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Evaluating the association between longitudinal exposure to a PFAS mixture and adolescent cardiometabolic risk in the
Elvira S Fleury1, Jordan R Kuiper2, Jessie P Buckley3
1Department of Epidemiology, Brown University, Providence, RI.
Insights
Per- and polyfluoroalkyl substances (PFAS) exposure during childhood may affect cardiometabolic risk differently in males and females. Higher PFAS exposure was linked to increased risk in girls and decreased risk in boys, suggesting sex-specific impacts.
Area of Science:
- Environmental Health
- Pediatric Health
- Toxicology
Background:
- Childhood exposure to per- and polyfluoroalkyl substances (PFAS) is a growing concern.
- PFAS exposure may influence long-term cardiometabolic health.
- Understanding these impacts is crucial for public health interventions.
Purpose of the Study:
- To investigate the association between longitudinal PFAS exposure patterns and cardiometabolic risk in children.
- To identify distinct PFAS exposure profiles during development.
- To examine potential sex-specific effects of PFAS exposure on cardiometabolic outcomes.
Main Methods:
- Latent profile analysis identified two PFAS exposure patterns in 179 children from the HOME Study.
- Serum PFAS concentrations were measured from birth to age 12.
- Cardiometabolic risk factors, including insulin resistance, lipid ratios, leptin-to-adiponectin ratio, blood pressure, visceral fat, and HbA1c, were assessed at age 12.
Main Results:
- One profile exhibited higher overall PFAS exposure across all measurement points.
- While overall associations were null, child sex significantly modified the relationship between PFAS exposure and cardiometabolic risk.
- Females in the higher exposure group showed increased cardiometabolic risk, blood pressure, and visceral fat; males showed decreased risk and visceral fat.
Conclusions:
- Longitudinal exposure to PFAS mixtures during childhood may have sex-specific effects on adolescent cardiometabolic risk.
- These findings highlight the importance of considering sex when evaluating the health impacts of environmental chemical exposures.
- Further research is needed to elucidate the mechanisms behind these sex-specific associations.
Background:
Exposure to per- and polyfluoroalkyl substances (PFAS) throughout gestation and childhood may impact cardiometabolic risk.
Methods:
In 179 HOME Study participants (Cincinnati, OH; recruited 2003-2006), we used latent profile analysis to identify two distinct patterns of PFAS exposure from serum concentrations of four PFAS measured at birth and ages 3, 8, and 12 years. We assessed the homeostatic model of insulin resistance, triglycerides-to-high-density lipoprotein cholesterol ratio, leptin-to-adiponectin ratio, systolic blood pressure, visceral fat, and hemoglobin A1c levels at age 12 years. We used multivariable linear regression to assess the association of membership in the longitudinal PFAS mixture exposure group with a summary measure of overall cardiometabolic risk and individual components.
Results:
One PFAS exposure profile (n = 66, 39%) had higher geometric means of all PFAS across all visits than the other. Although adjusted associations were null in the full sample, child sex modified the association of longitudinal PFAS mixture exposure group with overall cardiometabolic risk, leptin-to-adiponectin ratio, systolic blood pressure, and visceral fat (interaction term P values: 0.02-0.08). Females in the higher exposure group had higher cardiometabolic risk scores (ß = 0.43; 95% CI = -0.08, 0.94), systolic blood pressures (ß = 0.6; 95% CI = 0.1, 1.1), and visceral fat (ß = 0.44; 95% CI = -0.13, 1.01); males had lower cardiometabolic risk scores (ß = -0.52; 95% CI = -1.06, -0.06), leptin-to-adiponectin ratios (ß = -0.7; 95% CI = -1.29, -0.1), systolic blood pressures (ß = -0.14; 95% CI = -0.7, 0.41), and visceral fat (ß = -0.52; 95% CI = -0.84, -0.19).
Conclusions:
Exposure to this PFAS mixture throughout childhood may have sex-specific effects on adolescent cardiometabolic risk.
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