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Updated: Apr 25, 2026

Influenza A Virus Studies in a Mouse Model of Infection
Published on: September 7, 2017
Immunodeficient mouse models with different disease profiles by in vivo infection with the same clinical isolate of
Chun-Che Liao1, An-Ting Liou2, Ya-Shu Chang3
1Graduate Institute of Life Sciences, National Defense Medical Center, Taipei, Taiwan Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan.
Unlabelled:
Like poliovirus infection, severe infection with enterovirus 71 (EV71) can cause neuropathology. Unlike poliovirus, EV71 is often associated with hand-foot-and-mouth disease (HFMD). Here we established three mouse models for experimental infection with the same clinical isolate of EV71. The NOD/SCID mouse model is unique for the development of skin rash, an HFMD-like symptom. While the NOD/SCID mice developed limb paralysis and death at near-100% efficiency, the gamma interferon receptor knockout (ifngr KO) and stat-1 knockout mice exhibited paralysis and death rates near 78% and 30%, respectively. Productive infection with EV71 depends on the viral dose, host age, and inoculation route. Levels of infectious EV71, and levels of VP1-specific RNA and protein in muscle, brain, and spinal cord, were compared side by side between the NOD/SCID and stat-1 knockout models before, during, and after disease onset. Spleen fibrosis and muscle degeneration are common in the NOD/SCID and stat-1 knockout models. The main differences between these two models include their disease manifestations and cytokine/chemokine profiles. The pathology of the NOD/SCID model includes (i) inflammation and expression of viral VP1 antigen in muscle, (ii) increased neutrophil levels and decreased eosinophil and lymphocyte levels, and (iii) hair loss and skin rash. The characteristic pathology of the stat-1 knockout model includes (i) a strong tropism of EV71 for the central nervous system, (ii) detection of VP1 protein in the Purkinje layer of cerebellar cortex, pons, brain stem, and spinal cord, (iii) amplification of microglial cells, and (iv) dystrophy of intestinal villi. Our comparative studies on these new models with oral or intraperitoneal (i.p.) infection underscored the contribution of host immunity, including the gamma interferon receptor, to EV71 pathogenesis.
Importance:
In the past decade, enterovirus 71 (EV71) has emerged as a major threat to public health in the Asia-Pacific region. Disease manifestations include subclinical infection, common-cold-like syndromes, hand-foot-and-mouth disease (HFMD), uncomplicated brain stem encephalitis, severe dysregulation of the autonomic nerve system, fatal pulmonary edema, and cardiopulmonary collapse. To date, no effective vaccine or treatment is available. A user-friendly and widely accessible animal model for researching EV71 infection and pathogenesis is urgently needed by the global community, both in academia and in industry.
Insights
New mouse models reveal how enterovirus 71 (EV71) causes severe disease. These models highlight the role of host immunity in EV71 pathogenesis, aiding future research for this public health threat.
Area of Science:
- Virology
- Immunology
- Pathology
Background:
- Enterovirus 71 (EV71) causes severe neurological disease and hand-foot-and-mouth disease (HFMD).
- EV71 is a significant public health concern in the Asia-Pacific region, with no current vaccine or treatment.
- There is an urgent need for accessible animal models to study EV71 infection and pathogenesis.
Purpose of the Study:
- To establish and characterize novel mouse models for experimental EV71 infection.
- To compare disease manifestations and host immune responses in different EV71 mouse models.
- To elucidate the contribution of host immunity, specifically the gamma interferon receptor, to EV71 pathogenesis.
Main Methods:
- Establishment of three mouse models: NOD/SCID, gamma interferon receptor knockout (ifngr KO), and stat-1 knockout.
- Experimental infection with a single EV71 clinical isolate via oral or intraperitoneal routes.
- Comparative analysis of viral load, pathological changes, and cytokine/chemokine profiles in different models.
Main Results:
- NOD/SCID mice uniquely developed HFMD-like skin rash, limb paralysis, and death (near 100% efficiency).
- Stat-1 knockout mice showed significant paralysis and death (approx. 30%) with strong EV71 tropism for the central nervous system.
- Both NOD/SCID and stat-1 knockout models exhibited spleen fibrosis and muscle degeneration, with distinct pathological features and immune responses.
Conclusions:
- The developed mouse models offer valuable tools for studying EV71 pathogenesis and host-virus interactions.
- Host immune factors, including the gamma interferon receptor and STAT1, play critical roles in controlling EV71 infection and disease severity.
- Comparative analysis of these models provides insights into the mechanisms underlying EV71-induced neuropathology and systemic disease.
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