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Elevated Blood Lead Levels in Infants and Children in Haiti, 2015
Chris Carpenter1,2,3, Brittany Potts1,4, Julia von Oettingen2,5
11 Boston Children's Hospital, Boston, MA, USA.
Insights
Lead poisoning is a significant health concern for Haitian children, with over half exhibiting elevated blood lead levels (EBLLs). Environmental factors, particularly in mountain regions and exposure to discarded batteries, contribute to this public health crisis.
Area of Science:
- Environmental Health
- Pediatric Health
- Toxicology
Background:
- Limited data exists on blood lead levels (BLLs) in Haitian children.
- Environmental lead exposure is a known risk in Haiti from various sources.
- Lead poisoning poses a significant threat to child development and health.
Purpose of the Study:
- To determine the prevalence of elevated blood lead levels (EBLLs) in healthy Haitian children.
- To identify geographic and environmental risk factors associated with EBLLs in Haiti.
Main Methods:
- A cross-sectional study was conducted with 273 children aged 9 months to 6 years in three Haitian geographic areas (coastal, urban, mountain).
- Fingerstick blood lead levels (BLLs) were measured, with elevated levels defined as ≥5 μg/dL.
- Data on anthropometrics, income, and potential lead exposure sources were collected.
Main Results:
- The median BLL was 5.8 μg/dL, with 65.9% of children having EBLLs.
- The mountain region showed the highest prevalence of EBLLs (82.0%), significantly higher than urban (53.8%) and coastal (58.9%) areas.
- Exposure to improperly discarded batteries and residing in the mountain area were significant risk factors for EBLLs.
Conclusions:
- Over half of the studied Haitian children presented with elevated blood lead levels.
- Urgent public health interventions are necessary to mitigate lead poisoning risks in Haitian children.
- Targeted strategies addressing environmental lead sources are crucial for prevention.
Objective:
Few studies have reported blood lead levels (BLLs) in Haitian children, despite the known presence of lead from environmental factors such as soil, water, leaded paint and gasoline, improperly discarded batteries, and earthquakes. We sought to determine the prevalence of elevated blood lead levels (EBLLs) among healthy Haitian children.
Methods:
We enrolled children aged 9 months to 6 years from 3 geographic areas in Haiti (coastal, urban, and mountain) from March 1 through June 30, 2015. We obtained anthropometric measurements, household income, potential sources of lead exposure, and fingerstick BLLs from 273 children at 6 churches in Haiti. We considered a BLL ≥5 μg/dL to be elevated.
Results:
Of 273 children enrolled in the study, 95 were from the coastal area, 78 from the urban area, and 100 from the mountain area. The median BLL was 5.8 μg/dL, with higher levels in the mountain area than in the other areas ( P < .001). BLLs were elevated in 180 (65.9%) children. The prevalence of EBLL was significantly higher in the mountain area (82 of 100, 82.0%; P < .001) than in the urban area (42 of 78, 53.8%) and the coastal area (56 of 95, 58.9%; P < .001). Twenty-eight (10.3%) children had EBLLs ≥10 μg/dL and 3 (1.1%) children had EBLLs ≥20 μg/dL. Exposure to improperly discarded batteries ( P = .006) and living in the mountain area ( P < .001) were significant risk factors for EBLLs.
Conclusions:
More than half of Haitian children in our study had EBLLs. Public health interventions are warranted to protect children in Haiti against lead poisoning.
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