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Published on: August 7, 2017
Fetal and infant origins of asthma
1Department of Epidemiology, Erasmus Medical Center, Rotterdam, The Netherlands. l.duijts@erasmusmc.nl
Insights
Low birth weight is linked to later respiratory issues like asthma due to early life adaptations. More research is needed to pinpoint specific fetal and infant exposures causing these adult respiratory diseases.
Area of Science:
- Respiratory Medicine
- Developmental Pediatrics
- Epidemiology
Background:
- Asthma and other respiratory diseases may originate early in life.
- Low birth weight is associated with increased risks of asthma, COPD, and impaired lung function.
- The developmental plasticity hypothesis links early life adaptations to later disease risk.
Purpose of the Study:
- To review adverse fetal and infant exposures and growth patterns linked to respiratory disease.
- To explore genetic susceptibility and epigenetic mechanisms in low birth weight-respiratory disease associations.
- To identify gaps in knowledge and suggest future research directions.
Main Methods:
- Literature review of epidemiological studies and developmental plasticity hypothesis.
- Analysis of pathways involving fetal/infant growth, maternal/child factors, infections, and genetics.
- Synthesis of current understanding on early life influences on adult respiratory health.
Main Results:
- Low birth weight is associated with increased risks of asthma and impaired lung function.
- Adverse fetal/infant exposures (e.g., growth patterns, maternal smoking, infections) may mediate these risks.
- Both environmental and genetic factors, potentially via epigenetic mechanisms, contribute to these associations.
Conclusions:
- The specific early life exposures leading to adult respiratory disease remain unclear.
- Further well-designed epidemiological studies are crucial to elucidate underlying mechanisms.
- Understanding these early life influences can inform preventative strategies for respiratory health.
Abstract:
Previous studies have suggested that asthma, like other common diseases, has at least part of its origin early in life. Low birth weight has been shown to be associated with increased risks of asthma, chronic obstructive airway disease, and impaired lung function in adults, and increased risks of respiratory symptoms in early childhood. The developmental plasticity hypothesis suggests that the associations between low birth weight and diseases in later life are explained by adaptation mechanisms in fetal life and infancy in response to various adverse exposures. Various pathways leading from adverse fetal and infant exposures to growth adaptations and respiratory health outcomes have been studied, including fetal and early infant growth patterns, maternal smoking and diet, children's diet, respiratory tract infections and acetaminophen use, and genetic susceptibility. Still, the specific adverse exposures in fetal and early postnatal life leading to respiratory disease in adult life are not yet fully understood. Current studies suggest that both environmental and genetic factors in various periods of life, and their epigenetic mechanisms may underlie the complex associations of low birth weight with respiratory disease in later life. New well-designed epidemiological studies are needed to identify the specific underlying mechanisms. This review is focused on specific adverse fetal and infant growth patterns and exposures, genetic susceptibility, possible respiratory adaptations and perspectives for new studies.
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