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Pre-Pregnancy BMI and Gestational Weight Gain Have Independent Associations with Birth Weight: A Prospective Cohort
Nomin-Erdene Minjuurdorj1, Enkhtsetseg Jamsranjav2, Orgil Zorigtbaatar3
1Department of Endocrinology, School of Medicine, Mongolian National University of Medical Sciences, Ulaanbaatar 14210, Mongolia.
Insights
Maternal pre-pregnancy body mass index (BMI) and gestational weight gain (GWG) independently impact neonatal birth weight. Optimizing maternal weight before and during pregnancy is crucial for healthy infant outcomes.
Area of Science:
- Maternal-fetal medicine
- Public health nutrition
- Epidemiology
Background:
- Neonatal birth weight is critical for infant health.
- Pre-pregnancy body mass index (BMI) and gestational weight gain (GWG) influence birth weight.
- Independent associations of BMI and GWG with birth weight are unclear, especially where GWG guidelines are absent.
Purpose of the Study:
- To investigate the independent associations of pre-pregnancy BMI and GWG with neonatal birth weight.
- To analyze these associations in a Mongolian cohort lacking national GWG guidelines.
Main Methods:
- Prospective cohort study of 340 pregnant women in Ulaanbaatar, Mongolia.
- Data collection via questionnaires and anthropometric measurements.
- Multivariable linear regression to assess independent associations with birth weight.
Main Results:
- Both pre-pregnancy BMI and GWG were independently associated with neonatal birth weight (p < 0.001).
- Higher BMI and GWG were linked to increased birth weight.
- Overweight/obesity and excessive GWG were associated with higher birth weight; inadequate GWG with lower birth weight.
Conclusions:
- Pre-pregnancy BMI and GWG are independent predictors of neonatal birth weight, with GWG having a slightly stronger effect.
- Maternal weight optimization before and during pregnancy is vital.
- Developing context-specific GWG guidelines is recommended for countries with nutritional transitions.
Abstract:
Background: Neonatal birth weight is a key determinant of short- and long-term health outcomes. Pre-pregnancy body mass index (BMI) and gestational weight gain (GWG) are important predictors of birth weight; however, their independent associations remain unclear, particularly in settings where national GWG guidelines are lacking. Methods: A prospective cohort study was conducted among 340 pregnant women in Ulaanbaatar, Mongolia in 2022. Data were collected using standardized questionnaires and anthropometric measurements. Pre-pregnancy BMI and GWG were classified according to World Health Organization criteria and the 2009 Institute of Medicine guidelines. Multivariable linear regression models were used to examine independent associations with neonatal birth weight. Results: The mean maternal age, pre-pregnancy BMI, and GWG were 30.3 ± 6.0 years, 23.5 ± 4.4 kg/m2, and 14.3 ± 6.2 kg, respectively. Both BMI and GWG were independently associated with neonatal birth weight (p < 0.001), with no significant interaction observed (p = 0.147). Birth weight increased by 29.7 g (95% CI: 18.6-40.8) per 1 kg/m2 increase in BMI and by 31.7 g (95% CI: 24.0-39.4) per 1 kg increase in GWG. Compared with normal BMI, overweight/obesity was associated with higher birth weight, while excessive GWG increased and inadequate GWG decreased birth weight (all p < 0.05). Conclusions: Pre-pregnancy BMI and GWG were independently associated with neonatal birth weight, with GWG showing a slightly stronger association. These findings highlight the importance of optimizing maternal weight before and during pregnancy. Countries undergoing rapid nutritional transitions may benefit from developing context-specific GWG guidelines, with Mongolia representing a relevant example.
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