided supporting evidence consistent with the primary findings for maternal smoking heaviness on offspring WHR. We found little evidence that maternal smoking initiation affected WHR, and little evidence that maternal smoking heaviness affected the remaining cardiometabolic risk factors; paternal smoking showed no clear effect on any outcome. Results from sensitivity analyses were consistent with these main findings.</p> Conclusions <p>Adult offspring of mothers with a propensity to heavier smoking exhibited greater central adiposity, a phenotype associated with increased cardiometabolic risk. These findings are consistent with a causal influence of maternal smoking heaviness across the preconception, perinatal, and postnatal periods on later-life offspring body fat distribution. Further triangulation using alternative causal approaches is warranted.</p>

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Effects of maternal and paternal smoking on offspring cardiometabolic risk factors in adulthood: a multi-method intergenerational Mendelian randomization study

  • Grace M. Power,
  • Tom A. Bond,
  • Laxmi Bhatta,
  • Bjørn Olav Åsvold,
  • Ben Brumpton,
  • Giulio Centorame,
  • Gibran Hemani,
  • Deborah A. Lawlor,
  • Geng Wang,
  • Nicole Warrington,
  • David M. Evans,
  • Gunn-Helen Moen,
  • George Davey Smith

摘要

Background

Parental smoking has been linked to several adverse offspring cardiometabolic outcomes; however, evidence is conflicting regarding the causal and long-term nature of these associations.

Methods

We investigated the effects of maternal and paternal smoking, capturing exposure before, during, and after pregnancy, on eleven offspring cardiometabolic risk factors related to body composition, blood pressure, glucose, and lipid levels in adulthood. We applied a multi-method intergenerational Mendelian randomization (MR) framework, combining two-sample MR (outcome GWAS, n = up to 564,160) and one-sample MR analyses (n = up to 17,484 genotyped mother-father-offspring trios with offspring cardiometabolic risk factors) from the HUNT cohort, Norway, and the UK Biobank and ALSPAC cohorts in the United Kingdom. Smoking behaviour was instrumented using genome-wide significant variants for smoking initiation and heaviness from large genome-wide association studies (2019 and 2022), with additional analyses of the CHRNA5 variant rs16969968.

Results

Using the two-sample MR approach, we found an average change in adult offspring waist-hip ratio (WHR) per one standard deviation (SD) increase in maternal cigarettes smoked per day of 0.25 SD (95% CI: 0.13, 0.38; 2019 GWAS), 0.19 SD (95% CI: 0.08, 0.31; 2022 GWAS) and 0.27 SD (95% CI: 0.07, 0.47; CHRNA5 rs16969968). We also found tentative evidence of comparable effects on offspring body mass index and C-reactive protein. One-sample MR analyses using CHRNA5 rs16969968, restricted to maternal ever-smokers, provided supporting evidence consistent with the primary findings for maternal smoking heaviness on offspring WHR. We found little evidence that maternal smoking initiation affected WHR, and little evidence that maternal smoking heaviness affected the remaining cardiometabolic risk factors; paternal smoking showed no clear effect on any outcome. Results from sensitivity analyses were consistent with these main findings.

Conclusions

Adult offspring of mothers with a propensity to heavier smoking exhibited greater central adiposity, a phenotype associated with increased cardiometabolic risk. These findings are consistent with a causal influence of maternal smoking heaviness across the preconception, perinatal, and postnatal periods on later-life offspring body fat distribution. Further triangulation using alternative causal approaches is warranted.