Related Experiment Video
Updated: Apr 26, 2026

Instrumentation of Near-term Fetal Sheep for Multivariate Chronic Non-anesthetized Recordings
Published on: October 25, 2015
Polymorphisms in genes within the IGF-axis influence antenatal and postnatal growth
P G Parmar1, J A Marsh1, H Rob Taal2
11 School of Women's and Infants' Health, The University of Western Australia, Perth, WA, Australia.
Insights
Genetic variants in the insulin-like growth factor (IGF)-axis influence fetal and childhood growth. Specific single-nucleotide polymorphisms (SNPs) in IGF-axis genes are linked to both prenatal development and postnatal height and weight trajectories.
Area of Science:
- Human Genetics
- Developmental Biology
- Endocrinology
Background:
- The insulin-like growth factor (IGF)-axis is crucial for regulating fetal and postnatal growth.
- Understanding genetic contributions to growth is vital for identifying developmental influences.
Purpose of the Study:
- To investigate the association between single-nucleotide polymorphisms (SNPs) in IGF-axis genes and antenatal and postnatal growth.
- To identify specific genetic variants influencing fetal development and childhood growth trajectories.
Main Methods:
- Longitudinal analysis of two pregnancy cohorts (Raine and Generation R Study) involving over 3800 participants.
- Genotyping for SNPs within IGF-axis genes and repeated measures of fetal growth (head circumference, abdominal circumference, femur length) and postnatal height and weight from birth to adolescence.
Main Results:
- 40% of IGF-axis SNPs were associated with antenatal growth, with many in IGF-1R and IGF-2R.
- Fifteen SNPs affected antenatal growth in the Raine cohort, with four replicating in the Generation R Study.
- 38% of SNPs were linked to postnatal growth, with 26 SNPs showing associations with both antenatal and postnatal growth.
Conclusions:
- Genetic variants within the IGF-axis significantly impact both fetal development and postnatal growth.
- These findings highlight the role of the IGF-axis in integrating biological knowledge for growth regulation.
- Further research and replication are needed to fully elucidate this critical metabolic pathway.
Abstract:
Two pregnancy cohorts were used to investigate the association between single-nucleotide polymorphisms (SNPs) in genes within the insulin-like growth factor (IGF)-axis and antenatal and postnatal growth from birth to adolescence. Longitudinal analyses were conducted in the Raine pregnancy cohort (n = 1162) using repeated measures of fetal head circumference (HC), abdominal circumference (AC) and femur length (FL) from 18 to 38 weeks gestation and eight measures of postnatal height and weight (1-17 years). Replications of significant associations up to birth were undertaken in the Generation R Study (n = 2642). Of the SNPs within the IGF-axis genes, 40% (n = 58) were associated with measures of antenatal growth (P ⩽ 0.05). The majority of these SNPs were in receptors; IGF-1R (23%; n = 34) and IGF-2R (13%; n = 9). Fifteen SNPs were associated with antenatal growth (either AC or HC or FL) in Raine (P ⩽ 0.005): five of which remained significant after adjusting for multiple testing. Four of these replicated in Generation R. Associations were identified between 38% (n = 55) of the IGF-axis SNPs and postnatal height and weight; 21% in IGF-1R (n = 31) and 9% in IGF-2R (n = 13). Twenty-six SNPs were significantly associated with both antenatal and postnatal growth; 17 with discordant effects and nine with concordant effects. Genetic variants in the IGF-axis appear to play a significant role in antenatal and postnatal growth. Further replication and new analytic methods are required in order to better understand this key metabolic pathway integrating biologic knowledge about the interaction between IGF-axis components.
More Related Videos
09:09Generating a Reproducible Model of Mid-Gestational Maternal Immune Activation using PolyI:C to Study Susceptibility and Resilience in Offspring
Published on: August 17, 2022
05:44Author Spotlight: Collecting the Brain and Serum from the Same Mice Fetus to Study Brain Tumor Development
Published on: May 17, 2024
Related Concept Videos
Nature and Nurture
Genomic Imprinting and Inheritance
The expression of some genes depends on which parent passed the gene to the offspring, through a phenomenon known as...
Pharmacogenetic Phenotypes: Alterations in Pharmacokinetics, Drug Targets and Biologic Milieu
Polygenic Traits
Human Genetics
The complex relationship between genetics and psychology is observable through common biological components such...
Gene-Environment Interactions