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Maternal antenatal health and infant growth outcomes: a Microbiome Understanding in Maternity Study
Emily Stevenson1, Daniella Susic1, Maria E Craig2,3,4
1Discipline of Women's Health, School of Clinical Medicine, UNSW Faculty of Medicine and Health, Sydney, NSW, Australia.
Insights
Maternal cardiometabolic health and lifestyle significantly influence infant growth. A healthier maternal lifestyle and better cardiometabolic markers are linked to improved infant growth during the first year of life.
Area of Science:
- Maternal and child health
- Human growth and development
- Cardiometabolic health
Background:
- The antenatal environment's impact on infant development post-neonatal period requires further understanding.
- Maternal cardiometabolic health and lifestyle are potential modulators of infant growth trajectories.
Purpose of the Study:
- To investigate associations between maternal cardiometabolic health and lifestyle factors with infant growth during the first year of life.
- To analyze the influence of maternal weight, gestational weight gain (GWG), diet quality, and physical activity on infant growth parameters.
Main Methods:
- A sub-study of the Microbiome Understanding in Maternity Study involving 87 mother-infant dyads.
- Maternal anthropometrics, cardiometabolic risk markers, lifestyle (diet, physical activity), and infant anthropometrics were collected longitudinally.
- Multiple linear regression analyses were performed to assess associations, adjusting for confounders.
Main Results:
- Maternal weight and gestational weight gain (GWG) were positively associated with infant growth from 0-6 months.
- Higher maternal fat mass correlated with increased infant conditional weight gain (CWG) from 6 weeks to 6 months.
- Improved maternal diet quality and increased physical activity were linked to enhanced infant growth (weight and length z-score changes, CWG) throughout the first year.
Conclusions:
- Maternal cardiometabolic health markers and healthier lifestyle choices are associated with improved infant growth.
- These findings highlight the importance of the maternal antenatal environment for infant development beyond the neonatal period.
- Further research is needed to confirm these associations and explore links to long-term infant health outcomes.
Abstract:
The influence of the maternal antenatal environment on infant growth and development beyond the neonatal period is not well understood. This study investigated associations between maternal cardiometabolic health and lifestyle on infant growth during the first year of life. This sub-study of the longitudinal Microbiome Understanding in Maternity Study included 87 mother-infant dyads. Maternal anthropometrics were collected at each trimester. Lifestyle was assessed through the Australian Eating Survey (Trimester T1 and T3) and International Physical Activity Questionnaire (T1, T2 and T3). Infant anthropometrics were measured at birth, 6 weeks, 6 months and 12 months. Changes in weight, weight-for-age z-score, length-for-age z-score, rapid weight gain and conditional weight gain (CWG) were determined. Multiple linear regression was used to assess associations between maternal parameters and infant growth, adjusting for common confounders. Maternal T1 weight (CWG: p = 0.03), T3 weight (CWG: p = 0.03) and GWG (weight z-score change: p = 0.031) were positively associated with increased infant growth from 0 to 6 months. Greater maternal fat mass was associated with increased CWG (p = 0.042) from 6 weeks to 6 months. Higher quality maternal T1 diet was associated with increased infant growth (weight z-score change: p = 0.022, CWG: p = 0.013) from 0 to 12 months. Increased maternal physical activity was associated with increased CWG (p = 0.022) and length z-score change (p = 0.024) from 0 to 12 months in T1, and increased CWG from 6 to 12 months in T2 (p = 0.014) and T3 (p = 0.047). Markers of maternal cardiometabolic health risk and healthier lifestyle were associated with increased infant growth. Further investigation is required to confirm findings and investigate links with future health sequelae.
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