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Reot, L.

Publications and source records attributed to Reot, L..

2 recordsLinked to original sources

The vaginal microbiota composition influences cervicovaginal and systemic inflammation induced by Chlamydia trachomatis infection.

BackgroundChlamydiosis, a sexually transmitted infection (STI) induced by Chlamydia trachomatis (CT), increases local inflammation (cytokine production, recruitment of immune cells such as neutrophils). Few is known on the impact of CT infection on the phenotype of cervicovaginal neutrophils. Vaginal microbiota (VM) is a key factor in the regulation of local immune responses and STI acquisition where Lactobacillus spp are associated with protection. In this study, the VM of cynomolgus macaques was enriched with Lactobacillus crispatus after local metronidazole treatment followed by repeated intravaginal inoculations of CT. VM composition, CT infection and local and systemic inflammation were monitored. ResultsFirst, we observed that metronidazole treatment induced drastic modifications of the VM by reducing the abundance of several anaerobes and increasing the number of natural Lactobacillus spp (Lactobacillus johnsonii and its prophage mainly) as well as opportunistic bacteria (Streptococcus spp and Staphylococcus spp). After CT exposure of L. crispatus treated or not animals, a non-persisting CT infection and no association between L. crispatus enrichment and a lower susceptibility to CT infection were detected. However, the production of serum specific anti-CT IgG was higher in L. crispatus treated animals. Moreover, the production of anti-CT IgG was associated with various bacterial species. An increased production of peripheral blood cytokines after CT infection was observed in untreated animals, whereas L. crispatus treated animals exhibited an increased production of cervicovaginal cytokines. Peripheral blood neutrophils were more mature and activated after CT infection/inoculation in both groups. Very few alterations of the cervicovaginal neutrophil phenotype were noticed after CT infection. Markers expressed on neutrophils were associated with bacterial species and differences were detected according to groups. ConclusionThese results suggest a better local immune response as well as a better control on systemic inflammation upon CT infection in L. crispatus treated animals compared to untreated animals. Indeed, it highlight an impact of VM composition on the local and systemic immune responses induced by CT infection. This study confirmed that VM composition can be a powerful tool to modulate local inflammation and STI susceptibility.

immunology↗

Seminal plasma inhibits Chlamydia trachomatis infection in vitro, and may have consequences on mucosal immunity

Seminal plasma (SP) is the main vector of C. trachomatis (CT) during heterosexual transmission from male to female. It has immunomodulatory properties and impacts the susceptibility to HIV-1 infection, but its role has not been explored during CT infection. In the female reproductive tract (FRT), CT infection induces cytokine production and neutrophil recruitment. The role of neutrophils during CT infection is partially described, they could be at the origin of the pathology observed during CT infection. During this study, we developed an experimental in vitro model to characterize the impact of CT infection and SP on endocervical epithelial cell immune response in the FRT. We also studied the impact of the epithelial cell response on neutrophil phenotype and functions. We showed that the production by epithelial cells of pro-inflammatory cytokines increased during CT infection. Moreover, the pool of SP as well as individuals SP inhibited CT infection in a dose-dependent manner. The pool of SP inhibited cytokine production in a dose-dependent manner. The pool of SP altered gene expression profiles of infected cells. The culture supernatants of cells infected or not with CT, in presence or not of the pool of SP, had an impact on neutrophil phenotype and functions: they affected markers of neutrophil maturation, activation and adhesion capacity, as well as the survival, ROS production and phagocytosis ability. This study proposes a novel approach to study the impact of the environment on the phenotype and functions of neutrophils in the FRT. It highlights the impact of the factors of the FRT environment, in particular SP and CT infection, on the mucosal inflammation and the need to take into account the SP component while studying sexually transmitted infections during heterosexual transmission from male to female.

immunology↗