5 põhjust, miks on rinnapiim beebile parim I Milline tähtsus on soolestiku mikrobioomil?
Kasutatud allikad:
- Abenavoli, L., Scarpellini, E., Colica, C., Boccuto, L., Salehi, B., Sharifi-Rad, J., et al. (2019). Gut microbiota and obesity: a role for probiotics. Nutrients, 11, 2690. doi: 10.3390/nu11112690.
- AL‑Nawaiseh, F. K., Al‑Jaghbir, M. T., AL‑Assaf, M. S., AL‑Nawaiseh, H. K., Alzoubi, M. M. (2022). Breastfeeding initiation and duration and acute otitis media among children less than two years of age in Jordan: results from a case–control study. BMC Pediatrics, 22, 370. https://doi.org/10.1186/s12887‑022‑03427‑7.
- Alotiby, A. A. (2023). The role of breastfeeding as a protective factor against the development of the immune-mediated diseases: A systematic review. Front. Pediatr, 11, 1086999. doi: 10.3389/fped.2023.1086999.
- Ames, S. R., Lotoskia, L. C., Azad, M. B. (2023). Comparing early life nutritional sources and human milk feeding practices: personalized and dynamic nutrition supports infant gut microbiome development and immune system maturation. Gut microbes, 5(1), 2190305. https://doi.org/10.1080/19490976.2023.2190305.
- Bakshi, S., Paswan, V. K., Yadav, S. P., Bhinchhar, B. K., Kharkwal, S., Rose, H., Kanetkar, P., Kumar, V., Al-Zamani, Z. A. S., Bunkar, D. S. (2023). A comprehensive review on infant formula: nutritional and functional constituents, recent trends in processing and its impact on infants’ gut microbiota. Front. Nutr, 10, 1194679. doi: 10.3389/fnut.2023.1194679.
- Berger, P. K., Ong, M. L., Bode, L., Belfort, M. B. (2023). Human Milk Oligosaccharides and Infant Neurodevelopment: A Narrative Review. Nutrients, 15, 719. https://doi.org/10.3390/nu15030719.
- Bertin, B., Foligne, B., Ley, D., Lesage, J., Beghin, L., Morcel, J., Gottrand, F., Hermann, E. (2023). An Overview of the Influence of Breastfeeding on the Development of Inflammatory Bowel Disease. Nutrients, 15, 5103. https://doi.org/10.3390/nu15245103.
- Bervoets, L., Hoorenbeeck, K. V., Kortleven, I., Van Noten, C., Hens, N., Vael, C., Goossens, H., Desager, K. N., Vankerckhoven, V. (2013). Differences in gut microbiota composition between obese and lean children: a cross-sectional study. Gut Pathog, 5, 10. doi: 10.1186/1757-4749-5-10.
- Borg, B., Gribble, K., Courtney-Haag, K., Parajuli, K. R., Mihrshahi, S. (2022). Association between early initiation of breastfeeding and reduced risk of respiratory infection: Implications for nonseparation of infant and mother in the COVID‐19 context. Matern Child Nutr, 18, e13328. doi: 10.1111/mcn.13328.
- Bowatte, G., Tham, R., Allen, K. J., Tan, D. J., Lau, M. X. Z., Dai, X., Lodge, C. J. (2015). Breastfeeding and childhood acute otitis media: a systematic review and meta-analysis. Acta Pædiatrica, 104, 85–95. doi:10.1111/apa.13151.
- Brockway, M., Daniel, A. I., Reyes, S. M., Gauglitz, J. M., Granger, M., McDermid, J. M., Chan, D., Refvik, R., Sidhu, K. K., Musse, S., Patel, P. P., Monnin, C., Lotoski, L., Geddes, D. T., Jehan, F., Kolsteren, P., Bode, L., Eriksen, K. G., Allen, L. H., Hampel, D., Rodriguez, N., Azad, M. B. (2023). Human Milk Bioactive Components and Child Growth and Body Composition in the First 2 Years: A Systematic Review. Advances in Nutrition, 15, 100127. https://doi.org/10.1016/j.advnut.2023.09.015
- Bäckhed, F., Roswall, J., Peng, Y., Feng, Q., Jia, H., Kovatcheva-Datchary, P., Li, Y., Xia, Y., Xie, H., Zhong, H., et al. (2015). Dynamics and stabilization of the human gut microbiome during the first year of life. Cell Host Microbe, 17, 690–703. https://doi.org/10.1016/j.chom.2015.04.004
- Chai, C., Oh, S., Imm, J. (2022). Roles of Milk Fat Globule Membrane on Fat Digestion and Infant Nutrition. Food Sci. Anim. Resour, 42(3), 351-371. doi: https://doi.org/10.5851/kosfa.2022.e11.
- Chatelier, E. L., Nielsen, T., Qin, J., Prifti, E., Hildebrand, F., Falony, G., et al. (2013). Richness of human gut microbiome correlates with metabolic markers. Nature, 500, 541 - 546. doi: 10.1038/nature12506.
- Chong, H., Tan, L. T., Law, J. W., Hong, K., Ratnasingam, V., Mutalib, N. A., Lee, L., Letchumanan, V. (2022). Exploring the Potential of Human Milk and Formula Milk on Infants’ Gut and Health. Nutrients, 14, 3554. https://doi.org/10.3390/nu14173554.
- Christian, P., Smith, E. R., Lee, S. E., Vargas, A. J., Bremer, A. A., Raiten, D. J. (2021). The need to study human milk as a biological system. Am J Clin Nutr, 113, 1063–1072. doi: 10.1093/ajcn/nqab075.
- Darma, A., Sumitro, K. R., Jo, J., Sitorus, N. (2024). Lactose Intolerance versus Cow’s Milk Allergy in Infants: A Clinical Dilemma. Nutrients, 16, 414. https://doi.org/10.3390/nu16030414.
- Davis, E. C., Castagna, V. P., Sela, D. A., Hillard, M. A., Lindberg, S., Mantis, N. J., Seppo, A. E., Järvinen, K. M. (2022). Gut Microbiome and Breast-feeding: Implications for Early Immune Regulation. J Allergy Clin Immunol, 150(3), 523–534. doi: 10.1016/j.jaci.2022.07.014.
- Deal, B. J., Huffman, M. D., Binns, H., Stone, N. J. (2020). Perspective: Childhood Obesity Requires New Strategies for Prevention. Adv Nutr, 11, 1071–1078. doi: https://doi.org/10.1093/advances/nmaa040.
- Dombrowska-Pali, A., Wiktorczyk-Kapischke, N., Chrustek, A., Olszewska-Słonina, D., Gospodarek-Komkowska, E., Socha, M.W. (2024). Human Milk Microbiome - A Review of Scientific Reports. Nutrients, 16, 1420. https://doi.org/10.3390/nu16101420.
- Donald, K., Serapio-Palacios, A., Gerbec, Z., Cruz, A. R., Schnupf, P., Finlay, B. B. (2024). Secretory IgA in breast milk protects against asthma through modulation of the gut microbiota. Cell Reports, 43, 114835. https://doi.org/10.1016/j.celrep.2024.114835.
- Forbes, J. D., Azad, M. B., Vehling, L., Tun, H. M., Konya, T. B., Guttman, D. S., Field, C. J., Lefebvre, D., Sears, M. R., Becker, A. B., et al. (2018). Association of Exposure to Formula in the Hospital and Subsequent Infant Feeding Practices with Gut Microbiota and Risk of Overweight in the First Year of Life. JAMA Pediatr, 172, e181161. doi: 10.1001/jamapediatrics.2018.1161.
- Gilbert, J. A., Blaser, M. J., Caporaso, J. G., Jansson, J. K., Lynch, S. V., Knight, R. (2018). Current understanding of the human microbiome. Nat Med, 24, 392–400. https://doi.org/10.1038/nm.4517.
- Gopalakrishna, K. P., Hand, T. W. (2020). Influence of Maternal Milk on the Neonatal Intestinal Microbiome. Nutrients, 12, 823. doi:10.3390/nu12030823.
- He, J., Chu, Y., Li, J., Meng, Q., Liu, Y., Jin, J., Wang, Y., Wang, J., Huang, B., Shi, L., Shi, X., Tian, J., Zhufeng, Y., Feng, R., Xiao, W., Gan, Y., Guo, J., Shao, C., Su, Y., Hu, F., Sun, X., Yu, J., Kang, Y., Li, Z. (2022). Intestinal butyrate-metabolizing species contribute to autoantibody production and bone erosion in rheumatoid arthritis. Sci Adv, 8, eabm1511. https://doi.org/10.1126/sciadv.abm1511.
- Hill, L., Sharma, R., Hart, L., Popov, J., Moshkovich, M., Pai, N. (2021). The neonatal microbiome in utero and beyond: perinatal influences and long-term impacts. J Lab Med, 45(6), 275–291. https://doi.org/10.1515/labmed-2021-0131.
- Holgerson, P. F., Esberg, A., West, C. E., Johansson, I. (2023). The breast milk and childhood gastrointestinal microbiotas and disease outcomes: A longitudinal study. Pediatr. Res, 93, 570–578. doi: 10.1038/s41390-022-02328-w.
- Holgerson, P. L., Vestman, N. R., Claesson, R., Ohman, C., Domellöf, M., Tanner, A. C., Hernell, O., Johansson, I. (2013). Oral microbial profile discriminates breast-fed from formula-fed infants. J. Pediatr. Gastroenterol. Nutr, 56, 127–136. doi: 10.1097/MPG.0b013e31826f2bc6.
- Hossain, S., Mihrshahi, S. (2022). Exclusive Breastfeeding and Childhood Morbidity: A Narrative Review. Int. J. Environ. Res. Public Health, 19, 14804. https://doi.org/10.3390/ijerph192214804.
- Iddrisu, I., Monteagudo-Mera, A., Poveda, C., Pyle, S., Shahzad, M., Andrews, S., Walton, G. E. (2021). Malnutrition and Gut Microbiota in Children. Nutrients, 13, 2727. https://doi.org/10.3390/nu13082727.
- Janney, A., Powrie, F., Mann, E. H. (2020). Host–microbiota maladaptation in colorectal cancer. Nature, 585, 509–517. https://doi.org/10.1038/s41586-020-2729-3.
- Janouškova, M., Straw, M. L., Su, Y., Riesbeck, K. (2022). Gene Expression Regulation in Airway Pathogens: Importance for Otitis Media. Front. Cell. Infect. Microbiol, 12, 826018. doi: 10.3389/fcimb.2022.826018.
- Kalbermatter, C., Trigo, N. F., Christensen, S., Ganal-Vonarburg, S. C. (2021). Maternal Microbiota, Early Life Colonization and Breast Milk Drive Immune Development in the Newborn. Front. Immunol, 12, 683022. doi: 10.3389/fimmu.2021.683022.
- Kim, S. Y., Yi, D. Y. (2020). Components of human breast milk: from macronutrient to microbiome and microRNA. Clin Exp Pediatr, 63(8), 301–309. doi: 10.3345/cep.2020.00059.
- Knights, D., Parfrey, L. W., Zaneveld, J., Lozupone, C., and Knight, R. (2011). Human-associated microbial signatures: examining their predictive value. Cell Host Microbe, 10, 292–296. doi: 10.1016/j.chom.2011.09.003.
- Lawrence, R. A., Lawrence, R. M. (2021). Breastfeeding: A Guide for the Medical Profession. Elsevier.
- Ley, R. E., Turnbaugh, P. J., Klein, S., and Gordon, J. I. (2006). Microbial ecology: human gut microbes associated with obesity. Nature, 444, 1022–1023. doi: 10.1038/4441022a.
- Li, M., Xue, Y., Lu, H., Bai, J., Cui, L., Ning, Y., Yuan, Q., Jia, X., Wang, S. (2024). Relationship between infant gastrointestinal microorganisms and maternal microbiome within 6 months of delivery. Microbiology Spectrum, 12(10), e0360823. https://doi.org/10.1128/spectrum.03608-23.
- Lockyer, F., McCann, S., Moore, S. E. (2021). Breast Milk Micronutrients and Infant Neurodevelopmental Outcomes: A Systematic Review. Nutrients, 13, 3848. https://doi.org/10.3390/nu13113848.
- Lyons, K. E., Ryan, C. A., Dempsey, E. M., Ross, R. P., Stanton, C. (2020). Breast Milk, a Source of Beneficial Microbes and Associated Benefits for Infant Health. Nutrients, 12, 1039. doi:10.3390/nu12041039 .
- Ma, J., Qiao, Y., Zhao, P., Li, W., Katzmarzyk, P. T., Chaput, J., Fogelholm, M., Kuriyan, R., Lambert, E. V., Maher, C., Maia, J., Matsudo, V., Olds, T., Onywera, V., Sarmiento, O. L., Standage, M., Tremblay, M. S., Tudor-Locke, C., Hu, G. (2020). Breastfeeding and childhood obesity: A 12-country study. Matern Child Nutr, 16, e12984. doi: 10.1111/mcn.12984.
- Ma, J., Li, Z., Zhang, W., Zhang, C., Zhang, Y., Mei, H., Zhuo, N., Wang, H., Wang, L., Wu, D. (2020). Comparison of gut microbiota in exclusively breast-fed and formula-fed babies: A study of 91 term infants. Sci. Rep, 10, 15792. https://doi.org/10.1038/s41598-020-72635-x.
- Maioli, T. U., Borras-Nogues, E., Torres, L., Barbosa, S. C., Martins, V. D., Langella, P., et al. (2021). Possible benefits of Faecalibacterium prausnitzii for obesity-associated gut disorders. Front. Pharmacol, 12, 740636. doi: 10.3389/fphar.2021.740636.
- Majood, M., Rao, R. (2026). Human milk: insights on cell composition, organoids and emerging applications. Pediatric Research, 99, 1707–1718. https://doi.org/10.1038/s41390-025-04458-3.
- Milani, C., Duranti, S., Bottacini, F., Casey, E., Turroni, F., Mahony, J., Belzer, C., Delgado Palacio, S., Arboleya Montes, S., Mancabelli, L., et al. (2017). The First Microbial Colonizers of the Human Gut: Composition, Activities, and Health Implications of the Infant Gut Microbiota. Microbiol. Mol. Biol. Rev, 81, e00036-17. doi: 10.1128/MMBR.00036-17.
- Mohamed, J. J. M., Lee, E. K. H., Woo, K. C. K., Sarvananthan, R., Lee, Y. Y., Hussin, Z. A. M. (2022). Brain–immune–gut benefits with early life supplementation of milk fat globule membrane. JGH Open, 6, 454–461. doi:10.1002/jgh3.12775.
- Muro-Valdez, J. C., Meza-Rios, A., Aguilar-Uscanga, B. R., Lopez-Roa, R.I., Medina-Díaz, E., Franco-Torres, E. M., Zepeda-Morales, A. S. M. (2023). Breastfeeding-Related Health Benefits in Children and Mothers: Vital Organs Perspective. Medicina, 59, 1535. https://doi.org/10.3390/medicina59091535.
- O’Sullivan, A., Farver, M., Smilowitz, J. T. (2015). The Influence of Early Infant-Feeding Practices on the Intestinal Microbiome and Body Composition in Infants. Nutrition and Metabolic Insights, 8(s1), 1–9. doi:10.4137/NMi.s29530.
- Paone, P., Latousakis, D., Terrasi, R., Vertommen, D., Jian, C., Borlandelli, V., et al. (2024). Human milk oligosaccharide 2’-fucosyllactose protects against high-fat diet-induced obesity by changing intestinal mucus production, composition and degradation linked to changes in gut microbiota and faecal proteome profiles in mice. Gut, 73, 1632–1649. doi:10.1136/gutjnl-2023-330301.
- Patterson, E., Ryan, P. M., Cryan, J. F., Dinan, T. G., Ross, R. P., Fitzgerald, G. F., et al. (2016). Gut microbiota, obesity and diabetes. Postgrad. Med. J, 92, 286–300. doi:10.1136/postgradmedj-2015-133285.
- Payne, A. N., Chassard, C., Zimmermann, M., Muller, P., Stinca, S., and Lacroix, C. (2011). The metabolic activity of gut microbiota in obese children is increased compared with normal-weight children and exhibits more exhaustive substrate utilization. Nutr. Diabetes, 1: e12. doi: 10.1038/nutd.2011.8.
- Ramiro-Cortijo, D., Singh, P., Liu, Y., Medina-Morales, E., Yakah, W., Freedman, S. D., Martin, C. R. (2020). Breast Milk Lipids and Fatty Acids in Regulating Neonatal Intestinal Development and Protecting against Intestinal Injury. Nutrients, 12, 534. doi:10.3390/nu12020534.
- Ratsika, A., Codagnone, M. C., O’Mahony, S., Stanton, C., Cryan, J. F. (2021). Priming for Life: Early Life Nutrition and the Microbiota-Gut-Brain Axis. Nutrients, 13, 423. https://doi.org/10.3390/nu13020423.
- Ridaura, V. K., Faith, J. J., Rey, F. E., Cheng, J., Duncan, A. E., Kau, A. L., et al. (2013). Gut microbiota from twins discordant for obesity modulate metabolism in mice. Science, 341, 1241214. doi: 10.1126/science.1241214.
- Rio-Aige, K., Azagra-Boronat, I., Castell, M., Selma-Royo, M., Collado, M. C., Rodríguez-Lagunas, M. J., Pérez-Cano, F. J. (2021). The Breast Milk Immunoglobulinome. Nutrients, 13, 1810. https://doi.org/10.3390/nu13061810.
- Zhang, A. M. Y., Wellberg, E. A., Kopp, J. L., Johnson, J. D. (2020). Hyperinsulinemia in Obesity, Inflammation, and Cancer. Diabetes Metab J, 45, 285-311. doi: 10.4093/dmj.2020.0250.
- Zwierz, A., Domagalski, K., Masna, K., Walentowicz, P., Burduk, P. (2023). Impact of Breastfeeding Duration on Adenoid Hypertrophy, Snoring and Acute Otitis Media: A Case-Control Study in Preschool Children. J. Clin. Med, 12, 7683. https://doi.org/10.3390/jcm12247683.
- Tap, J., Mondot, S., Levenez, F., Pelletier, E., Caron, C., Furet, J., Ugarte, E., Munoz.Tamayo, R., Paslier, D. L. E., Nalin, R., Dore, J., Leclerc, M. (2009). Towards the human intestinal microbiota phylogenetic core. Environ. Microbiol, 11, 2574–2584. doi: 10.1111/j.1462-2920.2009.01982.x.
- Togo, A., Dufour, J. C., Lagier, J. C., Dubourg, G., Raoult, D., Million, M. (2019). Repertoire of human breast and milk microbiota: A systematic review. Future Microbiol, 14, 623–641. doi:10.2217/fmb-2018-0317.
- Turnbaugh, P. J., and Gordon, J. I. (2009). The core gut microbiome, energy balance and obesity. J. Physiol, 587, 4153–4158. doi: 10.1113/jphysiol.2009.174136.
- Vallès, Y., Arshad, M., Abdalbaqi, M., Inman, C. K., Ahmad, A., Drou, N., Gunsalus, K. C., Ali, R., Tahlak, M., Abdulle, A. (2024). The infants’ gut microbiome: setting the stage for the early onset of obesity. Front. Microbiol, 15, 1371292. doi: 10.3389/fmicb.2024.1371292.
- Yanagisawa, Y. (2022). How dietary amino acids and high protein diets influence insulin secretion. Physiological Reports, 11, e15577. doi: 10.14814/phy2.15577.
- Yao, Y., Cai, X., Ye, Y., Wang, F., Chen, F., Zheng, C. (2021). The Role of Microbiota in Infant Health: From Early Life to Adulthood. Front. Immunol, 12: 708472. doi: 10.3389/fimmu.2021.708472.
- Yi, D.Y., Kim, S.Y. (2021). Human Breast Milk Composition and Function in Human Health: From Nutritional Components to Microbiome and MicroRNAs. Nutrients, 13, 3094 . https://doi.org/10.3390/nu13093094.