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首页> 外文期刊>Environmental research >In utero and peripubertal metals exposure in relation to reproductive hormones and sexual maturation and progression among girls in Mexico City
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In utero and peripubertal metals exposure in relation to reproductive hormones and sexual maturation and progression among girls in Mexico City

机译:墨西哥城女孩子宫内和青春期金属暴露与生殖激素,性成熟和进展的关系

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There is increasing evidence that several metals are endocrine disrupting chemicals (EDCs). In utero development and adolescence are critical windows of susceptibility to EDC exposure. With the exception of a few heavy metals, few human studies have evaluated the impact of metal exposure on pubertal development. Our aim was to investigate measures of in utero and peripubertal metal exposure in relation to reproductive hormone levels and sexual maturation and progression among girls from the Early Life Exposure in Mexico to Environmental Toxicants (ELEMENT) cohorts. We measured urinary concentrations of aluminum (Al), arsenic (As), barium (Ba), cadmium (Cd), cobalt (Co), copper (Cu), iron (Fe), manganese (Mn), molybdenum (Mo), nickel (Ni), antimony (Sb), selenium (Se), and zinc (Zn) in samples collected from women during their third trimester of pregnancy and from their female children at 8-13 years (n = 132). We measured serum testosterone, estradiol, dehydroepiandrosterone sulfate (DHEA-S), inhibin B, and sex hormone-binding globulin (SHBG) at age 8-13, and assessed Tanner stages for sexual maturation (breast, pubic hair development, and menarche status), at two time points (8-13, 14-18 years). We used linear regression to independently examine in utero and peripubertal metal concentrations as predictors of peripubertal hormones. In a longitudinal analysis using generalized estimation equations, we evaluated Tanner stage and menarche progression in relation to individual in utero and peripubertal metal concentrations. We found that higher in utero Zn was associated with increased inhibin B. Several metals at 8-13 years were associated with higher DHEA-S and estradiol, while Ni was positively but Cu was negatively associated with testosterone. In utero Ni, Al, and Cd were associated with slower progression of breast development after adjustment for child age and BMI z-score. For example, an IQR increase in in utero Al exposure was associated with 0.82 times lower odds of progressing to a higher Tanner stage for breast development per year (95% CI: 0.68, 0.99). Peripubertal concentrations of Ba and Al were also associated with being at a higher pubic hair Tanner stage and menarche at 8-13, but lower odds of progressing to the next stage at 14-18 years. We used Bayesian kernel machine regression (BKMR) to model the joint effect of multiple metals while accounting for correlated exposures, as well as potential non-linear relationships between metals and outcomes of interest, which yielded results similar to individual analyses. These findings suggest that female reproductive development may be vulnerable to the effects of metal exposure, and using both Tanner stages and hormone levels may provide clues about underlying mechanisms in two sensitive periods of development.
机译:越来越多的证据表明,几种金属是破坏内分泌的化学物质(EDC)。子宫内发育和青春期是暴露于EDC的重要窗口。除少数重金属外,几乎没有人类研究评估过金属暴露对青春期发育的影响。我们的目的是调查从墨西哥的早期生命暴露到环境毒物(ELEMENT)队列的女孩中,子宫内和青春期金属暴露与生殖激素水平以及性成熟和进展有关的量度。我们测量了铝(Al),砷(As),钡(Ba),镉(Cd),钴(Co),铜(Cu),铁(Fe),锰(Mn),钼(Mo),从怀孕中期的妇女和8-13岁的女婴中收集的镍(Ni),锑(Sb),硒(Se)和锌(Zn)(n = 132)。我们测量了8-13岁时的血清睾丸激素,雌二醇,硫酸脱氢表雄酮硫酸盐(DHEA-S),抑制素B和性激素结合球蛋白(SHBG),并评估了Tanner分期的性成熟情况(乳房,阴毛发育和初潮状态) ),在两个时间点(8-13、14-18年)。我们使用线性回归独立地检测子宫内和青春期周围的金属浓度,作为青春期周围激素的预测指标。在使用广义估计方程式进行的纵向分析中,我们评估了子宫内和青春期周围金属浓度与个体相关的Tanner阶段和初潮进展。我们发现子宫中较高的锌与抑制素B增加有关。几种金属在8-13岁时与较高的DHEA-S和雌二醇有关,而镍与睾丸激素呈正相关,而铜与睾丸激素呈负相关。调整儿童年龄和BMI z评分后,子宫内的Ni,Al和Cd与乳房发育的缓慢进展相关。例如,子宫内铝暴露的IQR增加与每年乳房发育进入较高Tanner阶段的机率降低0.82倍相关(95%CI:0.68,0.99)。青春期中Ba和Al的浓度也与阴毛Tanner期较高和初潮在8-13岁时有关,但在14-18岁时进入下一阶段的几率较低。我们使用贝叶斯核仁机器回归(BKMR)来建模多种金属的联合效应,同时考虑了相关的暴露量,以及金属与目标结果之间潜在的非线性关系,得出的结果与个别分析相似。这些发现表明,女性生殖发育可能容易受到金属暴露的影响,同时使用Tanner阶段和激素水平可能提供有关两个敏感发育时期内潜在机制的线索。

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