Associations of cord blood metabolites with early childhood obesity risk

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Associations of cord blood metabolites with early childhood obesity risk

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Title: Associations of cord blood metabolites with early childhood obesity risk
Author: Isganaitis, Elvira; Rifas-Shiman, Sheryl L.; Oken, Emily; Dreyfuss, Jonathan; Gall, Walt; Gillman, Matthew W.; Patti, Mary-Elizabeth

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Citation: Isganaitis, Elvira, Sheryl L. Rifas-Shiman, Emily Oken, Jonathan Dreyfuss, Walt Gall, Matthew W. Gillman, and Mary-Elizabeth Patti. 2015. “Associations of cord blood metabolites with early childhood obesity risk.” International journal of obesity (2005) 39 (7): 1041-1048. doi:10.1038/ijo.2015.39.
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Abstract: Background/Objective Rapid postnatal weight gain is a potentially modifiable risk factor for obesity and metabolic syndrome. To identify markers of rapid infancy weight gain and childhood obesity, we analyzed the metabolome in cord blood from infants differing in their postnatal weight trajectories. Methods: We performed a nested case-control study within Project Viva, a longitudinal cohort of mothers and children. We selected cases (n=26) based on top quartile of change in weight-for-age 0-6 mo and BMI >85th percentile in mid-childhood (median 7.7 years). Controls (n=26) were age- and sex-matched, had normal postnatal weight gain (2nd or 3rd quartile of change in weight-for-age 0-6 mo) and normal mid-childhood weight (BMI 25th-75th percentile). Cord blood metabolites were measured using untargeted LC/MS; individual metabolites and pathways differing between cases vs. controls were compared in categorical analyses. We adjusted metabolites for maternal age, maternal BMI, and breastfeeding duration (linear regression), and assessed whether metabolites improved the ability to predict case-control status (logistic regression). Results: Of 415 detected metabolites, 16 were altered in cases vs. controls (T-test, nominal P<0.05). 3 metabolites were related to tryptophan: serotonin, tryptophan betaine, and tryptophyl leucine (46%, 48% and 26% lower in cases, respectively, P<0.05). Mean levels of 2 methyl donors, dimethylglycine and N-acetylmethionine, were also lower in cases (18% and 16% respectively, P=0.01). Moreover, the glutamine:glutamate ratio was reduced by 33% (P<0.05) in cases. Levels of serotonin, tryptophyl leucine, and N-acetylmethionine remained significantly different after adjustment for maternal BMI, age, and breastfeeding. Adding metabolite levels to logistic regression models including only clinical covariates improved the ability to predict case vs. control status. Conclusions: Several cord blood metabolites are associated with rapid postnatal weight gain. Whether these patterns are causally linked to childhood obesity is not clear from this cross-sectional analysis, but will require further study.
Published Version: doi:10.1038/ijo.2015.39
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