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Updated: Jun 16, 2026

Isolation and Analysis of Hematopoietic Stem Cells from the Placenta
Published on: June 24, 2008
Placenta and umbilical cord blood deserve attention
Janka Foltinova1, Viktor Foltin, Marcela Morvova
1Department of Histology and Embryology, Faculty of Medicine, Comenius University, Bratislava, Slovakia. foltin@naex.sk
Insights
Lead exposure during pregnancy is linked to attention deficit hyperactivity disorder (ADHD) in children. Detecting lead in umbilical cord blood can aid early diagnosis and prevention of ADHD, highlighting environmental risks to child development.
Area of Science:
- Environmental Health
- Pediatric Development
- Toxicology
Background:
- Attention deficit hyperactivity disorder (ADHD) is a growing global concern in child development.
- Previous research suggests a link between lead exposure and adverse developmental outcomes.
Purpose of the Study:
- To investigate the accumulation and transfer of lead in the placenta.
- To explore the relationship between maternal lead exposure and the development of ADHD in children.
Main Methods:
- Histological and histochemical analyses
- Scanning electron microscopy
- Infrared spectroscopy
- Statistical evaluation of ADHD occurrence
Main Results:
- Developed a novel method to detect lead accumulation in the syncytiotrophoblast of the placenta.
- Demonstrated lead transfer from maternal erythrocytes to fetal erythrocytes via the placenta, with syncytiotrophoblast as a primary accumulation site.
- Confirmed a correlation between lead exposure and ADHD prevalence across different age groups.
Conclusions:
- Lead presence in umbilical cord blood is a significant indicator for potential ADHD development.
- Early detection of lead in newborns can facilitate timely interventions for ADHD.
- Maternal exposure to lead-polluted environments poses serious risks to prenatal and postnatal child development.
Objectives:
This work follows up with our already published results concerning consequences of lead on prenatal and postnatal development of child in connection with the rise of hyperkinetic syndrome (ADHD). This disease has in children increasing tendency all over the world.
Methods:
In our work we used a set of histological and histochemical methods, method of scanning electron microscopy, infrared spectroscopy and statistical evaluation.
Results:
Our new method for proof of lead in placenta enabled us to show how lead is cumulated in syncytiotrophoblast. We have found release of lead from mother's erythrocytes in the intervillous space and receipt of lead by erythrocytes of fetus in the vessels of the villi of placenta. This finding enriches knowledge about relation between mother's erythrocytes, lead, calcium that is lead carrier, syncytiotrophoblast, and erythrocytes of fetus in the vessels of placental villi. We have proved that syncytiotrophoblast is the most frequent place for cumulation of lead deposits. We verified our ecomorphologic results by means of infrared spectroscopy in cooperation with physicists and statistically evaluated occurrence of ADHD in particular age categories what helps to fill gaps in knowledge of ADHD etiology.
Conclusions:
Our finding of lead in umbilical cord blood immediately after the child birth is forewarning against the possible rise of the ADHD. This finding facilitates early diagnostics and means preventing step against the rise, development and consequences of this disease. The obtained results give evidence about the serious influence of mother's dwelling in environment polluted with neurotoxic metal - lead on the prenatal and postnatal development of child.
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