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Concentrations of lead in the tissues of children
Insights
Infant lead exposure is lower than in older children and adults, with stillbirths showing even less lead. Lead accumulation in bones does not appear to increase significantly with age in children.
Area of Science:
- Environmental Health
- Toxicology
- Pediatrics
Background:
- Lead exposure is a significant public health concern, particularly for vulnerable populations like infants and children.
- Understanding lead levels in different age groups is crucial for assessing exposure risks and developing effective prevention strategies.
Purpose of the Study:
- To analyze and compare lead concentrations in various tissues of infants, children, and stillbirths.
- To investigate age- and sex-related differences in lead accumulation.
- To compare lead levels in children with those in adults.
Main Methods:
- Analysis of lead content in 24 different tissues from 73 children and infants (including stillbirths).
- Comparison of lead concentrations in soft tissues and bones across different age groups (infants <1 year, children 1-16 years).
- Statistical analysis, including analysis of variance, to determine significance of observed differences.
Main Results:
- Infants (<1 year) had lower soft tissue lead concentrations (<0.3 ppm) than older children and adults.
- Infant bone lead concentrations (<1 ppm) were significantly lower than in adults (10-40 times less) and older children (3 times less).
- Stillbirths exhibited lower lead concentrations than neonatal live births (p<0.05).
- No clear age-related increase in bone lead was observed in children aged 1-16.
- Lead deposition patterns in bone appeared similar across age groups, irrespective of age.
Conclusions:
- Infant lead exposure is generally lower than in older children and adults, potentially due to environmental and care factors.
- Lead does not appear to accumulate progressively in bones before the end of the second decade of life.
- Findings suggest a need for continued monitoring and prevention of lead exposure in pediatric populations.
Abstract:
Twenty-four different tissues from 73 children and infants, including stillbirths, were analysed for lead content. In the youngest group of 49 infants aged under 1 year, including 14 stillbirths, the mean concentrations of lead in their soft tissues were all less than 0.3 ppm and nearly all less than the concentrations found in the soft tissues of older children, or of adults. The mean concentrations of lead in the bones in the infant group were greater than in their soft tissues, but still less than 1 ppm, and were 10-40 times less than in adult bones and about three times less than in the bones of older children. Lower concentrations of lead were observed in the tissues of stillbirths than in those of neonatal live births, at a 95% level of significance by analysis of variance. In 24 children aged 1-16 there was no clear evidence of increase of lead concentrations in the bones with increasing age; neither was there evidence of a difference in the concentrations of lead in types of bone. Although the mean concentrations in the bones were greater in the children aged 1-16 than in those of infants aged under 1 year, the data did not suggest that a progressive accumulation of lead occurred in the bones, probably before the end of the second decade of life, by which time the growing phase will be nearing completion. In 18 children aged 1-9 and in six children aged 11-16 the concentrations of lead in the soft tissues were similar, and comparable with those observed in women. The ratio differences between ash-weight and wet-weight measurement in the different types of bone in children did not differ proportionately from the adult ratios, suggesting a similarity in the patterns of deposition of lead in bone, irrespective of age. No differences in tissue lead concentrations by sex were observed in the infant group of children, or when the concentrations in the tissues were related to the years in which the samples were obtained. Individual tissues showed different concentrations and patterns of distribution of lead, which were skewed more towards low values in the infant group than in older children. The results of other studies, of which there have not been many, were found to be in general agreement with those reported here. The exposure of infants to lead appeared to be less than in older children or in adults, probably for reasons associated with lack of availability and parental care.
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