Literature DB >> 30664973

Elevated lead levels from e-waste exposure are linked to sensory integration difficulties in preschool children.

Haoxing Cai1, Xijin Xu2, Yu Zhang3, Xiaowei Cong1, Xueling Lu4, Xia Huo5.   

Abstract

Exposure to lead is associated with adverse effects on neurodevelopment. However, studies of the effects of lead on sensory integration are few. The purpose of this research is to investigate the effect of lead exposure on child sensory integration by correlating the blood lead levels of children with sensory processing measures. A total of 574 children, from 3 to 6 years of age, 358 from an electronic waste (e-waste) recycling town named Guiyu, and 216 from Haojiang, a nearby town with no e-waste recycling activity, were recruited in this study. The median blood lead level in Guiyu children was 4.88 μg/dL, higher than the 3.47 μg/dL blood lead level in Haojiang children (P <  0.001). 47.2% of Guiyu children had blood lead levels exceeding 5 μg/dL. The median concentration of serum cortisol, an HPA-axis biomarker, in Guiyu children was significantly lower than in Haojiang, and was negatively correlated with blood lead levels. All subscale scores and the total score of the Sensory Processing Measure (Hong Kong Chinese version, SPM-HKC) in Guiyu children were higher than Haojiang children, indicating greater difficulties, especially for touch, body awareness, balance and motion, and total sensory systems. Sensory processing scores were positively correlated with blood lead, except for touch, which was negatively correlated with serum cortisol levels. Simultaneously, all subscale scores and the total SPM-HKC scores for children with high blood lead levels (blood lead > 5 μg/dL) were higher than those in the low blood lead level group (blood lead < 5 μg/dL), especially for hearing, touch, body awareness, balance and motion, and total sensory systems. Our findings suggest that lead exposure in e-waste recycling areas may result in a decrease in serum cortisol levels and an increase in child sensory integration difficulties. Cortisol may be involved in touch-related sensory integration difficulties.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cortisol; E-waste; Lead exposure; Preschool children; Sensory integration disorder

Year:  2019        PMID: 30664973     DOI: 10.1016/j.neuro.2019.01.004

Source DB:  PubMed          Journal:  Neurotoxicology        ISSN: 0161-813X            Impact factor:   4.294


  5 in total

1.  Features that best define the heterogeneity and homogeneity of autism in preschool-age children: A multisite case-control analysis replicated across two independent samples.

Authors:  Lisa D Wiggins; Lin H Tian; Eric Rubenstein; Laura Schieve; Julie Daniels; Karen Pazol; Carolyn DiGuiseppi; Brian Barger; Eric Moody; Steven Rosenberg; Chyrise Bradley; Melanie Hsu; Cordelia Robinson Rosenberg; Deborah Christensen; Tessa Crume; Juhi Pandey; Susan E Levy
Journal:  Autism Res       Date:  2021-12-29       Impact factor: 4.633

2.  Analysis of Cadmium, Mercury, and Lead Concentrations in Erythrocytes of Renal Transplant Recipients from Northwestern Poland.

Authors:  Aleksandra Wilk; Maciej Romanowski; Barbara Wiszniewska
Journal:  Biology (Basel)       Date:  2021-01-16

Review 3.  Human Body Burden of Heavy Metals and Health Consequences of Pb Exposure in Guiyu, an E-Waste Recycling Town in China.

Authors:  Wenlong Huang; Xiaoling Shi; Kusheng Wu
Journal:  Int J Environ Res Public Health       Date:  2021-11-26       Impact factor: 3.390

4.  Health consequences of exposure to e-waste: an updated systematic review.

Authors:  Sarker M Parvez; Farjana Jahan; Marie-Noel Brune; Julia F Gorman; Musarrat J Rahman; David Carpenter; Zahir Islam; Mahbubur Rahman; Nirupam Aich; Luke D Knibbs; Peter D Sly
Journal:  Lancet Planet Health       Date:  2021-12

Review 5.  Environmental contamination and public health effects of electronic waste: an overview.

Authors:  Okunola A Alabi; Yetunde M Adeoluwa; Xia Huo; Xijin Xu; Adekunle A Bakare
Journal:  J Environ Health Sci Eng       Date:  2021-04-21
  5 in total

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