1. HHV-6A Infection of Endometrial Epithelial Cells Affects miRNA Expression and Trophoblast Cell Attachment.
- Author
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Bortolotti D, Soffritti I, D'Accolti M, Gentili V, Di Luca D, Rizzo R, and Caselli E
- Subjects
- Cell Line, Cell Line, Tumor, Choriocarcinoma metabolism, Choriocarcinoma virology, Endometrium metabolism, Epithelial Cells metabolism, Female, Humans, Trophoblasts metabolism, Uterine Neoplasms metabolism, Uterine Neoplasms virology, Cell Adhesion, Endometrium virology, Epithelial Cells virology, Herpesvirus 6, Human metabolism, MicroRNAs metabolism, Roseolovirus Infections metabolism, Trophoblasts virology
- Abstract
We recently reported that human herpesvirus 6 (HHV-6) infection is frequently present in endometrial tissue of women with unexplained infertility, and that virus infection induces a profound remodulation of miRNA expression in human cells of different origin. Since specific miRNA patterns have been associated with specific pregnancy outcomes, we aimed to analyze the impact of HHV-6A infection on miRNAs expression and trophoblast receptivity in human endometrial cells. To this purpose, a human endometrial cell line (HEC-1A) was infected with HHV-6A and analyzed for alterations in the expression of miRNAs and for permissiveness to the attachment of a human choriocarcinoma trophoblast cell line (JEG-3). The results showed that HHV-6A infection of endometrial cells up-modulates miR22 (26-fold), miR15 (19.5-fold), and miR196-5p (12.1 fold), that are correlated with implant failure, and down-modulates miR18 (11.4 fold), miR101-3p (4.6 fold), miR181-5p (4.9 fold), miR92 (3.3 fold), and miR1207-5p (3.9 fold), characterized by a low expression in preeclampsia. Moreover, HHV-6A-infected endometrial cells infected resulted less permissive to the attachment of trophoblast cells. In conclusion, collected data suggest that HHV-6A infection could modify miRNA expression pattern and control of trophoblast cell adhesion of endometrial cells, undermining a correct trophoblast cell attachment on endometrial cells.
- Published
- 2020
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