INTRODUCTION
Organophosphate flame retardants (OPFRs) and organophosphorus pesticides (OPPs) are widely used chemicals in daily environments. Yet, evidence linking prenatal exposure to them with cardiac structure development in offspring is scarce.
METHODS
Maternal urinary levels of OPFR and OPP metabolites were measured during the first and second trimesters. Left ventricular end-diastolic volume (LVEDV) and mass (LVM) were assessed by echocardiography in 4-year-old children. Multivariable linear regression and Bayesian kernel machine regression were used to evaluate individual and mixture effects, with sex-stratified and interaction analyses performed to assess potential modification.
RESULTS
Among 458 mother-child pairs from the Shanghai Birth Cohort, higher maternal urinary Di-o-cresyl-phosphate (DoCP) concentrations during both trimesters were associated with lower z-scores of LVEDV (β: -0.049, 95% CI: -0.089, -0.008; and β: -0.055, 95% CI: -0.089, -0.022, respectively) and LVM (β: -0.057, 95% CI: -0.098, -0.015; and β: -0.053, 95% CI: -0.087, -0.019, respectively) in 4-year-old offspring. Similarly, higher maternal Di-phenyl phosphate (DPHP) concentration in the second trimester negatively correlated with z-scores of LVEDV (β: -0.043, 95% CI: -0.085, -0.002) and LVM (β: -0.080, 95% CI: -0.122, -0.038). Mixture analyses revealed inverted J-shape associations between maternal mixed OPFRs/OPPs exposure and offspring LVEDV and LVM. Sex-stratified analyses suggested stronger associations among girls.
CONCLUSIONS
Prenatal exposure to OPFRs and OPPs was associated with smaller left ventricular structural measures in early childhood, mainly reflected by lower left ventricular volume and mass, with OPFRs emerging as main contributors and stronger associations among girls.
Meng Wang, Xi Zhang, Hualin Wang et al.· Environmental Pollution· 0 citations
Environmental pollutants have been implicated in colorectal cancer risk, but the association between plasma per- and polyfluoroalkyl substance (PFAS) concentrations and TNM stage remains unclear. We recruited 110 patients with colorectal cancer in Beijing, China, between March and June 2024. Plasma concentrations of 32 PFAS were measured, and 23 PFAS with detection rates greater than 70% were included in the analysis. Random forest analysis was used to identify the highest-ranking PFAS for TNM-stage classification, followed by multivariable ordinal logistic regression and restricted cubic spline models to evaluate single-PFAS associations and concentration–response patterns. Bayesian kernel machine regression was further applied to assess the joint associations of the selected PFAS mixture, and stratified analyses were conducted by sex and age. PFOA and n-PFOS showed the highest median concentrations, at 2.899 ng/mL and 2.444 ng/mL, respectively. Random forest analysis identified PFPeS, PFTrDA, PFTeDA, HFPO-DA and 8:2 Cl-PFESA as five highest-ranking PFAS for TNM-stage classification. In single-pollutant models, HFPO-DA was positively associated with more advanced TNM stage (odds ratio 2.76, 95% confidence interval 1.39–5.46; P = 0.004), with a linear concentration–response association suggested by restricted cubic spline analysis (overall P = 0.012). Mixture analysis further indicated that higher combined PFAS concentrations were associated with more advanced TNM stage, with a more pronounced positive mixture–response pattern among female patients. These findings suggest that higher plasma PFAS concentrations, particularly HFPO-DA, may be associated with more advanced TNM stage in colorectal cancer and warrant confirmation in larger prospective studies.
Ning Kang, Yang Zhao, Zhi Huang et al.· Frontiers in Toxicology· 1 citation