Xenobiotic tracers uncover the neonatal gastrointestinal passage, cellular uptake and Ago2 loading of milk miRNAs in neonates
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Whether milk microRNAs might vertically transmit signals for neonatal development or not remains an outstanding question with clinical implications. Deep-sequencing revealed that mammals have in common a significant number of milk miRNAs yet exhibit taxon-specific milk miRNA fingerprints. We could trace intact bovine-specific microRNAs from formula-nutrition in human preterm stool and 9 days after the onset of enteral feeding in intestinal cells of a preterm piglet model. Few hours after the introduction of enteral feeding with reporter microRNA-supplementation (cel-miR-39-5p/-3p), we observed enrichment of this xenobiotic microRNA in blood serum and in Ago2-immunocomplexes from intestinal biopsies. This points to a relevance of milk microRNA signals. We performed Adenovirus type 5-based microRNA-gene transfer into human primary intestinal epithelial cells and examined predicted bta-miRs targets on the protein and transcriptome levels. Results suggest that milk microRNAs could influence the expression of human genes in intestinal epithelia of neonates under special conditions in vitro.



