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Updated: May 6, 2026

Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Association between maternal folate concentrations during pregnancy and insulin resistance in Indian children
Ghattu V Krishnaveni1, Sargoor R Veena, Samuel C Karat
1Epidemiology Research Unit, CSI Holdsworth Memorial Hospital, P.O. Box 38, Mandi Mohalla, Mysore, 570021, India, gv.krishnaveni@gmail.com.
Insights
Maternal homocysteine and folate levels during pregnancy impact offspring
Area of Science:
- Nutritional Epidemiology
- Developmental Biology
- Metabolic Health
Background:
- Maternal nutrient status during pregnancy influences fetal development and long-term health.
- Disruptions in one-carbon metabolism have been linked to adverse birth outcomes and later metabolic risks.
Purpose of the Study:
- To investigate the associations between maternal B12, folate, and homocysteine concentrations and offspring anthropometry, glucose, and insulin resistance.
- To explore the role of one-carbon metabolism in fetal programming of metabolic disease in an Indian birth cohort.
Main Methods:
- Plasma concentrations of vitamin B12, folate, and homocysteine were measured in 654 pregnant women.
- Offspring anthropometry, glucose, and insulin levels were assessed at ages 5, 9.5, and 13.5 years.
- Insulin resistance was calculated using the Homeostatic Model Assessment for Insulin Resistance (HOMA-IR).
Main Results:
- Higher maternal homocysteine was linked to lower birth weight and higher offspring glucose levels.
- Elevated maternal folate concentrations correlated with increased insulin resistance in offspring at later ages.
- Maternal vitamin B12 levels showed no significant association with offspring metabolic outcomes.
Conclusions:
- Maternal homocysteine and folate, but not vitamin B12, are associated with birth size and childhood metabolic health.
- Nutritional influences on one-carbon metabolism during gestation may play a role in the fetal programming of diabetes.
- These findings highlight the importance of maternal nutrient status for offspring metabolic programming.
Aims/Hypothesis:
In an Indian birth cohort, higher maternal homocysteine concentration in pregnancy was associated with lower birthweight of the offspring. Lower maternal vitamin B12 and higher folate concentrations were associated with higher offspring insulin resistance. Disordered one-carbon metabolism during early development may increase later metabolic risk. We explored these associations in another birth cohort in India at three age points.
Methods:
We measured plasma vitamin B12, folate and homocysteine concentrations at 30 ± 2 weeks' gestation in 654 women who delivered at one hospital. Neonatal anthropometry was recorded, and the children's glucose and insulin concentrations were measured at 5, 9.5 and 13.5 years of age. Insulin resistance was estimated using HOMA of insulin resistance (HOMA-IR).
Results:
Maternal homocysteine concentrations were inversely associated with all neonatal anthropometric measurements (p < 0.05), and positively associated with glucose concentrations in the children at 5 (30 min; p = 0.007) and 9.5 years of age (120 min; p = 0.02). Higher maternal folate concentrations were associated with higher HOMA-IR in the children at 9.5 (p = 0.03) and 13.5 years of age (p = 0.03). Maternal vitamin B12 concentrations were unrelated to offspring outcomes.
Conclusions/Interpretation:
Maternal vitamin B12 status did not predict insulin resistance in our cohort. However, associations of maternal homocysteine and folate concentrations with birth size, and with childhood insulin resistance and glycaemia in the offspring, suggest a role for nutritionally driven disturbances in one-carbon metabolism in fetal programming of diabetes.
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