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母体二手烟暴露增加 PM 暴露孕妇的巨大儿风险:全国队列中两种空气污染物的新交互作用。

Maternal Secondhand Smoke Exposure Enhances Macrosomia Risk Among Pregnant Women Exposed to PM: A New Interaction of Two Air Pollutants in a Nationwide Cohort.

机构信息

Key Laboratory of Endocrinology of National Health Commission, Department of Endocrinology, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Science, Peking Union Medical College, Beijing, China.

Medical Research Center, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

出版信息

Front Public Health. 2021 Nov 18;9:735699. doi: 10.3389/fpubh.2021.735699. eCollection 2021.

Abstract

Fine particulate matter (PM) is one of the most common outdoor air pollutants, and secondhand smoking (SHS) is an important source of inhalable indoor air pollution. Previous studies were controversial and inconsistent about PM and SHS air pollutants on neonatal birth weight outcomes, and no studies assessed the potential interactive effects between PM and SHS on birth weight outcomes. To investigate the interaction between gestational PM and SHS air pollution exposure on the risk of macrosomia among pregnant women and examine the modifying effect of SHS exposure on the association of PM air pollution and birth weight outcomes during pregnancy. Research data were derived from the National Free Preconception Health Examination Project (NFPHEP), which lasted 3 years from January 1, 2010, to December 31, 2012. At least 240,000 Chinese women from 220 counties were enrolled in this project. PM exposure concentration was obtained using a hindcast model specific for historical PM estimation from satellite-retrieved aerosol optic depth. Different interaction models about air pollution exposure on birth weight outcomes were established, according to the adjustment of different confounding factors and different pregnancy stages. The establishment of interaction models was based on multivariable logistic regression, and the main confounding factors were maternal age at delivery and pre-pregnancy body mass index (BMI) of participants. SHS subgroups analysis was conducted to further confirm the results of interaction models. In total, 197,877 participants were included in our study. In the full-adjusted interaction model, maternal exposure to PM was associated with an increased risk of macrosomia in whole, the first-, second-, and third trimesters of pregnancy ( < 0.001). The interactive effect was statistically significant between maternal exposure to PM and SHS on the risk of macrosomia in the whole (interaction < 0.050) and the first-trimester pregnancy (interaction < 0.050), not in the second (interaction > 0.050) or third trimester (interaction > 0.050) of pregnancy. The higher frequency of SHS exposure prompted the stronger interaction between the two air pollutants in the whole pregnancy and the first-trimester pregnancy. In the whole and first-trimester pregnancy, maternal exposure to SHS during pregnancy enhanced the risk of macrosomia among pregnant women exposed to PM air pollutants, and the interaction became stronger with the higher frequency of SHS exposure.

摘要

细颗粒物(PM)是最常见的室外空气污染物之一,二手烟(SHS)是可吸入室内空气污染的重要来源。先前的研究对 PM 和 SHS 空气污染物对新生儿出生体重结果的影响存在争议且结果不一致,并且没有研究评估 PM 和 SHS 之间的潜在交互作用对出生体重结果的影响。本研究旨在调查妊娠期 PM 和 SHS 空气污染暴露之间的相互作用对孕妇巨大儿风险的影响,并检验 SHS 暴露对怀孕期间 PM 空气污染与出生体重结果之间关联的修饰作用。研究数据来源于国家免费孕前健康检查项目(NFPHEP),该项目从 2010 年 1 月 1 日至 2012 年 12 月 31 日持续了 3 年。该项目共招募了来自 220 个县的至少 24 万名中国妇女。PM 暴露浓度是使用特定于历史 PM 估算的卫星反演气溶胶光学深度的回溯模型获得的。根据不同混杂因素的调整和不同妊娠阶段,建立了不同的关于空气污染暴露对出生体重结果的交互作用模型。交互作用模型的建立基于多变量逻辑回归,主要混杂因素是产妇分娩时的年龄和参与者的孕前体重指数(BMI)。进行 SHS 亚组分析以进一步证实交互作用模型的结果。总共纳入了 197877 名参与者。在全调整的交互模型中,母体 PM 暴露与整个孕期、孕期第一、二、三期妊娠的巨大儿风险增加相关(<0.001)。母体 PM 暴露与 SHS 之间在整个孕期(交互作用<0.050)和孕期第一期(交互作用<0.050)的巨大儿风险存在统计学显著的交互作用,但在孕期第二期(交互作用>0.050)和第三期(交互作用>0.050)没有交互作用。SHS 暴露频率越高,两种空气污染物在整个孕期和孕期第一期的相互作用越强。在整个孕期和孕期第一期,孕妇在怀孕期间暴露于 SHS 会增加 PM 空气污染物暴露孕妇的巨大儿风险,并且随着 SHS 暴露频率的增加,交互作用会增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3625/8637054/59b3c3598abf/fpubh-09-735699-g0001.jpg

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