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Assessment of lead exposure in schoolchildren from Jakarta
Insights
Jakarta schoolchildren face significant lead exposure risks, with many exceeding safe blood lead levels. High traffic density in urban areas contributes to this public health concern, necessitating pollution reduction and monitoring.
Area of Science:
- Environmental Health
- Pediatric Toxicology
- Public Health
Background:
- Urban children in high-traffic areas are vulnerable to lead poisoning.
- Assessing lead exposure magnitude in Jakarta schoolchildren is crucial.
Purpose of the Study:
- To evaluate lead exposure levels in schoolchildren in Jakarta.
- To analyze blood lead concentrations and heme biosynthesis biomarkers.
- To assess lead contamination in soil and tap water.
Main Methods:
- Blood lead concentrations and zinc protoporphyrin were measured in 131 children.
- Soil and tap water samples were collected from four schools in central and southern Jakarta.
- Hematological biomarkers were analyzed.
Main Results:
- Mean blood lead concentration was higher in the central district (8.3 microg/100 ml) than the southern district (6.9 microg/100 ml).
- 26.7% of children exceeded the 10 microg/100 ml lead level threshold.
- Elevated zinc protoporphyrin and low hemoglobin were observed in a significant percentage of children.
Conclusions:
- Indonesian children in urban areas are at high risk for elevated blood lead levels.
- Soil lead contamination is a significant environmental concern.
- Reducing lead pollution and continuous exposure monitoring are recommended.
Abstract:
Children attending schools in urban areas with high traffic density are a high risk group for lead poisoning. We assessed the magnitude of lead exposure in schoolchildren from Jakarta by analyzing blood lead concentrations and biomarkers of heme biosynthesis. A total of 131 children from four public elementary schools in Jakarta (two in the southern district and two in the central district) were enrolled in the study. To evaluate lead pollution in each area, soil samples and tap water were collected. The mean blood lead concentration was higher in the central district than in the southern district (8.3 +/- 2.8 vs. 6.9 +/- 3.5 microg/100 ml; p<0.05); 26.7% of the children had lead levels greater than 10 microg/100 ml. In 24% of the children, zinc protoporphyrin concentrations were over 70 micromol/mol hemoglobin; in 17% of the samples, hemoglobin was less than 11 g/100 ml. All other values were within the physiological range. Blood lead concentration and hematological biomarkers were not correlated. Analyses of tap water revealed lead values under 0. 01 mg/l; lead contamination of soil ranged from 77 to 223 ppm. Our data indicate that Indonesian children living in urban areas are at increased risk for blood lead levels above the actual acceptable limit. Activities to reduce pollution (e.g., reduction of lead in gasoline) and continuous monitoring of lead exposure are strongly recommended.
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