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Predominance of Atopobium vaginae at Midtrimester: a Potential Indicator of Preterm Birth Risk in a Nigerian Cohort
Nkechi Martina Odogwu1,2,3,4, Jun Chen3,5, Chinedum Amara Onebunne6
1Pan African University Life and Earth Sciences Institute (PAULESI), University of Ibadan, Ibadan, Nigeria nkechiodogwu27@gmail.com Chia.Nicholas@mayo.edu.
Abstract:
Preterm birth (PTB) is the largest contributor to infant death in sub-Saharan Africa and globally. With a global estimate of 773,600, Nigeria has the third highest rate of PTB worldwide. There have been a number of microbiome profiling studies to identify vaginal microbiomes suggestive of preterm and healthy birth outcome. However, studies on the pregnancy vaginal microbiome in Africa are sparse with none performed in Nigeria. Moreover, few studies have considered the concurrent impact of steroid hormones and the vaginal microbiome on pregnancy outcome. We assessed two key determinants of pregnancy progression to gain a deeper understanding of the interactions between vaginal microbiome composition, steroid hormone concentrations, and pregnancy outcome. Vaginal swabs and blood samples were prospectively collected from healthy midtrimester pregnant women. Vaginal microbiome compositions were assessed by analysis of the V3-V5 region of 16S rRNA genes, and potential functional metabolic traits of identified vaginal microbiomes were imputed by PICRUSt (phylogenetic investigation of communities by reconstruction of unobserved states) analysis, while plasma estradiol (E2) and progesterone (P1) levels were quantified by the competitive enzyme-linked immunosorbent assay (ELISA). PTB vaginal samples were characterized by increased microbial richness, high diversity, and depletion of lactobacilli compared to term delivery samples. Women who delivered preterm were characterized by an Atopobium vaginae-dominated vagitype. High relative abundance of Atopobium vaginae at the midtrimester was highly predictive of PTB (area under the receiving operator characteristics [AUROC] of 0.983). There was a marked overlap in the range of plasma E2 and P1 values between term and PTB groups.IMPORTANCE Giving birth too soon accounts for half of all newborn deaths worldwide. Clinical symptoms alone are not sufficient to identify women at risk of giving birth too early, as such a pragmatic approach to reducing the incidence of preterm birth entails developing early strategies for intervention before it materializes. In view of the role played by the vaginal microbiome and maternal steroid hormones in determining obstetric outcome, we assessed the vaginal microbiome composition and steroid hormone during pregnancy and examined their relationship in predicting preterm birth risk in Nigerian women. This study highlights a potential early-driver microbial marker for prediction of preterm birth risk and supports the notion that vaginal microbiome composition varies across populations. A knowledge of relevant preterm birth microbial markers specific to populations would enhance the development of personalized therapeutic interventions toward restoring a microbiome that optimizes reproductive health fitness, therefore reducing the incidence of preterm birth.
Insights
Preterm birth in Nigeria is linked to a specific vaginal microbiome profile, dominated by Atopobium vaginae, which can be identified early in pregnancy. This microbial marker shows high predictive accuracy for preterm birth risk.
Area of Science:
- Reproductive Health
- Microbiome Research
- Maternal-Fetal Medicine
Background:
- Preterm birth (PTB) is a leading cause of infant mortality globally and in Nigeria.
- Vaginal microbiome studies for PTB prediction are scarce in African populations, particularly Nigeria.
- The interplay between vaginal microbiome, steroid hormones, and PTB risk remains underexplored in this demographic.
Purpose of the Study:
- To investigate the relationship between vaginal microbiome composition, steroid hormone levels (estradiol and progesterone), and preterm birth (PTB) risk in Nigerian women.
- To identify potential microbial biomarkers for early PTB prediction.
- To understand population-specific variations in the vaginal microbiome during pregnancy.
Main Methods:
- Prospective collection of vaginal swabs and blood samples from healthy pregnant women.
- 16S rRNA gene sequencing (V3-V5 region) for vaginal microbiome profiling.
- Plasma estradiol (E2) and progesterone (P1) quantification using ELISA.
- Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt) for metabolic trait imputation.
Main Results:
- Vaginal samples from PTB deliveries showed increased microbial richness, diversity, and a depletion of lactobacilli compared to term deliveries.
- A distinct vagitype dominated by *Atopobium vaginae* was characteristic of preterm births.
- High *Atopobium vaginae* abundance in mid-pregnancy was a strong predictor of PTB (AUROC 0.983).
- Plasma E2 and P1 levels showed considerable overlap between term and PTB groups.
Conclusions:
- *Atopobium vaginae*-dominated vaginal microbiome in mid-pregnancy is a highly predictive marker for PTB risk in Nigerian women.
- Vaginal microbiome composition is a significant factor in PTB, potentially more so than steroid hormone levels in this population.
- Identifying population-specific microbial markers can facilitate personalized interventions to reduce PTB incidence and improve reproductive health outcomes.
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