Increasing maternal age is associated with taller stature and reduced abdominal fat in their children
Tim Savage1, José G B Derraik, Harriet L Miles
1Liggins Institute, University of Auckland, Auckland, New Zealand.
Insights
Children born to older mothers (>30 years) tend to be taller and leaner, with reduced abdominal fat. Girls born to mothers aged 30-35 also show improved insulin sensitivity, indicating a more favorable childhood phenotype.
Area of Science:
- Pediatric Endocrinology
- Reproductive Health
- Human Growth and Development
Background:
- Global trend of increasing maternal age at childbirth.
- Need to assess the impact of advanced maternal age on offspring health outcomes.
Purpose of the Study:
- To investigate the association between maternal age at childbirth and childhood height, body composition, and metabolic profiles.
- To determine if increasing maternal age influences key growth and metabolic markers in pre-pubertal children.
Main Methods:
- Study included 277 healthy pre-pubertal children (37-41 weeks gestation).
- Evaluations encompassed height, weight, DEXA-derived body composition, and metabolic/hormonal profiles.
- Children were stratified by maternal age at childbirth: <30, 30-35, and >35 years.
Main Results:
- Children born to mothers >35 and 30-35 years were taller (0.26 and 0.23 SDS, respectively) than those born to mothers <30 years.
- Increasing maternal age correlated with reduced childhood Body Mass Index SDS (BMISDS) and abdominal adiposity (10-13% reduction in older groups).
- Offspring of mothers aged 30-35 showed increased IGF-I (19%) and improved insulin sensitivity (HOMA-IR in girls), while IGF-II concentrations were lower in older maternal age groups.
Conclusions:
- Advanced maternal age (>30 years) is linked to a favorable childhood phenotype, characterized by taller stature and reduced abdominal fat.
- Improved insulin sensitivity was observed in girls born to mothers aged 30-35 years.
- Maternal age at childbirth is associated with significant changes in offspring growth and metabolic parameters.
Background:
Maternal age at childbirth continues to increase worldwide. We aimed to assess whether increasing maternal age is associated with changes in childhood height, body composition, and metabolism.
Methods:
277 healthy pre-pubertal children, born 37-41 weeks gestation were studied. Assessments included: height and weight corrected for parental measurements, DEXA-derived body composition, fasting lipids, glucose, insulin, and hormonal profiles. Subjects were separated according to maternal age at childbirth: <30, 30-35, and >35 years.
Results:
Our cohort consisted of 126 girls and 151 boys, aged 7.4 ± 2.2 years (range 3-10); maternal age at childbirth was 33.3 ± 4.7 years (range 19-44). Children of mothers aged >35 and 30-35 years at childbirth were taller than children of mothers aged <30 years by 0.26 (p = 0.002) and 0.23 (p = 0.042) SDS, respectively. There was a reduction in childhood BMISDS with increasing maternal age at childbirth, and children of mothers aged >35 years at childbirth were 0.61 SDS slimmer than those of mothers <30 years (p = 0.049). Children of mothers aged 30-35 (p = 0.022) and >35 (p = 0.036) years at childbirth had abdominal adiposity reduced by 10% and 13%, respectively, compared to those in the <30 group. Children of mothers aged 30-35 years at childbirth displayed a 19% increase in IGF-I concentrations compared to offspring in <30 group (p = 0.042). Conversely, IGF-II concentrations were lower among the children born to mothers aged 30-35 (6.5%; p = 0.004) and >35 (8.1%; p = 0.005) compared to those of mothers aged <30 years. Girls of mothers aged 30-35 years at childbirth also displayed improved HOMA-IR insulin sensitivity (p = 0.010) compared to girls born to mothers aged <30 years.
Conclusions:
Increasing maternal age at childbirth is associated with a more favourable phenotype (taller stature and reduced abdominal fat) in their children, as well as improved insulin sensitivity in girls.
Related Concept Videos
Signs of Puberty
Nature and Nurture
The Effect of Aging on Tissues
Obesity
Changes in the Appendicular Skeleton with Age
Initially, the limb buds consist of a core of mesenchyme covered by a layer of ectoderm. The ectoderm at the end of the limb bud thickens to form a narrow crest called the apical ectodermal ridge. This ridge stimulates the underlying...
Development of Human Microbiota


