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Published on: March 22, 2024
Prenatal Tobacco Exposure Shortens Telomere Length in Children
Patrick Ip1, Brian Hon Yin Chung2, Frederick Ka Wing Ho2
1Department Paediatrics and Adolescent Medicine, University of Hong Kong, Hong Kong, China; patricip@hku.hk.
Insights
Prenatal tobacco exposure is linked to shorter telomere length in children, indicating premature aging and increased health risks. Reducing fetal tobacco exposure is crucial for future generations' health outcomes.
Area of Science:
- Environmental Health
- Pediatrics
- Genetics
Background:
- Preliminary evidence suggests a link between prenatal tobacco exposure and telomere length in children.
- Maternal smoking during pregnancy may impact children's telomere length and long-term health.
Purpose of the Study:
- To investigate the association between maternal smoking during pregnancy and telomere shortening in children.
- To examine the impact of prenatal and childhood environmental tobacco smoke exposure on this association.
Main Methods:
- Population-representative study involving 98 children with prenatal tobacco exposure and 98 matched controls.
- Stratified random sampling from a Hong Kong Chinese population health study.
- Telomere length (T/S ratio) measured in children under 15 years.
Main Results:
- Children exposed prenatally to tobacco had significantly shorter telomeres (mean T/S ratio 24.9 vs. 28.97, P=0.02).
- A negative dose-response relationship was observed: longer maternal smoking duration correlated with shorter telomere length.
- The association remained significant after controlling for socioeconomic status and environmental tobacco smoke exposure.
Conclusions:
- Prenatal tobacco exposure is associated with telomere shortening in children, potentially leading to premature aging.
- Reducing fetal tobacco exposure through education and smoking cessation support is critical for improving child health outcomes.
- Prenatal tobacco exposure may impact children's biological programming, highlighting the importance of smoke-free pregnancies.
Introduction:
Preliminary evidence suggests a possible association between prenatal tobacco exposure and telomere length in children. This study was conducted to investigate whether maternal smoking during pregnancy was associated with telomere shortening in their children and whether prenatal and childhood exposure to environmental tobacco had any impact on this association.
Methods:
This is a population-representative study on the association between prenatal tobacco exposure and telomere length in children. Ninety-eight Hong Kong Chinese children aged under 15 years with prenatal tobacco exposure and 98 age- and gender-matched controls were recruited from a population health study with stratified random sampling.
Results:
Telomere length in children with prenatal tobacco exposure was significantly shorter than in those with no exposure (mean T/S ratio = 24.9 [SD = 8.58] in exposed vs. 28.97 [14.15] in control groups; P = 0.02). A negative dose-response relationship was observed between the T/S ratio and tobacco exposure duration: the longer the duration of maternal smoking in pregnancy, the shorter the child's telomere length. The association between the child's telomere length and prenatal tobacco exposure remained significant after considering the influence of family socioeconomic status and exposure to environmental tobacco smoke during pregnancy and childhood.
Conclusions:
Prenatal tobacco exposure was associated with telomere shortening in children. As this may impose significant health impacts through fetal genetic programming, more efforts should be made to reduce fetal tobacco exposure by educating pregnant women to not smoke and motivating smokers to quit in early pregnancy.
Implications:
As reflected by telomere shortening, prenatal tobacco exposure in children can cause premature aging and increased health risks, which we suggest is entirely preventable. Not smoking during pregnancy or quitting smoking is critical to improving the health outcome of our future generations as prenatal tobacco exposure may affect children's biological programming.
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