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探索青少年男性金属暴露、脑源性神经营养因子(BDNF)与行为之间的关系。

Exploring the relationship between metal exposure, BDNF, and behavior in adolescent males.

作者信息

Rodríguez-Carrillo Andrea, Mustieles Vicente, D'Cruz Shereen Cynthia, Legoff Louis, Gil Fernando, Olmedo Pablo, Reina-Pérez Iris, Mundo Antonio, Molina Marina, Smagulova Fatima, David Arthur, Freire Carmen, Fernández Mariana F

机构信息

Department of Radiology and Physical Medicine, School of Medicine, University of Granada, 18016, Granada, Spain; Biomedical Research Center (CIBM), University of Granada, 18016, Granada, Spain; Instituto de Investigación Biosanitaria de Granada (ibs.GRANADA), 18012, Granada, Spain.

Department of Radiology and Physical Medicine, School of Medicine, University of Granada, 18016, Granada, Spain; Instituto de Investigación Biosanitaria de Granada (ibs.GRANADA), 18012, Granada, Spain; Consortium for Biomedical Research in Epidemiology and Public Health (CIBERESP), Spain.

出版信息

Int J Hyg Environ Health. 2022 Jan;239:113877. doi: 10.1016/j.ijheh.2021.113877. Epub 2021 Oct 28.

Abstract

BACKGROUND

Brain-derived neurotrophic factor (BDNF) plays an important role in brain development by regulating multiple pathways within the central nervous system. In the Human Biomonitoring for Europe Project (HBM4EU), this neurotrophin is being implemented as a novel effect biomarker to evaluate the potential threats of environmental chemicals on neurodevelopment.

OBJECTIVES

To explore the relationships among exposure to environmental metals, BDNF biomarkers at two levels of biological complexity, and behavioral function in adolescent males.

METHODS

Data were gathered from 125 adolescents on: spot urine sample total concentrations of the neurotoxic metal(oid)s arsenic (As), cadmium (Cd), mercury (Hg), and lead (Pb); serum BDNF protein concentrations; and concurrent behavioral functioning according to the Child Behavior Check List (CBCL/6-18). In 113 of the participants, information was also collected on blood BDNF DNA methylation at six CpGs. Associations were evaluated by multivariate linear regression analysis adjusted for confounders.

RESULTS

As, Cd, Hg, and Pb were detected in 100%, 98.5%, 97.0%, and 89.5% of urine samples, respectively. Median serum BDNF concentration was 32.6 ng/mL, and total percentage of BDNF gene methylation was 3.8%. In the adjusted models, urinary As was non-linearly associated with more internalizing problems and Cd with more externalizing behaviors. The percentage BDNF DNA methylation at CPGs #5 and the mean percentage CpG methylation increased across As tertiles (p-trend = 0.04 and 0.03, respectively), while 2nd tertile and 3rd tertile of Cd concentrations were associated with lower serum BDNF and higher CpG3 methylation percentage. Additionally, when BDNF was categorized in tertiles, serum BDNF at the 3rd tertile was associated with fewer behavioral problems, particularly withdrawn (p-trend = 0.04), social problems (p-trend = 0.12), and thought problems (p-trend = 0.04).

CONCLUSION

Exposure to As and Cd was associated with BDNF gene DNA methylation BDNF gene and serum BDNF, respectively. Associations with DNA methylation may be attributable to a higher variability over time in circulating BDNF concentrations than in the methylation status of this gene. Caution should be taken when interpreting the results relating postnatal Pb and Hg to behavioral functioning. Further studies are needed to verify these findings.

摘要

背景

脑源性神经营养因子(BDNF)通过调节中枢神经系统内的多种途径,在大脑发育中发挥重要作用。在欧洲人类生物监测项目(HBM4EU)中,这种神经营养因子正被用作一种新型效应生物标志物,以评估环境化学物质对神经发育的潜在威胁。

目的

探讨青春期男性接触环境金属、生物复杂性两个层面的BDNF生物标志物与行为功能之间的关系。

方法

收集了125名青少年的以下数据:尿样中神经毒性金属(类金属)砷(As)、镉(Cd)、汞(Hg)和铅(Pb)的总浓度;血清BDNF蛋白浓度;以及根据儿童行为检查表(CBCL/6 - 18)得出的同期行为功能。在113名参与者中,还收集了六个CpG位点的血液BDNF DNA甲基化信息。通过对混杂因素进行调整的多元线性回归分析来评估关联。

结果

尿样中As、Cd、Hg和Pb的检出率分别为100%、98.5%、97.0%和89.5%。血清BDNF浓度中位数为32.6 ng/mL,BDNF基因甲基化总百分比为3.8%。在调整后的模型中,尿中As与更多内化问题呈非线性相关,Cd与更多外化行为相关。CPG位点#5处的BDNF DNA甲基化百分比以及平均CpG甲基化百分比在As三分位数中呈上升趋势(p趋势分别为0.04和0.03),而Cd浓度的第二和第三三分位数与较低的血清BDNF和较高的CpG3甲基化百分比相关。此外,当将BDNF分为三分位数时,第三三分位数的血清BDNF与较少的行为问题相关,尤其是退缩行为(p趋势 = 0.04)、社交问题(p趋势 = 0.12)和思维问题(p趋势 = 0.04)。

结论

接触As和Cd分别与BDNF基因DNA甲基化、BDNF基因和血清BDNF相关。与DNA甲基化的关联可能归因于循环BDNF浓度随时间的变异性高于该基因的甲基化状态。在解释产后Pb和Hg与行为功能相关的结果时应谨慎。需要进一步研究来验证这些发现。

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