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产前锰生物标志物与操作性测试电池在墨西哥儿童中的表现:儿童性别对其的影响修饰作用。

Prenatal manganese biomarkers and operant test battery performance in Mexican children: Effect modification by child sex.

机构信息

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.

出版信息

Environ Res. 2023 Nov 1;236(Pt 2):116880. doi: 10.1016/j.envres.2023.116880. Epub 2023 Aug 12.

Abstract

BACKGROUND

Manganese (Mn) is essential to healthy neurodevelopment, but both Mn deficiency and over-exposure have been linked to prefrontal cortex (PFC) impairments, the brain region that regulates cognitive and neurobehavioral processes responsible for spatial memory, learning, motivation, and time perception. These processes facilitated by attention, inhibitory control, working memory, and cognitive flexibility are often sexually dimorphic and complex, driven by multiple interconnected neurologic and cognitive domains.

OBJECTIVE

We investigated the role of child sex as an effect modifier of the association between prenatal Mn exposure and performance in an operant testing battery (OTB) that assessed multiple cognitive and behavioral functional domains.

METHODS

Children (N = 575) aged 6-8 years completed five OTB tasks. Blood and urinary Mn measurements were collected from mothers in the 2nd and 3rd trimesters. Multiple regression models estimated the association between Mn biomarkers at each trimester with OTB performance while adjusting for socio-demographic covariates. Covariate-adjusted weighted quantile sum (WQS) regression models were used to estimate the association of a Mn multi-media biomarker (MMB) mixture with OTB performance. Interaction terms were used to estimate modification effect by child sex.

RESULTS

Higher blood Mn exposure was associated with better response rates (more motivation) on the progressive ratio task and higher overall accuracy on the delayed matching-to-sample task. In the WQS models, the MMB mixture was associated with better response rates (more motivation) on the progressive ratio task. Additionally, for the linear and WQS models, we observed a modification effect by child sex in the progressive ratio and delayed matching-to-sample tasks. Higher prenatal Mn biomarker levels were associated with improved task performance for girls and reduced performance in boys.

CONCLUSION

Higher prenatal blood Mn concentrations and the MMB mixture predicted improved performance on two of five operant tasks. Higher prenatal Mn concentrations regulated executive functions in children in a sexually dimorphic manner. Higher prenatal Mn exposure is associated with improved performance on spatial memory and motivation tasks in girls, suggesting that Mn's nutritional role is sexually dimorphic, and should be considered when making dietary and/or environmental intervention recommendations.

摘要

背景

锰(Mn)对健康的神经发育至关重要,但锰缺乏和过度暴露都与前额叶皮层(PFC)损伤有关,PFC 是调节认知和神经行为过程的大脑区域,这些过程负责空间记忆、学习、动机和时间感知。这些过程需要注意力、抑制控制、工作记忆和认知灵活性的支持,它们通常具有性别二态性且复杂,由多个相互关联的神经和认知领域驱动。

目的

我们研究了儿童性别作为产前 Mn 暴露与操作测试电池(OTB)表现之间关联的效应修饰因子的作用,OTB 评估了多个认知和行为功能领域。

方法

6-8 岁的儿童(N=575)完成了五个 OTB 任务。在妊娠第 2 和第 3 个三个月期间从母亲那里采集血液和尿液 Mn 测量值。多元回归模型估计了每个三个月期的 Mn 生物标志物与 OTB 表现之间的关联,同时调整了社会人口统计学协变量。使用加权分位数总和(WQS)回归模型来估计 Mn 多媒体生物标志物(MMB)混合物与 OTB 表现的关联。使用交互项来估计儿童性别对修饰效应的影响。

结果

较高的血液 Mn 暴露与在比例递增任务中的更高反应率(更多动机)和延迟匹配样本任务中的更高整体准确性相关。在 WQS 模型中,MMB 混合物与比例递增任务中的更高反应率(更多动机)相关。此外,对于线性和 WQS 模型,我们在比例递增和延迟匹配样本任务中观察到了儿童性别对修饰效应。较高的产前 Mn 生物标志物水平与女孩的任务表现提高相关,而男孩的表现则降低。

结论

较高的产前血液 Mn 浓度和 MMB 混合物预测了五个操作任务中的两个任务的表现改善。较高的产前 Mn 浓度以性别二态的方式调节儿童的执行功能。较高的产前 Mn 暴露与女孩的空间记忆和动机任务的表现提高有关,这表明 Mn 的营养作用具有性别二态性,在提出饮食和/或环境干预建议时应考虑这一点。

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