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Updated: Jan 19, 2026

Visualization of Gut Microbiota-host Interactions via Fluorescence In Situ Hybridization, Lectin Staining, and Imaging
Published on: July 9, 2021
Related Enteric Viruses Have Different Requirements for Host Microbiota in Mice
Christopher M Robinson1, Mikal A Woods Acevedo2, Broc T McCune2
1Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis, Indiana, USA.
Abstract:
Accumulating evidence suggests that intestinal bacteria promote enteric virus infection in mice. For example, previous work demonstrated that antibiotic treatment of mice prior to oral infection with poliovirus reduced viral replication and pathogenesis. Here, we examined the effect of antibiotic treatment on infection with coxsackievirus B3 (CVB3), a picornavirus closely related to poliovirus. We treated mice with a mixture of five antibiotics to deplete host microbiota and examined CVB3 replication and pathogenesis following oral inoculation. We found that, as seen with poliovirus, CVB3 shedding and pathogenesis were reduced in antibiotic-treated mice. While treatment with just two antibiotics, vancomycin and ampicillin, was sufficient to reduce CVB3 replication and pathogenesis, this treatment had no effect on poliovirus. The quantity and composition of bacterial communities were altered by treatment with the five-antibiotic cocktail and by treatment with vancomycin and ampicillin. To determine whether more-subtle changes in bacterial populations impact viral replication, we examined viral infection in mice treated with milder antibiotic regimens. Mice treated with one-tenth the standard concentration of the normal antibiotic cocktail supported replication of poliovirus but not CVB3. Importantly, a single dose of one antibiotic, streptomycin, was sufficient to reduce CVB3 shedding and pathogenesis while having no effect on poliovirus shedding and pathogenesis. Overall, replication and pathogenesis of CVB3 are more sensitive to antibiotic treatment than poliovirus, indicating that closely related viruses may differ with respect to their reliance on microbiota.IMPORTANCE Recent data indicate that intestinal bacteria promote intestinal infection of several enteric viruses. Here, we show that coxsackievirus, an enteric virus in the picornavirus family, also relies on microbiota for intestinal replication and pathogenesis. Relatively minor depletion of the microbiota was sufficient to decrease coxsackievirus infection, while poliovirus infection was unaffected. Surprisingly, a single dose of one antibiotic was sufficient to reduce coxsackievirus infection. Therefore, these data indicate that closely related viruses may differ with respect to their reliance on microbiota.
Insights
Intestinal bacteria promote coxsackievirus B3 (CVB3) infection. Antibiotic treatment depleting gut microbiota reduced CVB3 replication and disease, unlike poliovirus. Even a single antibiotic dose impacted CVB3, showing varied viral reliance on gut bacteria.
Area of Science:
- Microbiology
- Virology
- Gastroenterology
Background:
- Intestinal bacteria are increasingly recognized to promote enteric virus infections.
- Previous studies showed antibiotic treatment reduced poliovirus replication and pathogenesis in mice.
- The role of microbiota in coxsackievirus B3 (CVB3) infection remains less understood.
Purpose of the Study:
- To investigate the effect of antibiotic-induced microbiota depletion on CVB3 replication and pathogenesis.
- To compare the sensitivity of CVB3 and poliovirus infections to varying degrees of microbiota alteration.
Main Methods:
- Mice were treated with antibiotic mixtures or single antibiotics to deplete gut microbiota.
- Mice were orally inoculated with CVB3 or poliovirus.
- Viral shedding, replication, and pathogenesis were assessed in treated and untreated mice.
Main Results:
- Antibiotic treatment significantly reduced CVB3 shedding and pathogenesis, similar to poliovirus.
- CVB3 replication was sensitive to microbiota depletion, even with milder antibiotic regimens or a single antibiotic dose (streptomycin).
- Polio virus replication was less affected by microbiota changes compared to CVB3.
Conclusions:
- Coxsackievirus B3 replication and pathogenesis are highly dependent on the gut microbiota.
- CVB3 exhibits greater sensitivity to microbiota disruption than poliovirus, suggesting differential reliance on gut bacteria among related viruses.
- Minor alterations in gut bacterial communities can significantly impact CVB3 infection.
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