Author:
Lyons Katriona E.,Shea Carol-Anne O.’,Grimaud Ghjuvan,Ryan C. Anthony,Dempsey Eugene,Kelly Alan L.,Ross R. Paul,Stanton Catherine
Abstract
AbstractWe analysed the human milk microbiome in a cohort of 80 lactating women and followed the dynamics in taxa over the course of lactation from birth to 6 months. Two hundred and thirty one milk samples were collected from full-term lactating women at 1, 4, 8 and 24 weeks following birth and analysed for microbiota composition using 16S rRNA sequencing. A significant decrease in milk microbiota diversity was observed throughout the first 6 months of lactation, with the greatest difference seen between week 8 and week 24. Nine genera predominated in milk over lactation from week 1 to week 24, comprising of Staphylococcus, Streptococcus, Pseudomonas, Acinetobacter, Bifidobacterium, Mesorhizobium, Brevundimonas, Flavobacterium, and Rhodococcus; however, fluctuations in these core genera were apparent over time. There was a significant effect of stage of lactation on the microbiome, while no effect of birth mode, infant sex and maternal BMI was observed throughout lactation. Streptococcus had the highest mean relative abundance at week 1 and 24 (17.3% and 24% respectively), whereas Pseudomonas predominated at week 4 (22%) and week 8 (19%). Bifidobacterium and Lactobacillus had the highest mean relative abundance at week 4 (5% and 1.4% respectively), and occurred at a relative abundance of ≤ 1% at all other time points. A decrease in milk microbiota diversity throughout lactation was also observed. This study concluded that lactation stage was the primary driving factor in milk microbiota compositional changes over lactation from birth to 6 months, while mode of delivery was not a factor driving compositional changes throughout human lactation.
Funder
Science Foudation Ireland
Department of Agriculture, Food and the Marine
Publisher
Springer Science and Business Media LLC
Reference63 articles.
1. World Health Organization. Guideline: Protecting, Promoting and Supporting Breastfeeding in Facilities Providing Maternity and Newborn Services (World Health Organization, 2011).
2. Lessen, R. & Kavanagh, K. Position of the academy of nutrition and dietetics: Promoting and supporting breastfeeding. J. Acad. Nutr. Diet. 115(3), 444–449 (2015).
3. Newburg, D. S. Innate immunity and human milk. J. Nutr. 135(5), 1308–1312 (2005).
4. Ballard, O. & Morrow, A. L. Human milk composition: Nutrients and bioactive factors. Pediatr. Clin. 60(1), 49–74 (2013).
5. Ruangsuriya, J., Malasao, R., Sapbamrer, R., Suppansan, P., Ayood, P., Kittisakmontri, K. & Siviroj, P. Macronutrients, immunoglobulin A and total antioxidant capacity of human milk during prolonged lactation. (2020).
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