4.7 Article

Il4ra-independent vaginal eosinophil accumulation following helminth infection exacerbates epithelial ulcerative pathology of HSV-2 infection

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CELL HOST & MICROBE
卷 29, 期 4, 页码 579-+

出版社

CELL PRESS
DOI: 10.1016/j.chom.2021.02.004

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资金

  1. German Research Foundation (DFG) [LA 2746/2]
  2. CNRS of Orleans (France)
  3. European funding in RegionCentre-Val de Loire (FEDER) [2016-00110366, EX005756]
  4. Poliomyelitis Research Foundation (PRF) [17/08]
  5. DFG
  6. National Research Foundation of South Africa (NRF) [120685]
  7. Research Council of Norway (Centre of Excellence) [223255/F50]
  8. Research Council of Norway (Young Research Talent) [274760]
  9. Wellcome Trust [203135/Z/16/Z]

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Research has shown that acute helminth infection induces a type 2 immune profile in the female genital tract, leading to increased epithelial ulceration and pathology during subsequent herpes simplex virus infection. This is mediated by an inflammatory circuit involving eosinophils, IL-33, and IL-5, which enhances the risk of vaginal epithelial necrosis and pathology.
How helminths influence the pathogenesis of sexually transmitted viral infections is not comprehensively understood. Here, we show that an acute helminth infection (Nippostrongylus brasiliensis [Nb]) induced a type 2 immune profile in the female genital tract (FGT). This leads to heightened epithelial ulceration and pathology in subsequent herpes simplex virus (HSV)-2 infection. This was IL-5-dependent but IL-4 receptor alpha (Il4ra) independent, associated with increased FGT eosinophils, raised vaginal IL-33, and enhanced epithelial necrosis. Vaginal eosinophil accumulation was promoted by IL-33 induction following targeted vaginal epithelium damage from a papain challenge. Inhibition of IL-33 protected against Nb-exacerbated HSV-2 pathology. Eosinophil depletion reduced IL-33 release and HSV-2 ulceration in Nb-infected mice. These findings demonstrate that Nb-initiated FGT eosinophil recruitment promotes an eosinophil, IL-33, and IL-5 inflammatory circuit that enhances vaginal epithelial necrosis and pathology following HSV-2 infection. These findings identify a mechanistic framework as to how helminth infections can exacerbate viral-induced vaginal pathology.

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