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Mandelbrot, L.

Publications and source records attributed to Mandelbrot, L..

2 recordsLinked to original sources

Competitive advantage of hypervirulent Group B Streptococcus for neonatal colonization revealed by metagenomic analysis of gut microbiota

Group B Streptococcus (GBS) is the leading cause of neonatal invasive infections. Late-onset infections (7-89 days after birth) are caused by GBS clonal complex 17 (CC17) in 50-80% of cases, likely resulting from bacterial translocation across the intestinal barrier. However, the factors influencing GBS colonization in neonates are incompletely understood. We used shotgun metagenomics on fecal samples from 100 neonates aged 21 days and identified taxonomic signatures of GBS colonization, including decreased Enterobacter hormaechei abundance in neonates colonized by non-CC17 GBS. Using in vitro assays with representative isolates, we demonstrate that GBS CC17 competes more effectively than GBS non-CC17 against E. hormaechei, with enhanced adherence to enterocytes mediated by the CC17-specific HvgA adhesin. Our findings highlight lineage-dependent interspecies interactions of GBS that likely influence its ability to colonize the neonatal gut. These interactions must be considered when developing microbiota-based strategies to mitigate neonatal colonization and infection by GBS.

microbiology↗

Vaginal microbiota as a predictor of preterm birth: an observational cohort study

RationaleIncreasing evidence links vaginal microbiota composition and preterm birth (PTB). However, most metagenomic studies are relatively small-sized, do not systematically adjust for confounders, and are difficult to transpose in clinical settings. ObjectiveTo identify, using routine vaginal microbiological cultures, signatures of preterm labor (PTL), preterm premature rupture of membranes (PPROM), and PTB. MethodsWe conducted an observational cohort study from August 2018 until June 2023 in France. Pregnant women were enrolled in three groups: control, PTL and PPROM. Demographic, clinical data, and pregnancy outcome were collected. Vaginal swabs were collected at enrollment and microbiological cultures were performed. The association between bacterial species and PTL, PPROM, and PTB was studied in univariate analyses. Adjusted odds ratio (aOR) and 95% confidence intervals (CI) were calculated in multivariable analyses adjusting for confounding variables. Results1,848 women were included: 1,048 in the control group, 417 with PTL, and 383 with PPROM. Among women with PTL or PPROM, 328/646 (50.8%) spontaneously delivered preterm. Vaginal samples enriched in enterobacteria and in Gardnerella spp. were signatures of PTL. Lactobacilli depletion and enterobacteria enrichment were signatures of PPROM. In multivariable analysis, lactobacilli depletion was the strongest risk factor for spontaneous PTB (aOR 2.29, 95% CI 1.52-3.48). ConclusionsOur study corroborates previous findings demonstrating the protective role of lactobacilli during pregnancy and highlights enterobacteria as signatures of PTL and PPROM. Furthermore, it provides perspectives for the management of women at high risk of PTB using standard microbiological techniques. HighlightsO_LIVaginal microbiological analysis of 800 women with preterm labor or PPROM C_LIO_LIPreterm labor signatures include enterobacteria and Gardnerella enrichment C_LIO_LIPPROM signatures include lactobacilli depletion and enterobacteria enrichment C_LIO_LILactobacilli depletion is the strongest risk factor for preterm birth C_LI

microbiology↗