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Mouse Models Of Helicobacter Infection And Gastric Pathologies
Published on: October 18, 2018
Helicobacter Infection Significantly Alters Pregnancy Success in Laboratory Mice
Tara C Bracken1, Caitlin A Cooper1, Zil Ali1
1Department of Infectious Diseases and Center for Tropical and Emerging Global Diseases, University of Georgia, Athens, Georgia.
Abstract:
Helicobacter spp. are gram-negative, helically shaped bacteria that cause gastric and enterohepatic infections in mammalian species. Although Helicobacter infection frequently is implicated to interfere with reproductive success, few experimental data support these claims. We therefore retrospectively investigated the effect of Helicobacter infection on murine pregnancy outcome after the identification of endemic Helicobacter infection in an animal research facility. Multiplex conventional PCR analysis was used to characterize Helicobacter infection status in one inbred and 2 transgenic strains of mice in 2 self-contained rooms assigned to the same investigator. Outcomes of timed-mating experiments were compared among Helicobacter spp.-infected and uninfected mice of the same strain; Helicobacter infection was eradicated from the colony through fostering with uninfected dams. Although Helicobacter infection affected fecundity in only one strain of transgenic mouse, the total number of embryos per gravid uterus was significantly reduced in C57BL/6J mice that were infected with a single Helicobacter species, H. typhlonius. Helicobacter infection was also associated with a significant increase in the number of resorbing embryos per uterus and significant decreases in pregnancy-associated weight gain relative to uninfected mice in C57BL6/J mice and one transgenic strain. Helicobacter spp.-infected mice of all tested strains exhibited higher frequency of intrauterine hemorrhaging relative to uninfected mice. These results indicate that naturally-acquired Helicobacter infection not only reduces the productivity of a research animal breeding colony, but also negatively impacts embryo health. Despite these deleterious effects, these data suggest that colonies can be rederived to be Helicobacter-free by Cesarean section and fostering with uninfected dams. This paper provides the first evidence that H. typhlonius infection is sufficient to interfere with reproductive success and embryo health of C57BL/6J mice. Animal research facilities should therefore implement Helicobacter spp. surveillance and control practices to avoid confounding experimental results and to improve breeding colony efficiency.
Insights
Helicobacter infection negatively impacts mouse pregnancy outcomes, reducing embryo numbers and increasing resorptions. Eradicating Helicobacter spp. is crucial for improving research animal colony efficiency and data accuracy.
Area of Science:
- Veterinary Science
- Microbiology
- Reproductive Biology
Background:
- Helicobacter spp. are common bacterial pathogens in mammals.
- Existing evidence linking Helicobacter infection to reproductive issues is limited.
- Naturally acquired Helicobacter infection was identified in a research animal facility.
Purpose of the Study:
- To investigate the impact of Helicobacter infection on murine pregnancy outcomes.
- To determine if Helicobacter infection affects embryo health and pregnancy-associated weight gain.
- To provide evidence for the necessity of Helicobacter surveillance in research colonies.
Main Methods:
- Retrospective analysis of timed-mating experiments in infected and uninfected mice (inbred C57BL/6J and two transgenic strains).
- Multiplex conventional PCR used for Helicobacter spp. detection.
- Comparison of pregnancy outcomes including embryo number, resorptions, and weight gain.
Main Results:
- Helicobacter typhlonius infection significantly reduced embryo numbers in C57BL/6J mice.
- Increased embryo resorptions and decreased pregnancy weight gain were observed in infected mice.
- Higher frequency of intrauterine hemorrhaging noted in Helicobacter-infected mice across all strains.
Conclusions:
- Naturally acquired Helicobacter infection negatively affects murine embryo health and pregnancy success.
- Helicobacter infection can reduce the productivity of research animal breeding colonies.
- Implementing Helicobacter surveillance and control is essential for reliable research and colony efficiency.
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