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1.
J Clin Invest ; 134(15)2024 Jun 11.
Article in English | MEDLINE | ID: mdl-39087469

ABSTRACT

BACKGROUNDThe use of high-throughput technologies has enabled rapid advancement in the knowledge of host immune responses to pathogens. Our objective was to compare the repertoire, protection, and maternal factors associated with human milk antibodies to infectious pathogens in different economic and geographic locations.METHODSUsing multipathogen protein microarrays, 878 milk and 94 paired serum samples collected from 695 women in 5 high and low-to-middle income countries (Bangladesh, Finland, Peru, Pakistan, and the United States) were assessed for specific IgA and IgG antibodies to 1,607 proteins from 30 enteric, respiratory, and bloodborne pathogens.RESULTSThe antibody coverage across enteric and respiratory pathogens was highest in Bangladeshi and Pakistani cohorts and lowest in the U.S. and Finland. While some pathogens induced a dominant IgA response (Campylobacter, Klebsiella, Acinetobacter, Cryptosporidium, and pertussis), others elicited both IgA and IgG antibodies in milk and serum, possibly related to the invasiveness of the infection (Shigella, enteropathogenic E. coli "EPEC", Streptococcus pneumoniae, Staphylococcus aureus, and Group B Streptococcus). Besides the differences between economic regions and decreases in concentrations over time, human milk IgA and IgG antibody concentrations were lower in mothers with high BMI and higher parity, respectively. In Bangladeshi infants, a higher specific IgA concentration in human milk was associated with delayed time to rotavirus infection, implying protective properties of antirotavirus antibodies, whereas a higher IgA antibody concentration was associated with greater incidence of Campylobacter infection.CONCLUSIONThis comprehensive assessment of human milk antibody profiles may be used to guide the development of passive protection strategies against infant morbidity and mortality.FUNDINGBill and Melinda Gates Foundation grant OPP1172222 (to KMJ); Bill and Melinda Gates Foundation grant OPP1066764 funded the MDIG trial (to DER); University of Rochester CTSI and Environmental Health Sciences Center funded the Rochester Lifestyle study (to RJL); and R01 AI043596 funded PROVIDE (to WAP).


Subject(s)
Immunoglobulin A , Immunoglobulin G , Milk, Human , Humans , Milk, Human/immunology , Female , Immunoglobulin A/blood , Immunoglobulin A/immunology , Immunoglobulin G/blood , Immunoglobulin G/immunology , Adult , Antibodies, Bacterial/blood , Antibodies, Bacterial/immunology , Bangladesh/epidemiology
2.
Multimedia | Multimedia Resources | ID: multimedia-13502

ABSTRACT

Doar leite materno, além de beneficiar a saúde e desenvolvimento das outras crianças, é uma estratégia para o excesso de leite na mama que pode levar a risco de infecção e diminuição da produção do leite. Para tirar dúvidas sobre o processo de doação, o novo episódio do Ped Cast responde as principais perguntas sobre o tema, com a ajuda da dra. Simone Silva Ramos, membro do DC de Aleitamento Materno da SBP.


Subject(s)
Milk Banks , Milk, Human , Breast Feeding , Webcast
3.
Internet resource in Portuguese | LIS -Health Information Locator | ID: lis-49660

ABSTRACT

Abertura do 37° Congresso Nacional de Laticínios e assinatura do convênio entre a EPAMIG/ILCT (Empresa de Pesquisa Agropecuária de Minas Gerais/Instituto de Laticínios Cândido Tostes) e a Rede Brasileira de Bancos de Leite Humano (rBLH). Este acordo visa fortalecer o processamento e o controle de qualidade do leite humano, reforçando a colaboração entre as instituições.


Subject(s)
Milk Banks/standards , Milk, Human , Health Consortia , Quality Control , Brazil
4.
Nutrients ; 16(13)2024 Jun 21.
Article in English | MEDLINE | ID: mdl-38999725

ABSTRACT

The correct initial colonization and establishment of the gut microbiota during the early stages of life is a key step, with long-lasting consequences throughout the entire lifespan of the individual. This process is affected by several perinatal factors; among them, feeding mode is known to have a critical role. Breastfeeding is the optimal nutrition for neonates; however, it is not always possible, especially in cases of prematurity or early pathology. In such cases, most commonly babies are fed with infant formulas in spite of the official nutritional and health international organizations' recommendation on the use of donated human milk through milk banks for these cases. However, donated human milk still does not totally match maternal milk in terms of infant growth and gut microbiota development. The present review summarizes the practices of milk banks and hospitals regarding donated human milk, its safety and quality, and the health outcomes in infants fed with donated human milk. Additionally, we explore different alternatives to customize pasteurized donated human milk with the aim of finding the perfect match between each baby and banked milk for promoting the establishment of a beneficial gut microbiota from the early stages of life.


Subject(s)
Gastrointestinal Microbiome , Infant Nutritional Physiological Phenomena , Milk Banks , Milk, Human , Humans , Milk, Human/microbiology , Infant, Newborn , Infant , Breast Feeding , Infant Formula , Female
5.
Nutrients ; 16(13)2024 Jun 22.
Article in English | MEDLINE | ID: mdl-38999737

ABSTRACT

The entero-mammary pathway is a specialized route that selectively translocates bacteria to the newborn's gut, playing a crucial role in neonatal development. Previous studies report shared bacterial and archaeal taxa between human milk and neonatal intestine. However, the functional implications for neonatal development are not fully understood due to limited evidence. This study aimed to identify and characterize the microbiota and metabolome of human milk, mother, and infant stool samples using high-throughput DNA sequencing and FT-ICR MS methodology at delivery and 4 months post-partum. Twenty-one mothers and twenty-five infants were included in this study. Our results on bacterial composition suggest vertical transmission of bacteria through breastfeeding, with major changes occurring during the first 4 months of life. Metabolite chemical characterization sheds light on the growing complexity of the metabolites. Further data integration and network analysis disclosed the interactions between different bacteria and metabolites in the biological system as well as possible unknown pathways. Our findings suggest a shared bacteriome in breastfed mother-neonate pairs, influenced by maternal lifestyle and delivery conditions, serving as probiotic agents in infants for their healthy development. Also, the presence of food biomarkers in infants suggests their origin from breast milk, implying selective vertical transmission of these features.


Subject(s)
Breast Feeding , Feces , Gastrointestinal Microbiome , Milk, Human , Humans , Milk, Human/microbiology , Milk, Human/chemistry , Female , Infant, Newborn , Gastrointestinal Microbiome/physiology , Feces/microbiology , Infant , Adult , Metabolome , Bacteria/metabolism , Bacteria/classification , Bacteria/genetics , Male , Mothers
6.
Nutrients ; 16(13)2024 Jun 25.
Article in English | MEDLINE | ID: mdl-38999755

ABSTRACT

Bovine colostrum provides newborn calves with strong passive immunity, which will further affect the immunity of their offspring. Compared with other commercial dairy products, bovine colostrum emphasizes the limit of aflatoxin M1, pathogenic bacteria, microorganisms, antibiotics, stimulants, and other items, so it is safe to use. There are many reports that the use of bovine colostrum as a breast milk fortifier for preterm infants provides necessary immune support for premature infants, but the selection of bovine colostrum products chosen must be free of Bacillus cereus because they are very dangerous for premature infants. This also emphasizes that for the bovine colostrum that is used in preterm infants, more clinical research support is needed. At the same time, it should also be emphasized that the composition of BC is different from that of human colostrum, in particular, the main protein of BC is casein, while the main protein in breast milk is whey protein, especially α-lactalbumin, which together with ovalbumin is still the reference protein with the best biological value, especially for muscles. Therefore, bovine colostrum is currently not a complete substitute for breast milk. In recent years, in addition to reports of bovine colostrum use in preterm infants, studies have also found that bovine colostrum has immunomodulatory and promoting effects in adolescents, adults, and the elderly. This suggests that bovine colostrum has the potential to provide appropriate immune support for people of all ages. Therefore, this study aimed to evaluate the quality of nutritional characteristics of bovine colostrum on three dimensions. The effects of bovine colostrum on people of all ages is a narrative review of the effects of bovine colostrum on immunity in people of all ages. This review identified several classes of immunoactive substances in bovine colostrum, including immunoglobulins, cytokines, and enzymes, and compared the nutritional composition of bovine colostrum with mature milk, colostrum and mature milk in full-term breast milk, and colostrum and mature milk in preterm breast milk, to demonstrate that bovine colostrum provides a rich range of immunoactive components. In addition, the influencing factors affecting the quality of bovine colostrum (immunoglobulin) were reviewed, and it was found that individual differences, environmental factors, and processing methods had a great impact on the quality of BC. More importantly, the immunomodulatory effects of bovine colostrum in people of all ages were reviewed in detail (with an emphasis on preterm infants and immunocompromised children in neonates) as evidence to support the immunity effects of colostrum in people of all ages. This review hopes to use the above evidence to make people understand the health role of bovine colostrum as having a human immunomodulatory effect, and at the same time, when seeing the potential value of bovine colostrum in the future, the limitations of its application should also be deeply re-explored, such as lactose intolerance, allergies, etc., to provide effective solutions for the wide application of bovine colostrum.


Subject(s)
Colostrum , Colostrum/immunology , Animals , Cattle , Humans , Female , Infant, Newborn , Adult , Infant, Premature/immunology , Milk, Human/immunology , Milk, Human/chemistry , Adolescent , Pregnancy , Child , Aged
7.
Nutrients ; 16(13)2024 Jun 27.
Article in English | MEDLINE | ID: mdl-38999788

ABSTRACT

Human milk reduces risk for necrotizing enterocolitis in preterm infants. Necrotizing enterocolitis occurs in the ileocecal region where thousands of milk protein-derived peptides have been released from digestion. Digestion-released peptides may exert bioactivity, such as antimicrobial and immunomodulatory activities, in the gut. In this study, we applied mass spectrometry-based peptidomics to characterize peptides present in colostrum before and after in vitro digestion. Sequence-based computational modeling was applied to predict peptides with antimicrobial activity. We identified more peptides in undigested samples, yet the abundances were much higher in the digested samples. Heatmapping demonstrated highly different peptide profiles between undigested and digested samples. Four peptides (αS1-casein [157-163], αS1-casein [157-165], ß-casein [153-159] and plasminogen [591-597]) were selected, synthesized and tested against common pathogenic bacteria associated with necrotizing enterocolitis. All four exhibited bacteriostatic, though not bactericidal, activities against Klebsiella aerogenes, Citrobacter freundii and Serratia marcescens, but not Escherichia coli.


Subject(s)
Colostrum , Enterocolitis, Necrotizing , Milk, Human , Humans , Colostrum/chemistry , Infant, Newborn , Enterocolitis, Necrotizing/prevention & control , Milk, Human/chemistry , Antimicrobial Peptides/pharmacology , Peptides/pharmacology , Female , Caseins/pharmacology , Anti-Bacterial Agents/pharmacology , Digestion , Milk Proteins/pharmacology
8.
Article in English | MEDLINE | ID: mdl-38958657

ABSTRACT

Novel Gram-positive, catalase-negative, α-haemolytic cocci were isolated from breast milk samples of healthy mothers living in Hanoi, Vietnam. The 16S rRNA gene sequences of these strains varied by 0-2 nucleotide polymorphisms. The 16S rRNA gene sequence of one strain, designated as BME SL 6.1T, showed the highest similarity to those of Streptococcus salivarius NCTC 8618T (99.4 %), Streptococcus vestibularis ATCC 49124T (99.4 %), and Streptococcus thermophilus ATCC 19258T (99.3 %) in the salivarius group. Whole genome sequencing was performed on three selected strains. Phylogeny based on 631 core genes clustered the three strains into the salivarius group, and the strains were clearly distinct from the other species in this group. The average nucleotide identity (ANI) value of strain BME SL 6.1T exhibited the highest identity with S. salivarius NCTC 8618T (88.4 %), followed by S. vestibularis ATCC 49124T (88.3 %) and S. thermophilus ATCC 19258T (87.4 %). The ANI and digital DNA-DNA hybridization values between strain BME SL 6.1T and other species were below the cut-off value (95 and 70 %, respectively), indicating that it represents a novel species of the genus Streptococcus. The strains were able to produce α-galactosidase and acid from raffinose and melibiose. Therefore, we propose to assign the strains to a new species of the genus Streptococcus as Streptococcus raffinosi sp. nov. The type strain is BME SL 6.1T (=VTCC 12812T=NBRC 116368T).


Subject(s)
Bacterial Typing Techniques , DNA, Bacterial , Milk, Human , Nucleic Acid Hybridization , Phylogeny , RNA, Ribosomal, 16S , Sequence Analysis, DNA , Streptococcus , RNA, Ribosomal, 16S/genetics , Humans , Female , DNA, Bacterial/genetics , Milk, Human/microbiology , Streptococcus/genetics , Streptococcus/isolation & purification , Streptococcus/classification , Vietnam , Whole Genome Sequencing
9.
BMJ Open ; 14(6): e083399, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38951000

ABSTRACT

INTRODUCTION: Milk fat globule membrane (MFGM) is a complex lipid-protein structure in mammalian milk and human milk that is largely absent from breastmilk substitutes. The objective of this trial is to investigate whether providing infant formula enriched with MFGM versus standard infant formula improves cognitive development at 12 months of age in exclusively formula-fed full-term infants. METHODS AND ANALYSIS: This is a randomised, controlled, clinician-blinded, researcher-blinded and participant-blinded trial of two parallel formula-fed groups and a breastfed reference group that were recruited in the suburban Adelaide (Australia) community by a single study centre (a medical research institute). Healthy, exclusively formula-fed, singleton, term-born infants under 8 weeks of age were randomised to either an MFGM-supplemented formula (intervention) or standard infant formula (control) from enrolment until 12 months of age. The reference group was not provided with formula. The primary outcome is the Cognitive Scale of the Bayley Scales of Infant Development, Fourth Edition (Bayley-IV) at 12 months. Secondary outcomes are the Bayley-IV Cognitive Scale at 24 months, other Bayley-IV domains (language, motor, emotional and behavioural development) at 12 and 24 months of age, infant attention at 4 and 9 months of age, parent-rated language at 12 and 24 months of age, parent-rated development at 6 and 18 months of age as well as growth, tolerance and safety of the study formula. To ensure at least 80% power to detect a 5-point difference in the mean Bayley-IV cognitive score, >200 infants were recruited in each group. ETHICS AND DISSEMINATION: The Women's and Children Health Network Human Research Ethics Committee reviewed and approved the study (HREC/19/WCHN/140). Caregivers gave written informed consent prior to enrolling in the trial. Findings of this study will be disseminated through peer-reviewed publications and conference presentations. TRIAL REGISTRATION NUMBER: ACTRN12620000552987; Australian and New Zealand Clinical Trial Registry: anzctr.org.au.


Subject(s)
Child Development , Cognition , Glycolipids , Glycoproteins , Infant Formula , Lipid Droplets , Humans , Glycolipids/administration & dosage , Infant Formula/chemistry , Glycoproteins/administration & dosage , Cognition/drug effects , Infant , Female , Infant, Newborn , Male , Randomized Controlled Trials as Topic , Dietary Supplements , Breast Feeding , Milk, Human/chemistry
10.
Microb Biotechnol ; 17(7): e14520, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38946112

ABSTRACT

Human milk provides the infant with many bioactive factors, including immunomodulating components, antimicrobials and prebiotics, which modulate the infant microbiome and immune system maturation. As a result, breastfeeding can impact infant health from infancy, through adolescence, and into adulthood. From protecting the infant from infections, to reducing the risk of obesity, type 1 diabetes and childhood leukaemia, many positive health outcomes are observed in infants receiving breastmilk. For the mother, breastfeeding protects against postpartum bleeding and depression, increases weight loss, and long-term lowers the risk of type 2 diabetes, breast and ovarian cancer, and cardiovascular diseases. Beyond infants and mothers, the wider society is also impacted because of avoidable costs relating to morbidity and mortality derived from a lack of human milk exposure. In this review, Medline was used to search for relevant articles to discuss the health benefits of breastfeeding and its societal impact before exploring future recommendations to enhance our understanding of the mechanisms behind breastfeeding's positive effects and promote breastfeeding on a global scale.


Subject(s)
Breast Feeding , Humans , Infant , Milk, Human , Female , Infant, Newborn
11.
S D Med ; 77(4): 172-179, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38991162

ABSTRACT

This article presents a summary of information found within the existing medical literature on the pharmacological treatment options for maternal depression during lactation and the concurrent effects on the breastfeeding infant. Existing data on safety and efficacy varies by treatment modality. Medications used to treat depression are all secreted in breast milk to some extent; however, most antidepressants are considered relatively safe to use during breastfeeding. The selective serotonin reuptake inhibitors (SSRIs) sertraline and paroxetine are present in low levels and are considered preferred agents. Safety data for other antidepressants varies, however. monoamine oxidase inhibitors (MAOIs) should generally be avoided. Available references and resources can help providers optimize treatment of maternal depression while mitigating risk to the infant. Optimizing treatment of maternal depression is a complicated undertaking, which should be made in conjunction with the provider through shared decision making with the patient. Specific properties of any proposed medication, such as the relative infant dose and side effect profile, should always be taken into account during the decision-making process.


Subject(s)
Antidepressive Agents , Breast Feeding , Depression, Postpartum , Lactation , Humans , Antidepressive Agents/therapeutic use , Antidepressive Agents/adverse effects , Lactation/drug effects , Female , Depression, Postpartum/drug therapy , Milk, Human/chemistry , Selective Serotonin Reuptake Inhibitors/therapeutic use , Selective Serotonin Reuptake Inhibitors/adverse effects , Infant, Newborn
13.
Biomolecules ; 14(7)2024 Jul 08.
Article in English | MEDLINE | ID: mdl-39062527

ABSTRACT

Exosomes are cell-derived extracellular vesicles (EVs) with diameters between 30 and 120 nm. In recent years, several studies have evaluated the therapeutic potential of exosomes derived from different fluids due to their low immunogenicity and high biocompatibility. However, producing exosomes on a large scale is still challenging. One of the fluids from which they could be isolated in large quantities is milk. Moreover, regeneration is a well-known property of milk. The present work seeks to optimize a method for isolating exosomes from bovine and human milk, comparing different storage conditions and different extraction protocols. We found differences in the yield extraction associated with pre-storage milk conditions and observed some differences according to the processing agent. When we removed milk fat globules and added rennet before freezing, we obtained a cleaner final fraction. In summary, we attempted to optimize a rennet-based new milk-exosome isolation method and concluded that pre-treatment, followed by freezing of samples, yielded the best exosome population.


Subject(s)
Exosomes , Milk , Exosomes/metabolism , Exosomes/chemistry , Animals , Cattle , Milk/chemistry , Humans , Milk, Human/chemistry , Chymosin/chemistry , Chymosin/metabolism , Lipid Droplets/chemistry , Lipid Droplets/metabolism , Glycolipids , Glycoproteins
14.
Food Funct ; 15(15): 8087-8103, 2024 Jul 29.
Article in English | MEDLINE | ID: mdl-38989729

ABSTRACT

The probiotic properties of twenty-five lactic acid bacteria (LAB) isolated from human breast milk were investigated considering their resistance to gastrointestinal conditions and proteolytic activity. Seven LAB were identified and assessed for auto- and co-aggregation capacity, antibiotic resistance, and behavior during in vitro gastrointestinal digestion. Three Lacticaseibacillus strains were further evaluated for antifungal activity, metabolite production (HPLC-Q-TOF-MS/MS and GC-MS/MS) and proteolytic profiles (SDS-PAGE and HPLC-DAD) in fermented milk, whey, and soy beverage. All strains resisted in vitro gastrointestinal digestion with viable counts higher than 7.9 log10 CFU mL-1 after the colonic phase. Remarkable proteolytic activity was observed for 18/25 strains. Bacterial auto- and co-aggregation of 7 selected strains reached values up to 23 and 20%, respectively. L. rhamnosus B5H2, L. rhamnosus B9H2 and L. paracasei B10L2 inhibited P. verrucosum, F. verticillioides and F. graminearum fungal growth, highlighting L. rhamnosus B5H2. Several metabolites were identified, including antifungal compounds such as phenylacetic acid and 3-phenyllactic acid, and volatile organic compounds produced in fermented milk, whey, and soy beverage. SDS-PAGE demonstrated bacterial hydrolysis of the main milk (caseins) and soy (glycines and beta-conglycines) proteins, with no apparent hydrolysis of whey proteins. However, HPLC-DAD revealed alpha-lactoglobulin reduction up to 82% and 54% in milk and whey, respectively, with L. rhamnosus B5H2 showing the highest proteolytic activity. Overall, the three selected Lacticaseibacillus strains demonstrated probiotic capacity highlighting L. rhamnosus B5H2 with remarkable potential for generating bioactive metabolites and peptides which are capable of promoting human health.


Subject(s)
Dietary Supplements , Lactobacillales , Milk, Human , Probiotics , Humans , Milk, Human/chemistry , Female , Lactobacillales/metabolism , Lactobacillales/isolation & purification , Fermentation , Whey/microbiology , Whey/chemistry , Phenylacetates/metabolism , Antifungal Agents/pharmacology , Antifungal Agents/metabolism , Cultured Milk Products/microbiology , Lactates
16.
Mol Nutr Food Res ; 68(14): e2400077, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39059011

ABSTRACT

SCOPE: The microbes in breast milk are critical for the early establishment of infant gut microbiota and have important implications for infant health. Breast milk microbes primarily derive from the migration of maternal intestinal microbiota. This review suggests that the regulation of maternal diet on gut microbiota may be an effective strategy to improve infant health. METHODS AND RESULTS: This article reviews the impact of breast milk microbiota on infant development and intestinal health. The close relationship between the microbiota in the maternal gut and breast through the entero-mammary pathway is discussed. Based on the effect of diet on gut microbiota, it is proposed that changing the maternal dietary structure is a new strategy for regulating breast milk microbiota and infant intestinal microbiota, which would have a positive impact on infant health. CONCLUSION: Breast milk microbes have beneficial effects on infant development and regulation of the immune system. The mother's gut and breast can undergo certain bacterial migration through the entero-mammary pathway. Research has shown that intervening in a mother's diet during breastfeeding can affect the composition of the mother's gut microbiota, thereby regulating the microbiota of breast milk and infant intestines, and is closely related to infant health.


Subject(s)
Diet , Gastrointestinal Microbiome , Infant Health , Milk, Human , Humans , Gastrointestinal Microbiome/physiology , Female , Infant , Breast Feeding , Maternal Nutritional Physiological Phenomena , Infant, Newborn , Intestines/microbiology
17.
Food Res Int ; 191: 114736, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39059926

ABSTRACT

In this study, fractionated palm stearin, oleic acid, and linoleic acid were selected as the base materials to prepare human milk fat substitutes (HMFS) rich in OPO and OPL by enzymatic acidolysis combined with physical blending. Under optimum conditions, contents of OPO, OPL, and sn-2 palmitic acid in the OPO and OPL-rich triacylglycerols (TAGs) were higher than that in commercial OPO-rich TAGs, with values of 37.25%, 28.12%, and 79.44%, respectively. Physical blending the OPO and OPL-rich TAGs (47%), bovine milk fat (18%), sunflower oil (13%), coconut oil (13%), corn oil (8%), and palm oil (1%) can obtain HMFS with a fat composition that like HMF. The fatty acid, sn-2 saturated fatty acid, and TAG contents of HMFS were within the lower and upper limit of HMF. The lipolysis degree of infant formula (IF) with HMFS as fat source is 9.0% higher than that of commercial plant oil-based infant formula (PIF), and 3.4% lower than that of human milk. IF with HMFS as fat source released less saturated free fatty acids and more saturated monoacylglycerols during digestion than that of PIF, which would help improve the IF fat utilization by infants.


Subject(s)
Digestion , Fat Substitutes , Infant Formula , Milk, Human , Palm Oil , Triglycerides , Humans , Milk, Human/chemistry , Triglycerides/chemistry , Fat Substitutes/chemistry , Palm Oil/chemistry , Infant , Infant Formula/chemistry , Sunflower Oil/chemistry , Coconut Oil/chemistry , Lipolysis , Animals , Corn Oil/chemistry , Linoleic Acid/chemistry , Plant Oils/chemistry , Fatty Acids/chemistry , Oleic Acid/chemistry , Cattle , Food Handling/methods
18.
Gut Microbes ; 16(1): 2379862, 2024.
Article in English | MEDLINE | ID: mdl-39042143

ABSTRACT

Streptococcus agalactiae, also known as Group B Streptococcus (GBS), is a predominant pathogen of neonatal sepsis, commonly associated with early-onset neonatal sepsis. GBS has also been associated with cases of late-onset sepsis potentially originating from the intestine. Previous findings have shown GBS can colonize the infant intestinal tract as part of the neonatal microbiota. To better understand GBS colonization dynamics in the neonatal intestine, we collected stool and milk samples from prematurely born neonates for identification of potential pathogens in the neonatal intestinal microbiota. GBS was present in approximately 10% of the cohort, and this colonization was not associated with maternal GBS status, delivery route, or gestational weight. Interestingly, we observed the relative abundance of GBS in the infant stool negatively correlated with maternal IgA concentration in matched maternal milk samples. Using a preclinical murine model of GBS infection, we report that both vertical transmission and direct oral introduction resulted in intestinal colonization of GBS; however, translocation beyond the intestine was limited. Finally, vaccination of dams prior to breeding induced strong immunoglobulin responses, including IgA responses, which were associated with reduced mortality and GBS intestinal colonization. Taken together, we show that maternal IgA may contribute to infant immunity by limiting the colonization of GBS in the intestine.


Subject(s)
Bacterial Translocation , Immunoglobulin A , Streptococcal Infections , Streptococcus agalactiae , Streptococcus agalactiae/growth & development , Streptococcus agalactiae/immunology , Animals , Streptococcal Infections/microbiology , Streptococcal Infections/prevention & control , Streptococcal Infections/immunology , Female , Infant, Newborn , Humans , Mice , Infectious Disease Transmission, Vertical , Feces/microbiology , Intestines/microbiology , Intestines/immunology , Milk, Human/microbiology , Gastrointestinal Microbiome , Pregnancy , Antibodies, Bacterial/blood , Antibodies, Bacterial/immunology , Disease Models, Animal , Mice, Inbred C57BL , Male
19.
Sci Rep ; 14(1): 16611, 2024 Jul 18.
Article in English | MEDLINE | ID: mdl-39025909

ABSTRACT

Breast milk is one of the many distinct forms of food that can be contaminated with aflatoxin M1 (AFM1). They may be consumed by eating contaminated foods, such as contaminated meat and crops, which would then be present in breast milk and cause health problems, including nervous system disorders and cancers of the lungs, liver, kidneys, and urinary tract. However, the prevalently inconsistent explanation of prevalence and concentration remains a big challenge. Thus, this meta-analysis was conducted to determine the prevalence and concentration of harmful chemicals in breast milk in an African context. The databases MEDLINE, PubMed, Embase, SCOPUS, Web of Science, and Google Scholar were searched for both published and unpublished research. To conduct the analysis, the collected data were exported to Stata version 18. The results were shown using a forest plot and a prevalence with a 95% confidence interval (CI) using the random-effects model. The Cochrane chi-square (I2) statistics were used to measure the studies' heterogeneity, and Egger's intercept was used to measure publication bias. This review included twenty-eight studies with 4016 breast milk samples and newborns. The analysis showed the overall prevalence and concentration of aflatoxin M1 in breast milk were 53% (95% CI 40, 65; i2 = 98.26%; P = 0.001). The pooled mean aflatoxin M1 concentration in breast milk was 93.02 ng/l. According to this study, the eastern region of Africa was 62% (95% CI 39-82) profoundly affected as compared to other regions of the continent. In subgroup analysis by publication year, the highest level of exposure to aflatoxins (68%; 95% CI 47-85) was observed among studies published from 2010 to 2019. This finding confirmed that more than half of lactating women's breast milk was contaminated with aflatoxin M1 in Africa. The pooled mean aflatoxin M1 concentration in breast milk was 93.02 ng/l. According to this study, the eastern region of Africa was profoundly affected compared with other regions. Thus, the government and all stakeholders must instigate policies that mitigate the toxicity of aflatoxins in lactating women, fetuses, and newborns.


Subject(s)
Aflatoxin M1 , Milk, Human , Humans , Milk, Human/chemistry , Africa , Aflatoxin M1/analysis , Female , Prevalence , Food Contamination/analysis , Agriculture , Infant, Newborn
20.
Nutrients ; 16(14)2024 Jul 09.
Article in English | MEDLINE | ID: mdl-39064618

ABSTRACT

Milk is a biological fluid with a dynamic composition of micronutrients and bioactive molecules that serves as a vital nutrient source for infants. Milk composition is affected by multiple factors, including genetics, geographical location, environmental conditions, lactation phase, and maternal nutrition, and plays a key role in dictating its microbiome. This study addresses a less-explored aspect, comparing the microbial communities in human breast milk with those in mature milk from species that are used for milk consumption. Since mature animal milk is used as a supplement for both the infant (formula) and the child/adolescent, our main aim was to identify shared microbial communities in colostrum and mature human milk. Using 16S rRNA metagenomic sequencing, we focused on characterizing the milk microbiota in the Northern Greek population by identifying shared microbial communities across samples and comparing the relative abundance of prevalent genera. We analyzed ten human milk samples (from five mothers), with five collected three days postpartum (colostrum) and five collected thirty to forty days postpartum (mature milk) from corresponding mothers. To perform an interspecies comparison of human milk microbiota, we analyzed five goat and five bovine milk samples from a local dairy industry, collected fifty to seventy days after birth. Alpha diversity analysis indicated moderate diversity and stability in bovine milk, high richness in goat milk, and constrained diversity in breast milk. Beta diversity analysis revealed significant distinctions among mammalian species, emphasizing both presence/absence and abundance-based clustering. Despite noticeable differences, shared microbial components underscore fundamental aspects across all mammalian species, highlighting the presence of a core microbiota predominantly comprising the Proteobacteria, Firmicutes, and Actinobacteriota phyla. At the genus level, Acinetobacter, Gemella, and Sphingobium exhibit significant higher abundance in human milk compared to bovine and goat milk, while Pseudomonas and Atopostipes are more prevalent in animal milk. Our comparative analysis revealed differences and commonalities in the microbial communities of various mammalian milks and unraveled the existence of a common fundamental milk core microbiome. We thus revealed both species-specific and conserved microbial communities in human, bovine, and goat milk. The existence of a common core microbiome with conserved differences between colostrum and mature human milk underscores fundamental similarities in the microbiota of milk across mammalian species, which could offer valuable implications for optimizing the nutritional quality and safety of dairy products as well as supplements for infant health.


Subject(s)
Colostrum , Goats , Microbiota , Milk, Human , Milk , RNA, Ribosomal, 16S , Animals , Humans , Milk, Human/microbiology , Milk, Human/chemistry , RNA, Ribosomal, 16S/genetics , Greece , Female , Cattle , Colostrum/microbiology , Milk/microbiology , Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification
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