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Evolving Genetic Influences on Infant Growth: Linking Polygenic Scores, IGF-I, and Growth in Infancy
Alexander S Busch1,2, Casper P Hagen2,3, Anders Juul2,3,4
1Department of General Pediatrics, University of Münster, Münster 48149, Germany.
Context:
Infancy is a critical period of rapid growth shaped by genetic, hormonal, and nutritional factors. Genetic influence on growth transitions from genetic variants associated with birth size to variants related to adult body size; however, the timing and developmental trajectory of these changes remain to be determined.
Objective:
To investigate how polygenic scores (PGSs) for birth weight, adult body mass index, height, and circulating levels of IGF-I relate to anthropometric measurements and IGF-I concentrations in healthy infants.
Design:
Longitudinal cohort study: COPENHAGEN Minipuberty Study (2016-2018), with repeated anthropometric and hormonal assessments during the first year of life.
Setting:
Population-based.
Patients Or Other Participants:
A total of 210 healthy, term, singleton newborns (101 female).
Main Outcome Measures:
Age-specific SD scores (SDS) for weight, length/height, and IGF-I serum levels; associations with PGSs and IGF-I levels across infancy.
Results:
PGS for birth weight was associated with birthweight SDS (P < 0.001) but not with weight SDS at ∼1 year (P = .07). In contrast, PGSs for adult body mass index and adult height were associated with weight and height SDS at ∼1 year (P = .03 and P < .001, respectively). PGS for adult IGF-I was not associated with IGF-I SDS at 1 month but was significantly associated at 6 and 12 months (P < .001).
Conclusion:
Genetic influences on growth evolve during infancy. Although the influence of genetic variants associated with birth size diminishes after birth, polygenic scores for adult traits and IGF-I regulation become increasingly relevant-already during early infancy-highlighting a dynamic transition in the genetic architecture underlying infant growth.
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