Neuropsychological function in children with blood lead levels <10 microg/dL

Pamela J Surkan1, Annie Zhang, Felicia Trachtenberg

  • 1Department of Environmental Health, Harvard School of Public Health, Landmark Building, 4th Floor, 401 Park Drive, Boston, MA 02115, USA.

Neurotoxicology
|September 18, 2007
PubMed

Insights

Even low blood lead levels (BLLs) below 10 microg/dL in children are linked to significant cognitive deficits. This study found that BLLs of 5-10 microg/dL negatively impact IQ, academic achievement, and attention.

Area of Science:

  • Environmental Health
  • Pediatric Neurodevelopment
  • Toxicology

Background:

  • Established adverse effects of high blood lead levels (BLLs) in children (> or = 10 microg/dL).
  • Need to clarify cognitive effects of BLLs below 10 microg/dL, prevalent in the US population.

Purpose of the Study:

  • To evaluate the association between BLLs < 10 microg/dL and various cognitive abilities in children.
  • To identify specific cognitive domains affected by low-level lead exposure.

Main Methods:

  • Analysis of data from 534 children aged 6-10 enrolled in the New England Children's Amalgam Trial (NECAT).
  • Statistical adjustment for covariates including age, race, socioeconomic status, and primary caregiver IQ.
  • Assessment of cognitive abilities using IQ scores, Wechsler Individual Achievement Test (WIAT), and measures of attention and working memory.

Main Results:

  • Children with BLLs of 5-10 microg/dL showed significantly lower IQ scores (5.0 points) compared to those with BLLs of 1-2 microg/dL.
  • Negative associations were observed between BLLs of 5-10 microg/dL and WIAT scores, with deficits in reading (7.8 points) and math (6.9 points).
  • Low-level lead exposure was linked to decreased attention, working memory, spatial attention, and executive function, with academic achievement deficits persisting even after IQ adjustment.

Conclusions:

  • Children's BLLs below 10 microg/dL are associated with compromised cognitive function.
  • Cognitive deficits, particularly in academic achievement, attention, and executive function, are evident at BLLs of 5-10 microg/dL.
  • Findings underscore the importance of minimizing lead exposure in children to protect cognitive development and academic success.

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