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Prenatal toxic metal mixture exposure and newborn telomere length: Modification by maternal antioxidant intake

机译:产前毒性金属混合物暴露和新生地端粒长度:母体抗氧化剂的改性

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摘要

Background: Telomere length (TL) predicts the onset of cellular senescence and correlates with longevity and age-related disease risk. While telomeres erode throughout life, adults display fixed ranking and tracking of TL, supporting the importance of the early environment in determining inter-individual variability across the life course. Given their guanine-rich structure, telomeres are highly susceptible to oxidative stress (OS). We examined maternal metal exposure, which can induce OS, in relation to newborn TL. We also considered the modifying role of maternal antioxidant intake. Methods: Analyses included 100 mother-newborn pairs enrolled in the Boston and New York City-based PRo-gramming of Intergenerational Stress Mechanisms (PRISM) pregnancy cohort. We measured As, Ba, Cd, Ni, and Pb in maternal late-pregnancy urine by ICP-MS and quantified relative leukocyte TL (rLTL) in cord blood using qPCR. We used Weighted Quantile Sum (WQS) regression to estimate the metal mixture - rLTL association and conducted repeated holdout validation to improve the stability of estimates across data partitions. We examined models stratified by high (>median) versus low (
机译:背景:端粒长度(TL)预测细胞衰老的发作,与寿命和年龄相关的疾病风险相关。虽然端粒侵蚀整个生命,但成年人显示了TL的固定排名和跟踪,支持早期环境在确定整个生命课程中的各种变异方面的重要性。鉴于富含致鸟嘌呤的结构,端粒体积高易受氧化应激(OS)。我们检查了母体金属曝光,其可以与新生儿TL相关诱导OS。我们还考虑了母体抗氧化剂摄入的改性作用。方法:分析包括在波士顿和纽约市的互动应力机制(棱镜)妊娠队列的基于波士顿和纽约市的母亲新生儿对。通过ICP-MS和使用QPCR在脐带血中通过ICP-MS和相对白细胞T1(RLT1)测量母体晚期妊娠尿液中的Ba,Cd,Ni和Pb。我们使用加权量子(WQS)回归来估计金属混合物 - RLTL关联,并进行重复的保持验证,以提高数据分区估计的稳定性。我们检查了高(>中位数)与低(<中位数)母体抗氧化剂摄入量分层的模型,从Block98食物频率问卷估计。我们审议了尿液系列,尿液系列,母亲年龄和种族/种族作为协变量。结果:在调整后的模型中,尿金属与新生RLTL(β_(WQS)= -0.50,95%CI:-0.78,-0.21)与新生儿有关。有助于负关联的顶部金属包括Ba(重量:35.4%),Cd(24.5%)和Pb(26.9%)。在通过抗氧化剂摄入分层的模型中,金属和RLT1之间的显着逆关联仅在低抗氧化剂摄入量(低:β-(WQS)= -0.92,95%CI:-1.53​​,-0.30;高:β_(WQS)之间留在母体之间= -0.03,95%CI:-0.58,0.52)。结果在未调整的模型中类似。结论:相对LTL在怀孕期间较高的母亲的新生儿较短。较高的母体抗氧化剂摄入可能会降低金属对新生RLTL的负面影响。

著录项

  • 来源
    《Environmental research》 |2020年第11期|110009.1-110009.9|共9页
  • 作者单位

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    EPIGET Lab Department of Clinical Sciences and Community Health University of Milan Milan Italy;

    Division of Metabolism Endocrinology and Diabetes Department of Internal Medicine University of Michigan Ann Arbor MI USA;

    Department of Information Systems Security University of Cumberlands Williamsburg KY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA Institute for Exposomic Research Icahn School of Medicine at Mount Sinai New York NY USA;

    Department of Environmental Medicine and Public Health Icahn School of Medicine at Mount Sinai New York NY USA Institute for Exposomic Research Icahn School of Medicine at Mount Sinai New York NY USA Department of Pediatrics Kravis Children's Hospital Icahn School of Medicine at Mount Sinai New York NY USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metals; Lead (Pb); Cadmium (Cd); Barium (Ba); Telomere; Newborn;

    机译:金属;铅(PB);镉(CD);钡(BA);端子;新生;

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