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A novel murine model mimicking male genital Neisseria species infection using Neisseria musculi†

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posted on 2025-07-23, 01:25 authored by ER Bryan, J McRae, V Kumar, LK Trim, TI Maidment, JAD Tickner, EL Sweeney, ED Williams, DM Whiley, KW Beagley
Abstract With ~78 million cases yearly, the sexually transmitted bacterium Neisseria gonorrhoeae is an urgent threat to global public health due to continued emergence of antimicrobial resistance. In the male reproductive tract, untreated infections may cause permanent damage, poor sperm quality, and subsequently subfertility. Currently, few animal models exist for N. gonorrhoeae infection, which has strict human tropism, and available models have limited translatability to human disease. The absence of appropriate models inhibits the development of vital new diagnostics and treatments. However, the discovery of Neisseria musculi, a mouse oral cavity bacterium, offers much promise. This bacterium has already been used to develop an oral Neisseria infection model, but the feasibility of establishing urogenital gonococcal models is unexplored. We inoculated mice via the intrapenile route with N. musculi. We assessed bacterial burden throughout the male reproductive tract, the systemic and tissue-specific immune response 2-weeks postinfection, and the effect of infection on sperm health. Neisseria musculi was found in penis (2/5) and vas deferens (3/5) tissues. Infection altered immune cell counts: CD19+ (spleen, lymph node, penis), F4/80+ (spleen, lymph node, epididymus), and Gr1+ (penis) compared with noninfected mice. This culminated in sperm from infected mice having poor viability, motility, and morphology. We hypothesize that in the absence of testis infection, infection and inflammation in other reproductive is sufficient to damage sperm quality. Many results herein are consistent with outcomes of gonorrhoea infection, indicating the potential of this model as a tool for enhancing the understanding of Neisseria infections of the human male reproductive tract.

History

Related Materials

Location

Oxford, Eng.

Open access

  • Yes

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Journal

Biology of Reproduction

Volume

111

Pagination

613-624

ISSN

0006-3363

eISSN

1529-7268

Issue

3

Publisher

Oxford University Press