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Microbial colonization of the human gastrointestinal tract plays an important role in establishing health and homeostasis. However, the time-dependent and related functional signatures of microbial and human proteins during early colonization of the gut have yet to be determined. Thus, we employed s...
ORGANISM(S): Homo sapiens (Human) 
2014-12-16 | PXD000114 | Pride
An integrated metagenomics and metaproteomics investigation of human preterm infant gut microbiota.
ORGANISM(S): Gut Microbiota Of Human Preterm Infants 
2017-02-23 | MSV000080565 | MassIVE
91 preterm infant gut metaproteomes measured in technical duplicate using an eleven salt pulse 2D-LC-MS/MS method. Samples represent 17 preterm infants over the first several weeks of life, of which 6 preterm infants eventually developed necrotizing enterocolitis.
ORGANISM(S): Microbiome 
Development of the gut microbiota is greatly impacted in preterm infants. Despite increasing knowledge about microbiota composition in preterm infants, knowledge about the functional signatures of the intestinal microbiota remains limited. The aim was to study transitions in microbiota activity duri...
ORGANISM(S): Bacteria (ncbitaxon:2) Homo Sapiens (ncbitaxon:9606) 
2017-10-17 | MSV000081616 | MassIVE
The evolutional trajectory of gut microbial colonization from birth has been shown to prime for health later in life. Here, we combined cultivation-independent 16S rRNA gene sequencing and metaproteomics to investigate the functional maturation of gut microbiota in faecal samples from full-term heal...
ORGANISM(S): Homo sapiens (Human) 
2018-07-16 | PXD009056 | Pride
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