Spina bifida as a multifactorial birth defect: Risk factors and genetic underpinnings
Ethan S Wong1, Daniel A Hu1,2, Lily Zhang1
1Molecular Oncology Laboratory Department of Orthopaedic Surgery and Rehabilitation Medicine The University of Chicago Medical Center Chicago IL USA.
Insights
Spina bifida, a neural tube defect, is influenced by complex genetic and environmental factors. Understanding these interactions is key to developing effective prevention strategies for this birth defect.
Area of Science:
- Developmental Biology
- Genetics
- Environmental Health
Background:
- Spina bifida is a severe birth defect impacting neural tube development.
- Myelomeningocele, the most severe subtype, significantly affects quality of life.
- Etiology is complex, involving numerous unknown genetic and environmental factors.
Purpose of the Study:
- Review current research on spina bifida risk factors and genetics.
- Elucidate the complex etiology of this congenital malformation.
- Highlight emerging insights into gene-environment interactions.
Main Methods:
- Literature review of recent studies on spina bifida.
- Analysis of genetic and environmental risk factors.
- Discussion of new genetic sequencing technologies.
Main Results:
- Folic acid and food fortification are preventive but insufficient due to confounding factors.
- Environmental pollutants, medications, and maternal conditions (diabetes, obesity) impact prevalence.
- Gene-environment interactions influence susceptibility to risk factors.
Conclusions:
- Understanding intricate gene-environment interactions is crucial for spina bifida prevention.
- New genetic technologies offer potential for large-scale gene discovery.
- Effective prevention and intervention strategies require a comprehensive understanding of multifactorial risks.
Abstract:
Spina bifida is a birth defect resulting from abnormal embryonic development of the neural tube. Though spina bifida is divided into several subtypes, myelomeningocele-the most severe form of spina bifida often associated with a markedly diminished quality of life-accounts for a significant portion of cases. A broad range of genetic and environmental factors, many of which are still unknown, influence spina bifida, making it difficult to provide a comprehensive etiology for the disorder. Folic acid supplementation aided by the mandatory fortification of food is preventive; still, spina bifida persists due to numerous other confounding factors that affect risk. This article reviews the latest studies pertaining to the risk factors and genetics involved in spina bifida in an attempt to elucidate the complex background of the congenital malformation. Additionally, this review highlights the significant impact of environmental pollutants, adverse medication effects, and maternal health conditions such as diabetes and obesity on the prevalence of spina bifida. Emerging research on gene-environment interactions provides insight into how specific genetic variants may influence susceptibility to these environmental factors. We also discuss new technologies in genetic sequencing that show promise for the large-scale discovery of genes associated with spina bifida risk. Understanding these intricate interactions is crucial for developing effective prevention and intervention strategies.
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