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产前暴露于金属元素对神经管缺陷的影响:来自人体研究的见解。

Impact of prenatal exposure to metallic elements on neural tube defects: Insights from human investigations.

作者信息

Huang Wanqi, Fu Jialin, Yuan Zhengwei, Gu Hui

机构信息

Key Laboratory of Health Ministry for Congenital Malformation, Shengjing Hospital, China Medical University, Shenyang, China.

Key Laboratory of Health Ministry for Congenital Malformation, Shengjing Hospital, China Medical University, Shenyang, China.

出版信息

Ecotoxicol Environ Saf. 2023 Apr 15;255:114815. doi: 10.1016/j.ecoenv.2023.114815. Epub 2023 Mar 21.

Abstract

Metallic elements play a pivotal role in maternal and fetal health. Metals can cross the placental barrier and be absorbed by fetuses, where they may affect closure of the neural tube during embryonic development. Neural tube defects (NTDs), which result from aberrant closure of the neural tube three to four weeks post-conception, have a multifactorial and complex etiology that combines genetic variants and environmental exposure. Recent advances in population-level association studies have investigated the link between maternal environmental exposure and NTDs, particularly the influence of metals on the incidence of NTDs. Herein, we present a broad and qualitative review of current literature on the association between maternal and prenatal metal exposure via the maternal peripheral blood, amniotic fluid, placenta, umbilical cord, and maternal hair, and the risk of developing NTDs. Specifically, we identify the various aggravating or attenuating effects of metallic exposure on the risk of NTD formation. This review provides novel insights into the association between environmental metals and NTDs and has important applications for NTD prevention and mitigating environmental exposure to metals.

摘要

金属元素在母婴健康中起着关键作用。金属能够穿过胎盘屏障并被胎儿吸收,在胎儿体内,它们可能会影响胚胎发育过程中神经管的闭合。神经管缺陷(NTDs)是在受孕后三到四周神经管异常闭合所致,其病因多因素且复杂,涉及基因变异和环境暴露。人群水平关联研究的最新进展已对母体环境暴露与神经管缺陷之间的联系展开调查,尤其是金属对神经管缺陷发生率的影响。在此,我们对当前关于通过母体外周血、羊水、胎盘、脐带和母体毛发暴露金属与神经管缺陷风险之间关联的文献进行广泛且定性的综述。具体而言,我们确定金属暴露对神经管缺陷形成风险的各种加重或减轻作用。本综述为环境金属与神经管缺陷之间的关联提供了新见解,并对神经管缺陷的预防以及减少环境金属暴露具有重要应用价值。

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