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Causal Association Between Birth Weight and Adult Diseases: Evidence From a Mendelian Randomization Analysis
Ping Zeng1, Xiang Zhou2,3
1Department of Epidemiology and Biostatistics, Xuzhou Medical University, Xuzhou, Jiangsu, China.
Insights
Lower birth weight is linked to higher risks of coronary artery disease, myocardial infarction, and type 2 diabetes. This supports the fetal origins of adult diseases hypothesis, highlighting early life impacts on later health.
Area of Science:
- Genetics
- Epidemiology
- Public Health
Background:
- Birth weight significantly influences adult disease risk, a concept known as the fetal origins of adult diseases.
- The precise extent and specific diseases affected by birth weight remain incompletely understood.
Purpose of the Study:
- To investigate the causal relationship between birth weight and various adult diseases using genetic data.
- To determine if the fetal origins of adult diseases hypothesis is supported by genetic evidence.
Main Methods:
- Mendelian randomization analysis was employed, utilizing genetic instruments associated with birth weight.
- Data from 37 large genome-wide association studies (up to 340,000 individuals) were analyzed for 21 adult diseases and 38 complex traits.
- Inverse-variance weighted methods were used for causal effect estimation, with extensive sensitivity analyses for validation.
Main Results:
- Lower birth weight (one standard deviation decrease) was causally associated with increased risks of coronary artery disease (CAD), myocardial infarction (MI), and type 2 diabetes (T2D).
- Odds ratios for these associations ranged from 1.30 to 1.54, with robust findings across sensitivity analyses.
- No mediating complex traits were identified for the causal links between birth weight and CAD/MI/T2D.
Conclusions:
- Lower birth weight is causally linked to elevated risks of CAD, MI, and T2D in adulthood.
- These findings provide strong support for the fetal origins of adult diseases hypothesis.
- The study underscores the long-term health implications of early life development.
Abstract:
Purpose: Birth weight has a profound long-term impact on individual's predisposition to various diseases at adulthood-a hypothesis commonly referred to as the fetal origins of adult diseases. However, it is not fully clear to what extent the fetal origins of adult diseases hypothesis holds and it is also not completely known what types of adult diseases are causally affected by birth weight. Materials and methods: Mendelian randomization using multiple genetic instruments associated with birth weight was performed to explore the causal relationship between birth weight and adult diseases. The causal relationship between birth weight and 21 adult diseases as well as 38 other complex traits was examined based on data collected from 37 large-scale genome-wide association studies with up to 340,000 individuals of European ancestry. Causal effects of birth weight were estimated using inverse-variance weighted methods. The identified causal relationships between birth weight and adult diseases were further validated through extensive sensitivity analyses, bias calculation, and simulations. Results: Among the 21 adult diseases, three were identified to be inversely causally affected by birth weight after the Bonferroni correction. The measurement unit of birth weight was defined as its standard deviation (i.e., 488 g), and one unit lower birth weight was causally related to an increased risk of coronary artery disease (CAD), myocardial infarction (MI), type 2 diabetes (T2D), and BMI-adjusted T2D, with the estimated odds ratios of 1.34 [95% confidence interval (CI) 1.17-1.53], 1.30 (95% CI 1.13-1.51), 1.41 (95% CI 1.15-1.73), and 1.54 (95% CI 1.25-1.89), respectively. All these identified causal associations were robust across various sensitivity analyses that guard against various confounding due to pleiotropy or maternal effects as well as reverse causation. In addition, analysis on 38 additional complex traits did not identify candidate traits that may mediate the causal association between birth weight and CAD/MI/T2D. Conclusions: The results suggest that lower birth weight is causally associated with an increased risk of CAD, MI, and T2D in later life, supporting the fetal origins of adult diseases hypothesis.
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