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Updated: Jan 1, 2026

FISH for Pre-implantation Genetic Diagnosis
Published on: February 23, 2011
Recent advances in the genetics of preterm birth
Megan Wadon1, Neena Modi2, Hilary S Wong3
1MRC Centre for Neuropsychiatric Genetics and Genomics, Institute of Psychological Medicine and Clinical Neurosciences, Cardiff University School of Medicine, Cardiff, Wales.
Insights
Preterm birth, a growing public health concern, has environmental and genetic causes. Future research needs larger genetic studies to understand its complex heritability and impacts.
Area of Science:
- Genetics
- Public Health
- Developmental Biology
Background:
- Preterm birth leads to lifelong physical, cognitive, and neuropsychiatric impairments.
- Rising preterm birth rates and increased survival exacerbate its public health impact.
- While environmental factors contribute, preterm birth has a modest genetic heritability.
Purpose of the Study:
- To explore the genetic architecture of preterm birth.
- To identify genetic risk factors in both maternal and fetal genomes.
- To highlight the need for larger genetic studies and gene-environment interaction research.
Main Methods:
- Analysis of common and rare genetic variations.
- Examination of maternal and fetal genomic data.
- Review of existing literature on preterm birth genetics.
Main Results:
- Recent findings implicate genetic variations in both maternal and fetal genomes.
- Maternal risk alleles may involve immune and inflammatory processes.
- Fetal risk alleles may relate to brain development processes.
Conclusions:
- Genomic discoveries for preterm birth lag behind other multifactorial diseases.
- Gene-environment interaction studies are limited but offer potential insights.
- Larger genetic studies are a priority to understand preterm birth's complex etiology and lifelong health impacts.
Abstract:
Preterm birth is associated with short- and long-term impairments affecting physical, cognitive, and neuropsychiatric health. These sequelae, together with a rising preterm birth rate and increased survival, make prematurity a growing public health issue because of the increased number of individuals with impaired health throughout the life span. Although a major contribution to preterm birth comes from environmental factors, it is also modestly heritable. Little is known about the architecture of this genetic contribution. Studies of common and of rare genetic variation have had limited power, but recent findings implicate variation in both the maternal and fetal genome. There is some evidence risk alleles in mothers may be enriched for processes related to immunity and inflammation, and in the preterm infant, processes related to brain development. Overall genomic discoveries for preterm birth lag behind progress for many other multifactorial diseases and traits. Investigations focusing on gene-environment interactions may also provide insights, but these studies still have a number of limitations. Adequately sized genetic studies of preterm birth are a priority for the future especially given the breadth of its negative health impacts across the life span and the current interest in newborn genome sequencing.
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