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This study aimed to investigate the influence of newborns' sex on the concentrations of minor and trace elements in the human milk of lactating mothers during early lactation. The elemental analysis focused on calcium (Ca), potassium (K), sodium (Na), and chlorine (Cl) as minor elements and iodine (I), aluminum (Al), bromine (Br), and rubidium (Rb) as trace elements. Breast milk samples were collected from 75 lactating mothers in Tehran, Iran, during the early feeding stage. Neutron activation analysis was used to quantify elemental amounts in milk samples, and tests were conducted to identify statistical differences in element levels between mothers of male and female newborns. Statistically significant differences in the elemental composition of milk samples were found based on newborn infants' sex. Mothers of female newborns had notably higher mean levels of Br (14.8 mg/kg versus 11.3 mg/kg, = 0.011), Cl (10.16 mg/g versus 7.10 mg/g, = 0.009), and Na (6.18 mg/g versus 4.45 mg/g, = 0.017) compared with mothers with male newborns. Although Ca, K, I, Al, and Rb did not show statistically substantial differences, there was a trend toward elevated levels of Al, I, and Ca in the milk of mothers with the females. The analysis reveals sex-based variations in human milk composition, with elevated levels of Br, Cl, and Na observed in mothers of female newborns. These findings suggest that infant sex may influence the elemental profile of maternal milk, highlighting the need for further research to uncover the mechanisms behind these differences and their potential implications for improving infant nutrition and health.
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http://dx.doi.org/10.1089/bfm.2024.0226 | DOI Listing |
Sci Adv
September 2025
Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, San Francisco, CA, USA.
Breastfeeding is essential for reducing infant morbidity and mortality, yet exclusive breastfeeding rates remain low, often because of insufficient milk production. The molecular causes of low milk production are not well understood. Fresh milk samples from 30 lactating individuals, classified by milk production levels across postpartum stages, were analyzed using genomic and microbiome techniques.
View Article and Find Full Text PDFFood Funct
September 2025
Department of Animal Nutrition, College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China.
Sheep milk has gained increasing attention for its compositional similarity to human milk and its abundance of bioactive compounds with nutritional and therapeutic potential. It is rich in proteins, essential fatty acids, vitamins, minerals, immunoglobulins, and hormones, as well as peptides and oligosaccharides with antiviral, antibacterial, anti-inflammatory, and immune-modulatory effects. Despite these benefits, the literature remains fragmented, with limited integration of data on the mechanisms by which these components influence health outcomes, and few comprehensive comparisons with other mammalian milks.
View Article and Find Full Text PDFNucleic Acids Res
September 2025
Department of Genetics, University of Cambridge, Cambridge CB2 3EH, United Kingdom.
The mammary gland, which primarily develops postnatally, undergoes significant changes during pregnancy and lactation to facilitate milk production. Through the generation and analysis of 480 transcriptomes, we provide the most detailed allelic expression map of the mammary gland, cataloguing cell-type-specific expression from ex-vivo purified cell populations over 10 developmental stages, enabling comparative analysis. The work identifies genes involved in the mammary gland cycle, parental-origin-specific and genetic background-specific expression at cellular and temporal resolution, genes associated with human lactation disorders and breast cancer.
View Article and Find Full Text PDFRes Vet Sci
September 2025
Interdisciplinary Laboratory of Clinical Pathology, Interlab-UMU, Campus of Excellence Mare Nostrum, University of Murcia, 30100 Murcia, Spain. Electronic address:
Recent years have seen advances in clinical biochemistry of domestic animals which have highlighted comparative differences between species and have also identified fundamental aspects of the biochemical mechanisms in physiological conditions and disease, that have implications across species, including human, health and welfare. From investigations in diverse species using biochemical, immunological, proteomic and metabolomic approaches a series of species particularities and unexpected results for some biomarkers have been made. These observations cover (1) the differences between species in the acute phase protein (APP) response to infection and inflammation; (2) the non-hepatic synthesis and release in the mammary gland, adipose tissue and intestine of APP (3) the response of haptoglobin (HP) as a biomarker for stress; (4) observations in non-mammalian species related to hemopexin and HP; (5) the response of bile acids in milk to mastitis; (6) barley serine protease inhibitors being identified in bovine faeces; (7) alkaline phosphatase being present in bovine nasal secretion; (8) saliva findings with analytes such as adenine deaminase showing different activity between saliva and serum and a detergent-like surfactant protein, latherin being found in equine saliva and sweat and (9) serum enzymes and selective muscle protein reaction of Atlantic salmon as an example of the differences in biochemistry between terrestrial and aquatic species.
View Article and Find Full Text PDFProbiotics Antimicrob Proteins
September 2025
Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247 667, India.
Ethnic fermented foods represent a significant repository for discovering novel probiotic entities. These fermented foods, entrenched in indigenous practices, have conserved a distinct microbiota through generations. Exploration of these fermented foods could yield microbial consortia capable of transforming human health.
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