This study aims to investigate the changes in the microbiota at different body sites in late pregnancy, in comparison with non-pregnant women, with particular emphasis on archaea, and to identify possible maternal-to-child transfer routes for acquisition of strictly anaerobic microorganisms by analyzing the gut microbiota of new born infants (delivered vaginally or by C-section).
The investigators hypothesize that changes occur in the microbial community during pregnancy in different body sites (vagina, oral etc.) and that the main source of these microorganisms is the mother for vaginally born infants, while C-section born infants acquire most of the anaerobic microbial communities from other sources rather than mother's vaginal and gut microbiota, such as the environment. Specific Research Objectives will be: 1. To investigate diversity of archaea in the vagina of healthy women in the context with community state types (CSTs), and compare vaginal microbiome in pregnant with non-pregnant healthy women. 2. To identify the presence of archaea in different body sites (oral, gut) or body fluids (amniotic fluid, urine, human milk) within the perinatal microbial communities. 3. To investigate the presence of archaea in the infant's first-days-of-life intestinal community, and to identify the sources of these microorganisms by using source tracking approach. 4. To investigate Human Milk Oligosaccharides (HMOs) in maternal (serum, saliva, urine, breast milk) or intrauterine sources (amniotic fluid) as potential modifiers of the microbial communities in these sites. 5. To analyze associations of maternal/ intrauterine HMOs with infant HMOs and microbiota (meconium and infant stool) in order to investigate vertical transmission of microbiota to the infant.
Study Type
OBSERVATIONAL
Enrollment
94
Medical University of Graz
Graz, Austria
maternal microbiome
difference between non-pregnant and pregnant women
Time frame: 2020-2023
fetal/neonatal microbiome
difference between vaginal and C-section born infants
Time frame: 2020-2023
Human milk oligosaccharides
associations of HMOs with maternal/infant microbiome
Time frame: 2020-2023
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