Delayed Motor Milestones Achievement in Infancy Associates with Perturbations of Amino Acids and Lipid Metabolic Pathways

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The relationship between developmental milestone achievement in infancy and later cognitive function and mental health is well established, but underlying biochemical mechanisms are poorly described. Our study aims to discover pathways connected to motor milestone achievement during infancy by using untargeted plasma metabolomic profiles from 571 six-month-old children in connection with age of motor milestones achievement (Denver Developmental Index) in the Copenhagen Prospective Studies on Asthma in Childhood 2010 (COPSAC2010) mother-child cohort. We used univariate regression models and multivariate modelling (Partial Least Squares Discriminant Analysis: PLS-DA) to examine the associations and the VDAART (Vitamin D Antenatal Asthma Reduction Trial) cohort for validation. The univariate analyses showed 62 metabolites associated with gross-motor milestone achievement (p<0.05) as well as the PLS-DA significantly differentiated between slow and fast milestone achievers (AUC = 0.87,p= 0.01). Higher levels of tyramine-O-sulfate in the tyrosine pathway were found in the late achievers in COPSAC (p= 0.0002) and in VDAART (p= 0.02). Furthermore, we observed that slow achievers were characterized by higher levels of fatty acids and products of fatty acids metabolism including acyl carnitines. Finally, we also observed changes in the lysine, histidine, glutamate, creatine and tryptophan pathways. Observing these metabolic changes in relation to gross-motor milestones in the first year of life, may be of importance for later cognitive function and mental health.

Original languageEnglish
Article number337
JournalMetabolites
Volume10
Issue number9
Number of pages15
ISSN2218-1989
DOIs
Publication statusPublished - 2020

    Research areas

  • motor milestones, metabolomics, children, neurodevelopment, HYDROXYLYSYL GLYCOSIDES, SCHIZOPHRENIA, BIOMARKERS, EXERCISE, IDENTIFICATION, CREATININE, MUTATION, COLLAGEN, SERUM, LEADS

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