Oligosaccharides in 4 different milk groups, Bifidobacteria, and Ruminococcus obeum

The aim of this study was to identify a link between the total amount of breast milk oligosaccharides and faecal microbiota composition of newborns at the end of the first month of life, with special attention paid to bifidobacteria, and establish the role, if any, of the different oligosaccharides...

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Published inJournal of pediatric gastroenterology and nutrition Vol. 53; no. 1; p. 80
Main Authors Coppa, Giovanni V, Gabrielli, Orazio, Zampini, Lucia, Galeazzi, Tiziana, Ficcadenti, Anna, Padella, Lucia, Santoro, Lucia, Soldi, Sara, Carlucci, Antonio, Bertino, Enrico, Morelli, Lorenzo
Format Journal Article
LanguageEnglish
Published United States 01.07.2011
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Abstract The aim of this study was to identify a link between the total amount of breast milk oligosaccharides and faecal microbiota composition of newborns at the end of the first month of life, with special attention paid to bifidobacteria, and establish the role, if any, of the different oligosaccharides in determining the gut microbiota composition. Milk oligosaccharide groups were identified by high-performance anion exchange chromatography analysis. DPCRNA from newborns' faecal samples at 30 days of life was isolated and processed by polymerase chain reaction analyses that allow the identification of 6 species of bifidobacteria (adolescentis, bifidum, breve, catenulatum, longum, infantis) and Ruminococcus spp; denaturing gradient gel electrophoresis analysis was also performed. No substantial differences in bifidobacteria species composition within milk groups 1, 2, and 3 were observed; however, infants fed with group 4 milk show a microbiota characterised by a greater frequency of Bifidobacteria adolescentis and the absence of Bifidobacteria catenulatum. For the first time, a high percentage of the Ruminococcus genus in infants fed with all milk groups was found. Our data show that milk groups 1, 2, and 3, containing an amount of oligosaccharides ranging within 10 to 15 g/L, share a substantially identical composition of the intestinal microbiota in breast-fed infants, despite quali-quantitative difference in oligosaccharides content. Newborns taking milk with only 5 g/L of oligosaccharides (group 4) harbour a different intestinal microbiota.
AbstractList The aim of this study was to identify a link between the total amount of breast milk oligosaccharides and faecal microbiota composition of newborns at the end of the first month of life, with special attention paid to bifidobacteria, and establish the role, if any, of the different oligosaccharides in determining the gut microbiota composition. Milk oligosaccharide groups were identified by high-performance anion exchange chromatography analysis. DPCRNA from newborns' faecal samples at 30 days of life was isolated and processed by polymerase chain reaction analyses that allow the identification of 6 species of bifidobacteria (adolescentis, bifidum, breve, catenulatum, longum, infantis) and Ruminococcus spp; denaturing gradient gel electrophoresis analysis was also performed. No substantial differences in bifidobacteria species composition within milk groups 1, 2, and 3 were observed; however, infants fed with group 4 milk show a microbiota characterised by a greater frequency of Bifidobacteria adolescentis and the absence of Bifidobacteria catenulatum. For the first time, a high percentage of the Ruminococcus genus in infants fed with all milk groups was found. Our data show that milk groups 1, 2, and 3, containing an amount of oligosaccharides ranging within 10 to 15 g/L, share a substantially identical composition of the intestinal microbiota in breast-fed infants, despite quali-quantitative difference in oligosaccharides content. Newborns taking milk with only 5 g/L of oligosaccharides (group 4) harbour a different intestinal microbiota.
Author Zampini, Lucia
Carlucci, Antonio
Morelli, Lorenzo
Gabrielli, Orazio
Galeazzi, Tiziana
Soldi, Sara
Coppa, Giovanni V
Bertino, Enrico
Padella, Lucia
Santoro, Lucia
Ficcadenti, Anna
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  surname: Coppa
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  organization: Department of Clinical Sciences, Polytechnic University of Marche, Ospedali Riuniti, Presidio Salesi, Ancona, Italy
– sequence: 2
  givenname: Orazio
  surname: Gabrielli
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  surname: Padella
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  surname: Morelli
  fullname: Morelli, Lorenzo
BackLink https://www.ncbi.nlm.nih.gov/pubmed/21478759$$D View this record in MEDLINE/PubMed
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Snippet The aim of this study was to identify a link between the total amount of breast milk oligosaccharides and faecal microbiota composition of newborns at the end...
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StartPage 80
SubjectTerms Adult
Anion Exchange Resins
Bifidobacterium - classification
Bifidobacterium - isolation & purification
Bifidobacterium - metabolism
Breast Feeding
Chromatography, High Pressure Liquid
Denaturing Gradient Gel Electrophoresis
DNA, Bacterial - isolation & purification
DNA, Bacterial - metabolism
Feces - microbiology
Humans
Infant, Newborn
Italy
Lewis Blood-Group System - metabolism
Male
Milk, Human - metabolism
Molecular Typing
Oligosaccharides - chemistry
Oligosaccharides - metabolism
Pilot Projects
Polymerase Chain Reaction
Polysaccharides, Bacterial - chemistry
Polysaccharides, Bacterial - metabolism
Ruminococcus - classification
Ruminococcus - isolation & purification
Ruminococcus - metabolism
Title Oligosaccharides in 4 different milk groups, Bifidobacteria, and Ruminococcus obeum
URI https://www.ncbi.nlm.nih.gov/pubmed/21478759
Volume 53
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