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Published on: November 3, 2016
Association of Lead Levels and Cerebral Palsy
Neha Bansal1, Anju Aggarwal1, M M A Faridi1
1Department of Pediatrics.
Insights
Children with cerebral palsy have significantly higher blood lead levels compared to healthy children. This finding highlights a potential environmental risk factor impacting children with this motor disability.
Area of Science:
- Environmental Health
- Pediatric Neurology
- Toxicology
Background:
- Cerebral palsy (CP) is a prevalent childhood motor disability.
- Elevated lead levels are known to impair cognitive function.
- Children with CP may experience heightened lead exposure, exacerbating cognitive, motor, and behavioral deficits.
Purpose of the Study:
- To quantify blood lead levels in children diagnosed with cerebral palsy.
- To compare these levels against a control group of neurologically healthy children.
- To investigate potential correlations between blood lead levels and environmental factors in children with CP.
Main Methods:
- A prospective case-control study was conducted at a tertiary care hospital.
- Participants included 34 children with CP (cases) and 34 age- and sex-matched healthy children (controls).
- Blood lead levels were measured using atomic absorption spectrophotometry, with environmental history meticulously recorded.
Main Results:
- Children with CP exhibited significantly higher mean blood lead levels (9.20 ± 8.31 µg/dL) than controls (2.89 ± 3.04 µg/dL; P < .001).
- Over half (55.88%) of children with CP had blood lead levels ≥5 µg/dL.
- Children with pica showed elevated lead levels (12.33 ± 10.02 µg/dL) compared to those without (P = .029).
Conclusions:
- Blood lead levels are demonstrably elevated in children with cerebral palsy.
- Environmental factors and potential pica contribute to increased lead burden in this population.
- Further research is warranted to elucidate the specific impacts of elevated lead on children with CP.
Abstract:
Background: Cerebral palsy is a common motor disability in childhood. Raised lead levels affect cognition. Children with cerebral palsy may have raised lead levels, further impairing their residual cognitive motor and behavioral abilities. Environmental exposure and abnormal eating habits may lead to increased lead levels. Aims and Objectives: To measure blood lead levels in children with cerebral palsy and compare them with healthy neurologically normal children. To correlate blood lead levels with environmental factors. Material and Methods:Design: Prospective case-control study. Setting: Tertiary care hospital. Participants: Cases comprised 34 children with cerebral palsy, and controls comprised 34 neurologically normal, age- and sex-matched children. Methods: Clinical and demographic details were recorded as per proforma. Detailed environmental history was recorded to know the source of exposure to lead. These children were investigated and treated as per protocol. Venous blood was collected in ethylenediaminetetraacetic acid vials for analysis of blood lead levels. Lead levels were estimated by Schimadzu Flame AA-6800 (atomic absorption spectrophotometer). Data were analyzed using SPSS version 17. P < .05 was taken as significant. Results: Mean blood lead levels were 9.20 ± 8.31 µg/dL in cerebral palsy cases and 2.89 ± 3.04 µg/dL in their controls (P < .001). Among children with cerebral palsy, 19 (55.88%) children had blood lead levels ≥5 µg/dL. Lead levels in children with pica were 12.33 ± 10.02 µg/dL in comparison to children with no history of pica, 6.70 ± 4.60 µg/dL (P = .029). No correlation was found between hemoglobin and blood lead levels in cases and controls. Conclusion: In our study, blood lead levels are raised in children with cerebral palsy. However, further studies are required to show effects of raised levels in these children.
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