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Progesterone promotes CXCl2-dependent vaginal neutrophil killing by activating cervical resident macrophage–neutrophil crosstalk
Carla Gómez-Oro, Maria C. Latorre, Patricia Arribas-Poza, Alexandra Ibáñez-Escribano, Katia R. Baca-Cornejo, Jorge Gallego-Valle, Natalia López-Escobar, Mabel Mondéjar-Palencia, Marjorie Pion, Luis A. López-Fernández, Enrique Mercader, Federico Pérez-Milán, Miguel Relloso
Carla Gómez-Oro, Maria C. Latorre, Patricia Arribas-Poza, Alexandra Ibáñez-Escribano, Katia R. Baca-Cornejo, Jorge Gallego-Valle, Natalia López-Escobar, Mabel Mondéjar-Palencia, Marjorie Pion, Luis A. López-Fernández, Enrique Mercader, Federico Pérez-Milán, Miguel Relloso
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Research Article Endocrinology Infectious disease

Progesterone promotes CXCl2-dependent vaginal neutrophil killing by activating cervical resident macrophage–neutrophil crosstalk

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Abstract

Vaginal infections in women of reproductive age represent a clinical dilemma with significant socioeconomic implications. The current understanding of mucosal immunity failure during early pathogenic invasions that allows the pathogen to grow and thrive is far from complete. Neutrophils infiltrate most tissues following circadian patterns as part of normal repair, regulation of microbiota, or immune surveillance and become more numerous after infection. Neutrophils are responsible for maintaining vaginal immunity. Specific to the vagina, neutrophils continuously infiltrate at high levels, although during ovulation, they retreat to avoid sperm damage and permit reproduction. Here we show that, after ovulation, progesterone promotes resident vaginal macrophage–neutrophil crosstalk by upregulating Yolk sac early fetal organs (FOLR2+) macrophage CXCl2 expression, in a TNFA-patrolling monocyte-derived macrophage–mediated (CX3CR1hiMHCIIhi-mediated) manner, to activate the neutrophils’ capacity to eliminate sex-transmitted and opportunistic microorganisms. Indeed, progesterone plays an essential role in conciliating the balance between the commensal microbiota, sperm, and the threat of pathogens because progesterone not only promotes a flurry of neutrophils but also increases neutrophilic fury to restore immunity after ovulation to thwart pathogenic invasion after intercourse. Therefore, modest progesterone dysregulations could lead to a suboptimal neutrophilic response, resulting in insufficient mucosal defense and recurrent unresolved infections.

Authors

Carla Gómez-Oro, Maria C. Latorre, Patricia Arribas-Poza, Alexandra Ibáñez-Escribano, Katia R. Baca-Cornejo, Jorge Gallego-Valle, Natalia López-Escobar, Mabel Mondéjar-Palencia, Marjorie Pion, Luis A. López-Fernández, Enrique Mercader, Federico Pérez-Milán, Miguel Relloso

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Figure 5

P4 upregulates neutrophil killing competency by inducing TNFA expression in MdM-pat, which induces YsM to produce CXCl2.

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P4 upregulates neutrophil killing competency by inducing TNFA expression...
(A) CXCl2 expression in cervical YsM (F4/80-FOLR2) from ovariectomized estradiol- and progesterone-treated mice injected with clodronate liposomes 12 hours after the C. albicans challenge. Mann-Whitney U test (n = 5–6 mice per group). (B) CXCl2 expression in YsM (F4/80-FOLR2) in ovariectomized mice treated with progesterone and TNFA inhibitor (etanercept, 3 mg/kg) challenged in the vagina with C. albicans, analyzed via confocal microscopy using cervical sections. Mann-Whitney U test (n = 8 mice per group). (C) Progesterone and TNFA inhibitor–treated mice challenged in the vagina with C. albicans and treated with CXCl2 (160 ng) in the vagina 2 hours after the infection. Mann-Whitney U test (n = 7 mice per group). (D) Ovariectomized mice challenged in the vagina with C. albicans or T. vaginalis and treated with CXCl2 (160 ng) 2 hours after the infection. Number of live T. vaginalis cells by trypan blue staining and C. albicans fungal burden (CFU) in the vaginal lavage 12 hours after the challenge. Mann-Whitney U test (n = 8–10 mice per group). Confocal data were calculated in 2–4 different sections of each sample. Data were calculated in at least 3 experiments and expressed as box and whiskers, at 10–90 percentiles. *P < 0.05 and **P < 0.01. Mann-Whitney U test. Scale bar: 50 μm. CFU, colony-forming unit; YsM, Yolk sac–derived macrophages.

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