上海地区环境超细颗粒物与学龄前儿童神经发育迟缓的关系

Environment & Health Pub Date : 2024-10-01 eCollection Date: 2025-01-17 DOI:10.1021/envhealth.4c00102
Mengxun Rong, Yang Shen, Yihui Ge, Wenchong Du, Haidong Kan, Jing Cai, Yan Zhao, Jing Hua
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引用次数: 0

摘要

先前的毒理学研究表明,超细颗粒物(UFP,直径≤0.1 μm的颗粒)具有潜在的神经毒性。然而,来自人类的证据,特别是关于UFP对神经发育的影响,仍然有限。我们从中国上海招募了11,230名3-5.5岁的儿童。采用空间分辨率为50 m的土地利用回归模型评估住宅UFP暴露。采用第三版《年龄与阶段问卷》对学龄前儿童的神经发育进行评估。使用广义线性混合模型来检查UFP暴露与疑似神经发育迟缓风险的关系。对于我们的参与者,UFP暴露的中位数为每立方厘米24,478[四分位数间距(IQR): 22,773-27,657]。我们观察到UFP每增加一次IQR与8%相关[优势比(OR), 1.08;95% CI, 1.02-1.15]和12% (OR, 1.12;95% CI, 1.02-1.22),在粗大和精细运动技能方面疑似神经发育迟缓的几率更高。这些关联在整个UFP浓度中显示单调向上的剂量响应方式。我们的研究结果表明,儿童早期接触UFP与中国学龄前儿童神经发育迟缓的风险增加有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Association between Ambient Ultrafine Particles and Neurodevelopmental Delay in Preschoolers in Shanghai, China.

Previous toxicological research has suggested the potential neurotoxicity of ultrafine particulate matter (UFP, particles ≤0.1 μm in diameter). However, evidence from human beings, particularly regarding the neurodevelopmental impacts of UFP, is still limited. We enrolled 11,230 children aged 3-5.5 years from Shanghai, China. Residential UFP exposure was assessed by a land use regression model with a spatial resolution of 50 m. The neurodevelopment of preschoolers was assessed using the Ages & Stages Questionnaires, Third Edition. Generalized linear mixed models were used to examine the associations of UFP exposure with risk of suspected neurodevelopmental delay. For our participants, the median of UFP exposure was 24,478 [interquartile range (IQR): 22,773-27,657] number per cubic centimeter. We observed that each IQR increase in UFP was associated with 8% [odds ratio (OR), 1.08; 95% CI, 1.02-1.15] and 12% (OR, 1.12; 95% CI, 1.02-1.22) higher odds of suspected neurodevelopmental delay in gross and fine motor skills, respectively. These associations show a monotonically upward dose-response manner across overall UFP concentrations. Our findings suggest that UFP exposure during early childhood is associated with an increased risk of neurodevelopmental delay among Chinese preschoolers.

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来源期刊
Environment & Health
Environment & Health 环境科学、健康科学-
自引率
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期刊介绍: Environment & Health a peer-reviewed open access journal is committed to exploring the relationship between the environment and human health.As a premier journal for multidisciplinary research Environment & Health reports the health consequences for individuals and communities of changing and hazardous environmental factors. In supporting the UN Sustainable Development Goals the journal aims to help formulate policies to create a healthier world.Topics of interest include but are not limited to:Air water and soil pollutionExposomicsEnvironmental epidemiologyInnovative analytical methodology and instrumentation (multi-omics non-target analysis effect-directed analysis high-throughput screening etc.)Environmental toxicology (endocrine disrupting effect neurotoxicity alternative toxicology computational toxicology epigenetic toxicology etc.)Environmental microbiology pathogen and environmental transmission mechanisms of diseasesEnvironmental modeling bioinformatics and artificial intelligenceEmerging contaminants (including plastics engineered nanomaterials etc.)Climate change and related health effectHealth impacts of energy evolution and carbon neutralizationFood and drinking water safetyOccupational exposure and medicineInnovations in environmental technologies for better healthPolicies and international relations concerned with environmental health
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