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Prenatal Exposure to Perfluoroalkyl Substances and Birth Outcomes; An Updated Analysis from the Danish National Birth Cohort

机译:产前暴露于全氟烷基物质和出生结果;丹麦国家分娩队列的更新分析

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摘要

Perfluoroalkyl substances (PFASs) are widespread industrial pollutants that are extremely persistent in the environment. A previous study in the Danish National Birth Cohort (DNBC) found prenatal perfluorooctanoate (PFOA) exposure was associated with decreased birth weight, but had insufficient statistical power to evaluate adverse birth outcomes. Here, we conducted additional analyses in three samples originating from the DNBC for 3535 mothers and infant pairs to evaluate associations between prenatal PFASs exposures and low birth weight and preterm birth. Maternal plasma concentrations were measured for six types of PFASs in early pregnancy. Several PFASs were associated with a reduction in birth weight and gestational age. We estimated a nearly 2-fold increase in risks of preterm birth for the higher quartiles of PFOA and perflourooctanesulfonate (PFOS) exposure. In spline models, risk of preterm birth was increased for perfluorononanoic acid (PFNA), perfluoroheptane sulfonate (PFHpS) and perfluorodecanoic acid (PFDA) in higher exposure ranges. We also observed some elevated risks for low birth weight but these estimates were less precise. Our findings strengthen the evidence that in-utero PFASs exposures affect fetal growth. Future studies are needed to evaluate whether these associations persist with the decline of PFOA and PFOS in populations and should also investigate newer types of fluorinated compounds introduced more recently.
机译:全氟烷基物质(PFASS)是环境中极其持久的普遍存在的工业污染物。在丹麦国家出生队列(DNBC)的先前研究发现产前全氟辛烷酸酯(PFOA)暴露与出生重量下降有关,但统计权力不足以评估不良出生结果。在这里,我们在源自DNBC的三个样品中进行了额外的分析,占3535名母亲和婴儿对,以评估产前净化净曝光和低出生体重和早产之间的关联。在妊娠早期测量母体血浆浓度为六种类型的PFASS。几种PFASS与出生体重和妊娠年龄的降低有关。我们估计了对PFOA和PFOSCOOT烷磺酸盐(PFOS)暴露的高分子患者的早产的风险近似2倍。在花键模型中,对于全氟氯酸(PFNA),全氟庚烷磺酸盐(PFHP)和全氟二癸酸(PFDA)在更高的暴露范围内,增加了早产的风险。我们还观察了低出生体重的一些升高的风险,但这些估计较少确切地说。我们的调查结果加强了UTEO净化曝光影响胎儿生长的证据。未来的研究是评估这些协会是否持续存在PFOA和PFOS在群体中的下降,并且还应研究最近介绍的新类型的氟化化合物。

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