Maternal Nutrition and Body Composition During Breastfeeding: Association with Human Milk Composition.
Agnieszka Bzikowska-JuraAneta Czerwonogrodzka-SenczynaGabriela OlędzkaDorota Szostak-WęgierekHalina WekerAleksandra WesolowskaPublished in: Nutrients (2018)
The composition of human milk is dynamic and can vary according to many maternal factors, such as diet and nutritional status. This study investigated the association of maternal nutrition and body composition with human milk composition. All measurements and analyses were done at three time points: during the first (n = 40), third (n = 22), and sixth (n = 15) month of lactation. Human milk was analyzed using the Miris human milk analyzer (HMA), body composition was measured with bioelectrical bioimpedance (BIA) using a Maltron BioScan 920-II, and the assessment of women's nutrition was based on a three-day dietary record. The correlation coefficient (Pearson's r) did not show a significant statistical relationship between human milk composition and nutrients in women's diet at three time points. For women in the third month postpartum, we observed moderate to strong significant correlations (r ranged from 0.47 to 0.64) between total protein content in milk and the majority of body composition measures as follows: positive correlations: % fat mass (r = 0.60; p = 0.003), fat-free mass expressed in kg (r = 0.63; p = 0.001), and muscle mass (r = 0.47; p = 0.027); and negative correlation: % total body water (r = -0.60; p = 0.003). The variance in milk fat content was related to the body mass index (BMI), with a significant positive correlation in the first month postpartum (r = 0.33; p = 0.048). These findings suggest that it is not diet, but rather the maternal body composition that may be associated with the nutritional value of human milk.
Keyphrases
- human milk
- body composition
- low birth weight
- pregnancy outcomes
- physical activity
- resistance training
- body mass index
- bone mineral density
- preterm infants
- polycystic ovary syndrome
- adipose tissue
- birth weight
- weight loss
- pregnant women
- preterm birth
- fatty acid
- magnetic resonance imaging
- high resolution
- computed tomography
- skeletal muscle
- postmenopausal women
- magnetic resonance
- heavy metals
- insulin resistance
- metabolic syndrome
- high intensity
- high speed
- single molecule
- contrast enhanced