Preterm birth (PTB; < 37 weeks of gestation) impacts ~ 11% of all pregnancies and contributes to 1 million neonatal deaths worldwide annually. An understanding of the feto-maternal (F-M) signals...
Problem: Recent studies show that lower genital tract infection with genital mycoplasma may be associated with the pathology of female infertility. However, this association remains controversial due to the variable prevalence, sample sizes, and different methods used to diagnose genital mycoplasma infection. The aim of the present meta-analysis was to gain better understanding of the specific impact of genital mycoplasma on female infertility. Method of Study:A systematic review of literature on the association of genital mycoplasma (Mycoplasma genitalium, Mycoplasma hominis, Ureaplasma parvum, and Ureaplasma urealyticum) infection and female infertility was performed using three electronic databases: PubMed, Scopus, and CINAHL, from January 2000 to January 2020. Pooled odds ratio (OR) and 95% confidence intervals for genital mycoplasma infection and female infertility were derived from a fixed effects model. Results:This meta-analysis included eight studies conducted in six countries. Based on the results, women with infertility had a statistically higher odds of having any genital mycoplasma infection (p < .0001) compared to the control group. The pooled OR of all the included studies was 3.82 (95% CI: 2.55, 5.72). There was an unremarkable heterogeneity in all the studies included in this meta-analysis (I 2 = 0%, p = .48). A subgroup analysis also showed that M. genitalium, M. hominis, and U. urealyticum infections are significantly associated with female infertility. Conclusion:Our meta-analysis showed a significant association between M. genitalium, M. hominis, and U. urealyticum infections and female infertility. This evidence supports the development of guidelines for the diagnosis and treatment of genital mycoplasma infections to prevent female infertility.
A non-reversible state of epithelial to mesenchymal transition (EMT) at term accumulates proinflammatory mesenchymal cells and predisposes fetal membrane to weakening prior to delivery at term. We investigated the induction of EMT in amnion epithelial cells (AEC) in response to inflammation and infection associated with spontaneous preterm birth (SPTB). For this, membranes from SPTB were screened for EMT markers. Primary AEC in culture were treated with TNF-α (10 and 50 ng/mL) and LPS (50 and 100 ng/mL) for 72 h. Cell shape index (SI) was determined based on morphological shift (microscopy followed by ImageJ software analysis). Immunocytochemistry and Western blot assessed changes in epithelial markers (cytokeratin-18 and E-cadherin) and mesenchymal markers (vimentin and N-cadherin). Involvement of transforming growth factor beta (TGF-β) in EMT induction and EMT associated inflammation was tested using specific markers (Western blot) and by measuring MMP9 (ELISA), respectively. We report that PTB is associated with fetal membrane EMT. TNF-α produced dose- and time-dependent induction of EMT; within 24 h by 50 ng/mL and after 72 h by 10 ng/mL. AEC showed mesenchymal morphology, lower E-cadherin, higher vimentin and N-cadherin and higher MMP9 compared to control. TNF-α-induced EMT was not associated with canonical TGF-β pathway. LPS, regardless of dose or time, did not induce EMT in AEC. We conclude that PTB with intact membranes is associated with EMT. Our data suggest that inflammation, but not infection, is associated with non-canonical activation of EMT and inflammation that can predispose membrane to undergo weakening.
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