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Published on: April 16, 2013
Cord Blood Lysophosphatidylcholine 16: 1 is Positively Associated with Birth Weight
Yong-Ping Lu1,2,3, Christoph Reichetzeder1, Cornelia Prehn4
1Institute of Nutritional Science, University of Potsdam, Potsdam-Rehbrücke, Germany.
Insights
Lysophosphatidylcholines (LPCs) are linked to birth weight. Specifically, LPC 16:1 shows a strong, independent association with higher birth weight, offering new insights into fetal growth and health outcomes.
Area of Science:
- Metabolomics
- Perinatal Medicine
- Developmental Biology
Background:
- Low birth weight is linked to later-life hypertension.
- Maternal and fetal metabolism may influence fetal growth and birth outcomes.
- Understanding intrauterine conditions is key to birth outcomes and future disease susceptibility.
Purpose of the Study:
- To investigate associations between maternal/fetal metabolome and fetal growth parameters.
- To explore the relationship between intrauterine conditions, birth outcomes, and later disease risk.
Main Methods:
- Targeted metabolomics using flow injection tandem mass spectrometry on 226 mother/child serum samples.
- Analysis of 163 maternal and fetal metabolites for associations with neonatal birth weight.
Main Results:
- Lysophosphatidylcholines (LPCs) 14:0, 16:1, and 18:1 strongly correlated with birth weight.
- LPC 16:1 demonstrated the strongest independent association with birth weight, surpassing factors like sex and maternal smoking.
- Statistical significance confirmed via FDR adjustment and stepwise linear regression.
Conclusions:
- LPC 16:1 exhibits a robust, independent association with birth weight after controlling for confounders.
- Further research is needed to elucidate the molecular mechanisms connecting fetal LPCs and birth weight.
Background/Aims:
Impaired birth outcomes, like low birth weight, have consistently been associated with increased disease susceptibility to hypertension in later life. Alterations in the maternal or fetal metabolism might impact on fetal growth and influence birth outcomes. Discerning associations between the maternal and fetal metabolome and surrogate parameters of fetal growth could give new insight into the complex relationship between intrauterine conditions, birth outcomes, and later life disease susceptibility.
Methods:
Using flow injection tandem mass spectrometry, targeted metabolomics was performed in serum samples obtained from 226 mother/child pairs at delivery. Associations between neonatal birth weight and concentrations of 163 maternal and fetal metabolites were analyzed.
Results:
After FDR adjustment using the Benjamini-Hochberg procedure lysophosphatidylcholines (LPC) 14: 0, 16: 1, and 18: 1 were strongly positively correlated with birth weight. In a stepwise linear regression model corrected for established confounding factors of birth weight, LPC 16: 1 showed the strongest independent association with birth weight (CI: 93.63 - 168.94; P = 6.94×10-11 ). The association with birth weight was stronger than classical confounding factors such as offspring sex (CI: -258.81- -61.32; P = 0.002) and maternal smoking during pregnancy (CI: -298.74 - -29.51; P = 0.017).
Conclusions:
After correction for multiple testing and adjustment for potential confounders, LPC 16: 1 showed a very strong and independent association with birth weight. The underlying molecular mechanisms linking fetal LPCs with birth weight need to be addressed in future studies.
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