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1.
Artículo en Inglés | MEDLINE | ID: mdl-38695863

RESUMEN

Human breast milk contains lactic acid bacteria (LAB), which have an important influence on the composition of the intestinal microbia of infants. In this study, one strain of an α-hemolytic species of the genus Streptococcus, IMAU99199T, isolated from the breast milk of a healthy nursing mother in Hohhot city PR China, was studied to characterise its taxonomic status using phenotypic and molecular taxonomic methods. The results indicated that it represented a member of the mitis-suis clade, pneumoniae subclade of the genus Streptococcus. It is a Gram-stain-positive, catalase-negative and oxidase-negative bacterium, and the cells are globular, paired or arranged in short chains. The results of a phylogenetic analysis of its 16S rRNA gene and two housekeeping genes (gyrB and rpoB) placed it in the genus Streptococcus. A phylogenetic tree based on 135 single-copy genes sequences indicated that IMAU99199T formed a closely related branch well separated from 'Streptococcus humanilactis' IMAU99125, 'Streptococcus bouchesdurhonensis' Marseille Q6994, Streptococcus mitis NCTC 12261T, 'Streptococcus vulneris' DM3B3, Streptococcus toyakuensis TP1632T, Streptococcus pseudopneumoniae ATCC BAA-960T and Streptococcus pneumoniae NCTC 7465T. IMAU99199T and 'S. humanilactis' IMAU99125 had the highest average nucleotide identity (93.7 %) and digital DNA-DNA hybridisation (55.3 %) values, which were below the accepted thresholds for novel species. The DNA G+C content of the draft genome of IMAU99199T was 39.8 %. The main cellular fatty acids components of IMAU99199T were C16 : 0 and C16 : 1ω7. It grew at a temperature range of 25-45 °C (the optimum growth temperature was 37 °C) and a pH range of 5.0-8.0 (the optimum growth pH was 7.0). These data indicate that strain IMAU99199T represents a novel species in the genus Streptococcus, for which the name Streptococcus hohhotensis sp. nov. is proposed. The type strain is IMAU99199T (=GDMCC 1.1874T=KCTC 21155T).


Asunto(s)
Técnicas de Tipificación Bacteriana , Composición de Base , ADN Bacteriano , Ácidos Grasos , Leche Humana , Filogenia , ARN Ribosómico 16S , Análisis de Secuencia de ADN , Streptococcus , ARN Ribosómico 16S/genética , Humanos , Femenino , China , ADN Bacteriano/genética , Leche Humana/microbiología , Streptococcus/genética , Streptococcus/aislamiento & purificación , Streptococcus/clasificación , Ácidos Grasos/análisis , Hibridación de Ácido Nucleico , Genes Bacterianos
2.
Nutrients ; 16(8)2024 Apr 11.
Artículo en Inglés | MEDLINE | ID: mdl-38674825

RESUMEN

Human milk promotes the growth of bifidobacteria in the infant gut. Adding bifidobacterial species to infant formula may contribute to increasing their presence in the gut of formula-fed infants. Therefore, the safety and anti-infectious effects of Bifidobacterium breve DSM32583, a breast milk isolate, were assessed in a pilot trial involving 3-month-old infants. The infants were randomly assigned to either the probiotic (PG) or the control (CG) groups. All the infants consumed the same formula, although it was supplemented with the strain (1 × 107 cfu/g of formula) in the PG. Overall, 160 infants (80 per group) finished the intervention. Infants in CG gained more weight compared to PG (p < 0.05), but the weights for age Z-scores at 6 months were within the normal distribution for this age group. The rates of infections affecting the gastrointestinal and respiratory tracts and antibiotic therapy were significantly lower in the PG. The bifidobacterial population and the level of short-chain fatty acids were higher (p < 0.05) in the fecal samples of PG infants. No adverse events related to formula consumption were observed. In conclusion, the administration of an infant formula with B. breve DSM32583 was safe and exerted potential beneficial effects on gut health.


Asunto(s)
Bifidobacterium breve , Heces , Fórmulas Infantiles , Leche Humana , Probióticos , Humanos , Lactante , Proyectos Piloto , Probióticos/administración & dosificación , Leche Humana/microbiología , Femenino , Masculino , Heces/microbiología , Microbioma Gastrointestinal/efectos de los fármacos , Ácidos Grasos Volátiles/análisis , Ácidos Grasos Volátiles/metabolismo , Aumento de Peso
3.
J Appl Microbiol ; 135(5)2024 May 01.
Artículo en Inglés | MEDLINE | ID: mdl-38323424

RESUMEN

AIMS: To determine the effect of a two-week reduced fat and sugar and increased fibre maternal dietary intervention on the maternal faecal and human milk (HM) microbiomes. METHODS AND RESULTS: Faecal swabs and HM samples were collected from mothers (n = 11) immediately pre-intervention, immediately post-intervention, and 4 and 8 weeks post-intervention, and were analysed using full-length 16S rRNA gene sequencing. Maternal macronutrient intake was assessed at baseline and during the intervention. Maternal fat and sugar intake during the intervention were significantly lower than pre-intervention (P = <0.001, 0.005, respectively). Significant changes in the bacterial composition of maternal faeces were detected after the dietary intervention, with decreases in the relative abundance of Bacteroides caccae (P = <0.001) and increases in the relative abundance of Faecalibacillus intestinalis (P = 0.006). In HM, the diet resulted in a significant increase in Cutibacterium acnes (P = 0.001) and a decrease in Haemophilus parainfluenzae (P = <0.001). The effect of the diet continued after the intervention, with faecal swabs and HM samples taken 4 and 8 weeks after the diet showing significant differences compared to baseline. CONCLUSION: This pilot study demonstrates that short-term changes in maternal diet during lactation can alter the bacterial composition of the maternal faeces and HM.


Asunto(s)
Heces , Lactancia , Leche Humana , Humanos , Heces/microbiología , Leche Humana/microbiología , Femenino , Adulto , Dieta , ARN Ribosómico 16S/genética , Proyectos Piloto , Microbiota , Bacterias/aislamiento & purificación , Bacterias/genética , Bacterias/clasificación , Fibras de la Dieta
4.
J Hum Lact ; 40(2): 259-269, 2024 05.
Artículo en Inglés | MEDLINE | ID: mdl-38328919

RESUMEN

BACKGROUND: Raw, never stored or pasteurized mother's own milk (MOM) is not always available to feed preterm infants; however, storage and pasteurization of MOM diminishes some bioactive components. It can be difficult to feed raw MOM to preterm infants due to transportation and storage of small volumes that might be pumped away from the infant, and a concern that they might harbor bacteria. However, the higher availability of bioactive components in raw MOM may provide benefits to preterm infants compared to frozen or pasteurized MOM. RESEARCH AIM: To systematically review and summarize the results of studies on feeding raw MOM versus frozen or pasteurized MOM to preterm infants born at less than 37 weeks of gestation. METHODS: Four databases were searched (Cochrane, Embase, Ovid MEDLINE, and Web of Science) for this systematic review. Of 542 studies identified, nine met inclusion criteria and were critically evaluated using the quality assessment tool for quantitative studies by the Effective Public Health Practice Project. Studies were organized using the Breastfeeding Challenges Facing Preterm Mother-Infant Dyads theoretical framework. RESULTS: Included studies evaluated the outcomes of preterm infants fed raw versus pasteurized MOM (n = 7, 77.8%) or raw versus frozen MOM (n = 2, 22.2%). Researchers found that raw MOM did not increase infant infections and may have improved health and growth outcomes for study participants. CONCLUSION: There is laboratory evidence supporting the safety and efficacy of the use of raw MOM for preterm infants. A raw MOM diet is recommended for preterm infants by professional organizations. Despite this, it may not be universally prioritized and could require purposeful implementation by each institution. Further research is needed to pursue the potential benefits of a raw MOM diet for preterm infants.


Asunto(s)
Lactancia Materna , Recien Nacido Prematuro , Lactante , Femenino , Recién Nacido , Humanos , Lactancia Materna/métodos , Leche Humana/microbiología , Madres , Dieta , Recién Nacido de muy Bajo Peso , Unidades de Cuidado Intensivo Neonatal
5.
J Perinat Med ; 52(3): 351-359, 2024 Mar 25.
Artículo en Inglés | MEDLINE | ID: mdl-38235759

RESUMEN

OBJECTIVES: Donated human milk is the best possible alternative when mother's own milk is not available. The aim of this study is to investigate whether there are differences in the milk donation volumes and microbiological quality of donated milk depending on human milk donors (HMDs) characteristics. METHODS: We analyzed data on the HMDs who donated milk in the first three years of work of human milk bank (HMB) - November 2019 to January 2023. The data on the volume of donated milk in L and suitable microbiological quality assessed by the number and isolated species of bacteria were collected from questionnaires filled out by HMDs and documentation administered by HMB employees and are presented using descriptive and comparative statistics. RESULTS: Two hundred HMDs were included in this study. The majority of them are between 26 and 35 years of age, reside in capital city or the surrounding county, have given birth to a full-term child vaginally, and express surplus milk through a breast pump. Donor mothers of preterm born infants (14.5 %) donated greater quantities, there is statistically significant difference in the median of volume of milk donated (9.6 vs. 6.4, p=0.026). Milk expressed manually shows better results in microbiological quality (median percentage 100 vs. 82 vs. 100, p=0.040), while by comparing other characteristics of the donors, no difference was found between the groups. CONCLUSIONS: It is important to be aware of the characteristics of previous HMDs in order to direct the HMB future promotional and educational activities.


Asunto(s)
Bancos de Leche Humana , Leche Humana , Femenino , Humanos , Recién Nacido , Croacia , Recien Nacido Prematuro , Leche Humana/microbiología , Madres , Adulto
6.
Food Res Int ; 176: 113768, 2024 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-38163699

RESUMEN

Human milk is the best source of nutrition for infants. Lower freezing temperatures and faster freezing rates allow for better preservation of human milk. However, research on the freezing conditions of human milk is limited. This study investigated the effectiveness of quick freezing and suitable freezing conditions for home preservation. Human milk was stored under different freezing conditions (-18 °C, -18 °C quick freezing, -30 °C, -40 °C, -60 °C, and - 80 °C) for 30, 60, and 90 days and then evaluated for changes in the microbial counts, bioactive protein, and lipid. The results showed that the total aerobic bacterial and Bifidobacteria counts in human milk after storage at freezing temperatures of - 30 °C and lower were closer to those of fresh human milk compared to - 18 °C. Furthermore, the lysozyme loss, lipid hydrolysis degree, and volatile organic compound production were lower. However, -18 °C quick freezing storage was not markedly different from -18 °C in maintaining human milk quality. Based on the results, for household and environmental reasons, the recommended temperature for storing human milk is suggested as -30 °C.


Asunto(s)
Frío , Leche Humana , Humanos , Congelación , Leche Humana/microbiología , Refrigeración , Lípidos
7.
Gut Microbes ; 16(1): 2290344, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38116652

RESUMEN

Bifidobacterium longum subsp. infantis is a prevalent member of the gut microbiota of breastfed infants. In this study, the effects of human breastmilk-derived B.longum subsp. infantis CCFM1269 on bone formation in developing BALB/c mice were investigated. Newborn female and male mice were assigned to control group (administered saline), CCFM11269 group (administered B. longum subsp. infantis CCFM1269, 1 × 109 CFU/mouse/day) and I5TI group (administered B. longum subsp. infantis I5TI, 1 × 109 CFU/mouse/day) from 1-week-old to 3-, 4- and 5-week old. B. longum subsp. infantis I5TI served as a negative control in this study. The results demonstrated that B. longum subsp. infantis CCFM1269 promoted bone formation in growing mice by modulating the composition of the gut microbiota and metabolites. The expression of genes and proteins in the PI3K/AKT pathway was stimulated by B. longum subsp. infantis CCFM1269 through the GH/IGF-1 axis in growing mice. This finding suggests B. longum subsp. infantis CCFM1269 may be useful for modulating bone metabolism during growth.


Asunto(s)
Bifidobacterium , Microbioma Gastrointestinal , Leche Humana , Osteogénesis , Animales , Femenino , Humanos , Lactante , Masculino , Ratones , Bifidobacterium longum subspecies infantis , Leche Humana/microbiología , Fosfatidilinositol 3-Quinasas/genética , Fosfatidilinositol 3-Quinasas/metabolismo , Proteínas Proto-Oncogénicas c-akt/genética , Proteínas Proto-Oncogénicas c-akt/metabolismo
8.
An. R. Acad. Nac. Farm. (Internet) ; 89(4): 485-490, Oct-Dic, 2023.
Artículo en Español | IBECS | ID: ibc-229821

RESUMEN

Se ha efectuado una revisión de la alimentación especial del lactante y niños de corta edad mediante fórmulas. La leche materna es siempre la referencia nutricional, el estándar de oro, de la alimentación del lactante, pero a veces es necesaria la alimentación con fórmulas. Así existen fórmulas de rutina destinadas al lactante sano o con trastornos digestivos menores como regurgitaciones, cólicos o estreñimiento y fórmulas para usos médicos especiales, diseñadas para lactantes prematuros o para utilizar en caso de lactantes que presentan reacciones adversas de los alimentos como la intolerancia a la lactosa, o alergias como la alergia a la proteína de la leche de vaca (APLV) o que padecen patologías severas como insuficiencia renal crónica o deficiencias metabólicas.(AU)


A review of the special feeding of infants and young children using formulas has been carried out. Breast milk is always the nutritional reference, the gold standard, for infant feeding, but sometimes formula feeding is necessary. Thus, there are routine formulas intended for healthy infants or those with minor digestive disorders such as regurgitation, colic or constipation, and formulas for special medical uses, designed for premature or low weight infants or to use with infants who have adverse reactions to food, as lactose intolerance, or allergies as the cow’s milk protein allergy (CMPA) or who suffer from severe pathologies such as chronic kidney failure or metabolic deficiencies.(AU)


Asunto(s)
Humanos , Masculino , Femenino , Lactante , Leche/microbiología , Lactancia , Leche Humana/microbiología , Fórmulas Infantiles , Reflujo Laringofaríngeo , Hipersensibilidad a la Leche
9.
Nutrients ; 15(22)2023 Nov 16.
Artículo en Inglés | MEDLINE | ID: mdl-38004196

RESUMEN

Microbiota colonization and development in early life is impacted by various host intrinsic (genetic) factors, but also diet, lifestyle, as well as environmental and residential factors upon and after birth. To characterize the impact of maternal nutrition and environmental factors on vaginally born infant gut microbiota composition, we performed an observational study in five distinct geographical areas in Vietnam. Fecal samples of infants (around 39 days old) and fecal and breast milk samples of their mothers (around 28 years) were collected. The microbiota composition of all samples was analyzed by 16S rRNA gene Illumina sequencing and a bioinformatics workflow based on QIIME. In addition, various breast milk components were determined. Strong associations between the geographically determined maternal diet and breast milk composition as well as infant fecal microbiota were revealed. Most notable was the association of urban Ha Noi with relatively high abundances of taxa considered pathobionts, such as Klebsiella and Citrobacter, at the expense of Bifidobacterium. Breast milk composition was most distinct in rural Ha Long Bay, characterized by higher concentrations of, e.g., docosahexaenoic acid (DHA), eicosapentaenoic acid (EPA), selenium, and vitamin B12, while it was characterized by, e.g., iron, zinc, and α-linolenic acid (ALA) in Ha Noi. Breast milk iron levels were positively associated with infant fecal Klebsiella and negatively with Bifidobacterium, while the EPA and DHA levels were positively associated with Bifidobacterium. In conclusion, differences between five regions in Vietnam with respect to both maternal breast milk and infant gut microbiota composition were revealed, most likely in part due to maternal nutrition. Thus, there could be opportunities to beneficially steer infant microbiota development in a more desired (rural instead of urban) direction through the mother's diet.


Asunto(s)
Microbioma Gastrointestinal , Leche Humana , Femenino , Humanos , Lactante , Leche Humana/microbiología , Madres , Microbioma Gastrointestinal/genética , ARN Ribosómico 16S/genética , Vietnam , Ácidos Docosahexaenoicos , Hierro , Lactancia Materna , Heces/microbiología
10.
Nutrients ; 15(20)2023 Oct 10.
Artículo en Inglés | MEDLINE | ID: mdl-37892398

RESUMEN

Mother's milk contains a unique microbiome that plays a relevant role in offspring health. We hypothesize that maternal malnutrition during lactation might impact the microbial composition of milk and affect adequate offspring gut colonization, increasing the risk for later onset diseases. Then, Wistar rats were fed ad libitum (Control, C) food restriction (Undernourished, U) during gestation and lactation. After birth, offspring feces and milk stomach content were collected at lactating day (L)4, L14 and L18. The V3-V4 region of the bacterial 16S rRNA gene was sequenced to characterize bacterial communities. An analysis of beta diversity revealed significant disparities in microbial composition between groups of diet at L4 and L18 in both milk, and fecal samples. In total, 24 phyla were identified in milk and 18 were identified in feces, with Firmicutes, Proteobacteria, Actinobacteroidota and Bacteroidota collectively representing 96.1% and 97.4% of those identified, respectively. A higher abundance of Pasteurellaceae and Porphyromonas at L4, and of Gemella and Enterococcus at L18 were registered in milk samples from the U group. Lactobacillus was also significantly more abundant in fecal samples of the U group at L4. These microbial changes compromised the number and variety of milk-feces or feces-feces bacterial correlations. Moreover, increased offspring gut permeability and an altered expression of goblet cell markers TFF3 and KLF3 were observed in U pups. Our results suggest that altered microbial communication between mother and offspring through breastfeeding may explain, in part, the detrimental consequences of maternal malnutrition on offspring programming.


Asunto(s)
Microbioma Gastrointestinal , Desnutrición , Microbiota , Ratas , Femenino , Animales , Leche/metabolismo , Lactancia/metabolismo , Ratas Wistar , ARN Ribosómico 16S/genética , Microbioma Gastrointestinal/genética , Leche Humana/microbiología , Dieta , Heces/microbiología , Bacterias/genética , Desnutrición/metabolismo
11.
Int J Med Sci ; 20(12): 1513-1526, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37859696

RESUMEN

Breast milk is widely recognized as the primary source of nourishment for newborns, making it an unparalleled and indispensable provider of essential nutrients, microbiological components, immunological factors, and energy content. To investigate this further, a cohort comprising 254 breastfeeding women participated in interviews, and milk samples were aseptically collected for subsequent analysis involving bromatological, microbiological, and clinical analysis. The investigation focused on the identification of specific microorganisms in breast milk and their susceptibility to the exposure of toxic substances and controlled medications. Notably, this study places particular emphasis on the significant decline in lactic acid bacteria observed in breast milk when influenced by substances such as cocaine, cannabis, crystal, and morphine. These detrimental agents have been found to adversely affect the growth of microorganisms within breast milk. On the contrary, the outcomes of this study indicate that the utilization of toxic substances does not exert a noteworthy impact on the nutritional quality of breast milk.


Asunto(s)
Cocaína , Lactobacillales , Humanos , Recién Nacido , Femenino , Lactancia Materna , Leche Humana/química , Leche Humana/microbiología , Cocaína/análisis
12.
Gut Microbes ; 15(2): 2257273, 2023 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-37741856

RESUMEN

Maternal secretor status has been shown to be associated with the presence of specific fucosylated human milk oligosaccharides (HMOs), and the impact of maternal secretor status on infant gut microbiota measured through 16s sequencing has previously been reported. None of those studies have confirmed exclusive breastfeeding nor investigated the impact of maternal secretor status on gut microbial fermentation products. The present study focused on exclusively breastfed (EBF) Indonesian infants, with exclusive breastfeeding validated through the stable isotope deuterium oxide dose-to-mother (DTM) technique, and the impact of maternal secretor status on the infant fecal microbiome and metabolome. Maternal secretor status did not alter the within-community (alpha) diversity, between-community (beta) diversity, or the relative abundance of bacterial taxa at the genus level. However, infants fed milk from secretor (Se+) mothers exhibited a lower level of fecal succinate, amino acids and their derivatives, and a higher level of 1,2-propanediol when compared to infants fed milk from non-secretor (Se-) mothers. Interestingly, for infants consuming milk from Se+ mothers, there was a correlation between the relative abundance of Bifidobacterium and Streptococcus, and between each of these genera and fecal metabolites that was not observed in infants receiving milk from Se- mothers. Our findings indicate that the secretor status of the mother impacts the gut microbiome of the exclusively breastfed infant.


Asunto(s)
Microbioma Gastrointestinal , Microbiota , Lactante , Femenino , Humanos , Lactancia Materna , Leche Humana/microbiología , Oligosacáridos/metabolismo , Metaboloma
13.
PLoS One ; 18(8): e0287839, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37556398

RESUMEN

The human milk microbiome (HMM) is hypothesized to be seeded by multiple factors, including the infant oral microbiome during breastfeeding. However, it is not known whether breastfeeding patterns (e.g., frequency or total time) impact the composition of the HMM. As part of the Mother-Infant Microbiomes, Behavior, and Ecology Study (MIMBES), we analyzed data from naturalistic observations of 46 mother-infant dyads living in the US Pacific Northwest and analyzed milk produced by the mothers for its bacterial diversity and composition. DNA was extracted from milk and the V1-V3 region of the 16S rRNA gene was amplified and sequenced. We hypothesized that number of breastfeeding bouts (breastfeeding sessions separated by >30 seconds) and total time breastfeeding would be associated with HMM α-diversity (richness, diversity, or evenness) and differential abundance of HMM bacterial genera. Multiple linear regression was used to examine associations between HMM α-diversity and the number of breastfeeding bouts or total time breastfeeding and selected covariates (infant age, maternal work outside the home, frequency of allomother physical contact with the infant, non-household caregiving network). HMM richness was inversely associated with number of breastfeeding bouts and frequency of allomother physical contact, but not total time breastfeeding. Infants' non-household caregiving network was positively associated with HMM evenness. In two ANCOM-BC analyses, abundances of 5 of the 35 most abundant genera were differentially associated with frequency of breastfeeding bouts (Bifidobacterium, Micrococcus, Pedobacter, Acidocella, Achromobacter); 5 genera (Bifidobacterium, Agreia, Pedobacter, Rugamonas, Stenotrophomonas) were associated with total time breastfeeding. These results indicate that breastfeeding patterns and infant caregiving ecology may play a role in influencing HMM composition. Future research is needed to identify whether these relationships are consistent in other populations and if they are associated with variation in the infant's gastrointestinal (including oral) microbiome.


Asunto(s)
Microbiota , Leche Humana , Femenino , Humanos , Lactante , Leche Humana/microbiología , Lactancia Materna , Madres , ARN Ribosómico 16S/genética , Microbiota/genética , Bacterias/genética
14.
Braz Oral Res ; 37: e078, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37531514

RESUMEN

The aim of this study was to describe the initial oral microbiota and how delivery mode and feeding practices impact its diversity in 0-2-month-old infants. This was a cross-sectional study that consisted of one collection of saliva samples from 0-2-month infants at baseline. Ten pairs of mothers and infants were selected. Medical health history, pregnancy, birth, feeding practices (breastfeeding or milk formula), and infant health status was obtained. Pooled microbial samples were obtained from the oral surfaces using a sterile cotton swab. Infants did not receive any breast milk before sampling. After collection, each swab was analyzed through microbiological culture-based procedures, using selective mediums. Cultures were analyzed for the presence of Streptococci, Lactobacillus, Staphylococcus, Enterobacterium , and Candida albicans . Twenty percent of the samples were serially diluted (10-2) to assess the number of bacteria expressed as CFU. Bacillota was the leading phylogenetic group in the infant's pooled microbial sample. The most prevalent genera were Streptococcus, Lactobacillus , and Staphylococcus . Two participants had a positive growth of Candida albicans . The association between genus group, type of delivery, and feeding practices was not statistically significant (p > 0.05). Lactobacillus genus was frequently present in the cesarean delivery group but with slightly higher counts in a vaginal delivery study subject. Exclusively breastfed infants showed presence of Streptococcus, Lactobacillus, Staphylococcus . The oral microbiome in infants (0-2 month-old) is highly heterogeneous and dynamic. Microbiota composition seems to be impacted by mode of delivery, with slight differences among groups. Breastmilk appears as an essential factor in maintaining the oral microbiome's stability and diversity.


Asunto(s)
Lactancia Materna , Microbiota , Femenino , Embarazo , Humanos , Lactante , Recién Nacido , Estudios Transversales , Filogenia , Leche Humana/microbiología , Streptococcus , Lactobacillus
15.
J Nutr ; 153(9): 2598-2611, 2023 09.
Artículo en Inglés | MEDLINE | ID: mdl-37423385

RESUMEN

BACKGROUND: Donor human milk banks use Holder pasteurization (HoP; 62.5°C, 30 min) to reduce pathogens in donor human milk, but this process damages some bioactive milk proteins. OBJECTIVES: We aimed to determine minimal parameters for high-pressure processing (HPP) to achieve >5-log reductions of relevant bacteria in human milk and how these parameters affect an array of bioactive proteins. METHODS: Pooled raw human milk inoculated with relevant pathogens (Enterococcus faecium, Staphylococcus aureus, Listeria monocytogenes, Cronobacter sakazakii) or microbial quality indicators (Bacillus subtilis and Paenibacillus spp. spores) at 7 log CFU/mL was processed at 300-500 MPa at 16-19°C (due to adiabatic heating) for 1-9 min. Surviving microbes were enumerated using standard plate counting methods. For raw milk, and HPP-treated and HoP-treated milk, the immunoreactivity of an array of bioactive proteins was assessed via ELISA and the activity of bile salt-stimulated lipase (BSSL) was determined via a colorimetric substrate assay. RESULTS: Treatment at 500 MPa for 9 min resulted in >5-log reductions of all vegetative bacteria, but <1-log reduction in B. subtilis and Paenibacillus spores. HoP decreased immunoglobulin A (IgA), immunoglobulin M (IgM), immunoglobulin G, lactoferrin, elastase and polymeric immunoglobulin receptor (PIGR) concentrations, and BSSL activity. The treatment at 500 MPa for 9 min preserved more IgA, IgM, elastase, lactoferrin, PIGR, and BSSL than HoP. HoP and HPP treatments up to 500 MPa for 9 min caused no losses in osteopontin, lysozyme, α-lactalbumin and vascular endothelial growth factor. CONCLUSION: Compared with HoP, HPP at 500 MPa for 9 min provides >5-log reduction of tested vegetative neonatal pathogens with improved retention of IgA, IgM, lactoferrin, elastase, PIGR, and BSSL in human milk.


Asunto(s)
Lactoferrina , Leche Humana , Recién Nacido , Humanos , Leche Humana/microbiología , Viabilidad Microbiana , Factor A de Crecimiento Endotelial Vascular , Pasteurización/métodos , Inmunoglobulina A , Inmunoglobulina M , Elastasa Pancreática
16.
Nutrients ; 15(11)2023 May 26.
Artículo en Inglés | MEDLINE | ID: mdl-37299446

RESUMEN

Allergic diseases, which are closely related to the composition and metabolism of maternal and infant flora, are prevalent in infants worldwide. The mother's breast milk, intestinal, and vaginal flora directly or indirectly influence the development of the infant's immune system from pregnancy to lactation, and the compositional and functional alterations of maternal flora are associated with allergic diseases in infants. Meanwhile, the infant's own flora, represented by the intestinal flora, indicates and regulates the occurrence of allergic diseases and is altered with the intervention of allergic diseases. By searching and selecting relevant literature in PubMed from 2010 to 2023, the mechanisms of allergy development in infants and the links between maternal and infant flora and infant allergic diseases are reviewed, including the effects of flora composition and its consequences on infant metabolism. The critical role of maternal and infant flora in allergic diseases has provided a window for probiotics as a microbial therapy. Therefore, the uses and mechanisms by which probiotics, such as lactic acid bacteria, can help to improve the homeostasis of both the mother and the infant, and thereby treat allergies, are also described.


Asunto(s)
Hipersensibilidad , Microbiota , Femenino , Embarazo , Humanos , Lactante , Hipersensibilidad/prevención & control , Lactancia Materna , Leche Humana/microbiología , Lactancia
17.
FEMS Microbiol Lett ; 3702023 01 17.
Artículo en Inglés | MEDLINE | ID: mdl-37327082

RESUMEN

Human milk is the optimal nutrition source for infants and contains a complex mix of bioactive compounds and microorganisms. When unavailable, pasteurized donor milk may be provided, particularly to preterm infants. Holder pasteurization (HP) is typically implemented in human milk banks to prevent pathogen transmission. Given the impact of heat on milk bioactives, ultraviolet-C irradiation (UV-C) is an alternative being explored and has demonstrated effective bactericidal activity. In addition to bacteria, milk contains viruses, including primarily bacteriophages (phages) and which likely influence the developing bacterial microbiome of infants. However, the effect of pasteurization on human milk phages is unknown. This study assessed the effect of HP and UV-C on titres of exogenous bacteriophages inoculated into human milk. Ten donor human milk samples were tested in parallel with water controls. Milk samples or water controls were inoculated to a final concentration of 1 × 104 PFU/mL (±1 log) each of a thermotolerant Escherichia coli phage (T4) and a thermosensitive Staphylococcus aureus phage (BYJ20) and subjected to HP and UV-C treatments. UV-C inactivated both phages within milk and water controls, however, HP was ineffective against the thermotolerant T4 phages. Initial data suggest that UV-C treatment may eliminate phage with potential to affect preterm infant gut colonization. Further studies should extend this to other phages.


Asunto(s)
Bacteriófagos , Leche Humana , Lactante , Recién Nacido , Humanos , Leche Humana/microbiología , Pasteurización , Recien Nacido Prematuro , Bacterias
18.
Breastfeed Med ; 18(7): 534-539, 2023 07.
Artículo en Inglés | MEDLINE | ID: mdl-37367215

RESUMEN

Background: The Human Milk Banking Association of North America (HMBANA) sets the purity and quality standards for donor human milk (DHM) in the United States, which includes zero bacterial presence after Holder pasteurization. This study aimed to determine if nutrient and bacterial composition of DHM with limited bacterial presence after pasteurization change over 4 days of refrigerated storage. Methods: Twenty-five unique samples of DHM with limited bacterial growth postpasteurization were collected from two HMBANA milk banks. Infant formula was used as a comparison. Samples were stored in the refrigerator and a portion of milk was removed at 24-hour intervals beginning at hour 0 to 96 for analysis. Aerobic bacteria, protein, lactose, and immunoglobulin A (IgA) content were measured. Longitudinal changes between 0 and 96 hours were analyzed using repeated measures analysis of variance and mixed models test. p < 0.05 was deemed significant. Results: There was no significant difference in lactose, protein, bacteria, or IgA content over storage duration (p = 0.649, p = 0.690, and p = 0.385, p = 0.805, respectively). Total aerobic bacteria were less than 102 colony-forming units (CFUs) in 81% of the time points tested for DHM samples. Total aerobic bacteria were too many to count (>300 CFUs) in the infant formula sample at all time points. Conclusion: In periods of high demand for DHM, DHM with low bacteria growth postpasteurization may be an option as a supplemental food for the growing number of healthy infants who receive DHM. Future studies should investigate the bacterial strains in this milk.


Asunto(s)
Bancos de Leche Humana , Leche Humana , Femenino , Humanos , Leche Humana/microbiología , Pasteurización , Lactosa , Lactancia Materna , Nutrientes , Inmunoglobulina A
19.
Microbiol Spectr ; 11(3): e0066523, 2023 06 15.
Artículo en Inglés | MEDLINE | ID: mdl-37191543

RESUMEN

Multiple millennia of human evolution have shaped the chemical composition of breast milk toward an optimal human body fluid for nutrition and protection and for shaping the early gut microbiota of newborns. This biological fluid is composed of water, lipids, simple and complex carbohydrates, proteins, immunoglobulins, and hormones. Potential interactions between hormones present in mother's milk and the microbial community of the newborn are a very fascinating yet unexplored topic. In this context, insulin, in addition to being one of the most prevalent hormones in breast milk, is also involved in a metabolic disease that affects many pregnant women, i.e., gestational diabetes mellitus (GDM). Analysis of 3,620 publicly available metagenomic data sets revealed that the bifidobacterial community varies in relation to the different concentrations of this hormone in breast milk of healthy and diabetic mothers. Starting from this assumption, in this study, we explored possible molecular interactions between this hormone and bifidobacterial strains that represent bifidobacterial species commonly occurring in the infant gut using 'omics' approaches. Our findings revealed that insulin modulates the bifidobacterial community by apparently improving the persistence of the Bifidobacterium bifidum taxon in the infant gut environment compared to other typical infant-associated bifidobacterial species. IMPORTANCE Breast milk is a key factor in modulating the infant's intestinal microbiota composition. Even though the interaction between human milk sugars and bifidobacteria has been extensively studied, there are other bioactive compounds in human milk that may influence the gut microbiota, such as hormones. In this article, the molecular interaction of the human milk hormone insulin and the bifidobacterial communities colonizing the human gut in the early stages of life has been explored. This molecular cross talk was assessed using an in vitro gut microbiota model and then analyzed by various omics approaches, allowing the identification of genes associated with bacterial cell adaptation/colonization in the human intestine. Our findings provide insights into the manner by which assembly of the early gut microbiota may be regulated by host factors such as hormones carried by human milk.


Asunto(s)
Microbioma Gastrointestinal , Microbiota , Lactante , Humanos , Recién Nacido , Femenino , Embarazo , Leche Humana/metabolismo , Leche Humana/microbiología , Bifidobacterium/genética , Bifidobacterium/metabolismo , Insulina/metabolismo , Heces/microbiología
20.
Curr Biol ; 33(10): 1939-1950.e4, 2023 05 22.
Artículo en Inglés | MEDLINE | ID: mdl-37116481

RESUMEN

The human microbiome seeding starts at birth, when pioneer microbes are acquired mainly from the mother. Mode of delivery, antibiotic prophylaxis, and feeding method have been studied as modulators of mother-to-infant microbiome transmission, but other key influencing factors like modern westernized lifestyles with high hygienization, high-calorie diets, and urban settings, compared with non-westernized lifestyles have not been investigated yet. In this study, we explored the mother-infant sharing of characterized and uncharacterized microbiome members via strain-resolved metagenomics in a cohort of Ethiopian mothers and infants, and we compared them with four other cohorts with different lifestyles. The westernized and non-westernized newborns' microbiomes composition overlapped during the first months of life more than later in life, likely reflecting similar initial breast-milk-based diets. Ethiopian and other non-westernized infants shared a smaller fraction of the microbiome with their mothers than did most westernized populations, despite showing a higher microbiome diversity, and uncharacterized species represented a substantial fraction of those shared in the Ethiopian cohort. Moreover, we identified uncharacterized species belonging to the Selenomonadaceae and Prevotellaceae families specifically present and shared only in the Ethiopian cohort, and we showed that a locally produced fermented food, injera, can contribute to the higher diversity observed in the Ethiopian infants' gut with bacteria that are not part of the human microbiome but are acquired through fermented food consumption. Taken together, these findings highlight the fact that lifestyle can impact the gut microbiome composition not only through differences in diet, drug consumption, and environmental factors but also through its effect on mother-infant strain-sharing patterns.


Asunto(s)
Microbioma Gastrointestinal , Microbiota , Femenino , Humanos , Lactante , Recién Nacido , Bacterias , Leche Humana/microbiología , Madres , Heces/microbiología
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