Key result
An inactivated CVA4 whole-virus vaccine provided complete protection against lethal dose challenges in a newly established neonatal ICR mouse model of CVA4 infection.
Why the study?
Coxsackievirus A4 infection causes hand, foot and mouth disease that can progress to severe neurological disease with high mortality, prompting the need for an animal model to evaluate vaccines and antiviral drugs.
The established neonatal murine model of CVA4 infection is viable for evaluating vaccines and antiviral drugs, demonstrating the protective efficacy of an inactivated vaccine and IFN-α2a.
Supports preclinical CVA4 vaccine evaluation; leaves open human translation from this animal model.
Coxsackievirus A4 (CVA4) infection can cause hand, foot and mouth disease (HFMD), an epidemic illness affecting neonatal and paediatric cohorts, which can develop to severe neurological disease with high mortality. In this study, we established the first ICR mouse model of CVA4 infection for the evaluation of inactivated vaccines and antiviral drug screening. The CVA4 YT226R strain was selected to infect the neonatal mice and three infectious factors were optimized to establish the infection model. The 3-day-old neonatal mice exhibited clinical symptoms such as hind limb paralysis and death. The severe inflammatory reactions were closely related to the abnormal expression of the acute phase response proinflammatory cytokine IL-6 and an imbalance in the IFN-γ/IL-4 ratio. Importantly, the inactivated CVA4 whole-virus vaccine induced humoral immune responses in adult females and the maternal antibodies afforded mice complete protection against lethal dose challenges of homologous or heterologous CVA4 strains. Both IFN-α2a and antiserum inhibited the replication of CVA4 and increased the survival rates of neonatal mice during the early stages of infection. This neonatal murine model of CVA4 infection will be useful for the development of prophylactic and therapeutic vaccines and for screening of antiviral drugs targeting CVA4 to decrease morbidity and mortality.
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Zhang et al. (2019) studied Coxsackievirus A4 (CVA4) infection. Inactivated CVA4 whole-virus vaccine, IFN-α2a, and antiserum was evaluated on Protection against lethal dose challenges and survival rates. An inactivated CVA4 whole-virus vaccine provided complete protection against lethal dose challenges in a newly established neonatal ICR mouse model of CVA4 infection.
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