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A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
A mouse model of paralytic myelitis caused by enterovirus D68
Alison M Hixon1,2, Guixia Yu3,4, J Smith Leser5
1Medical Scientist Training Program, University of Colorado School of Medicine, Aurora, CO, United States of America.
Abstract:
In 2014, the United States experienced an epidemic of acute flaccid myelitis (AFM) cases in children coincident with a nationwide outbreak of enterovirus D68 (EV-D68) respiratory disease. Up to half of the 2014 AFM patients had EV-D68 RNA detected by RT-PCR in their respiratory secretions, although EV-D68 was only detected in cerebrospinal fluid (CSF) from one 2014 AFM patient. Given previously described molecular and epidemiologic associations between EV-D68 and AFM, we sought to develop an animal model by screening seven EV-D68 strains for the ability to induce neurological disease in neonatal mice. We found that four EV-D68 strains from the 2014 outbreak (out of five tested) produced a paralytic disease in mice resembling human AFM. The remaining 2014 strain, as well as 1962 prototype EV-D68 strains Fermon and Rhyne, did not produce, or rarely produced, paralysis in mice. In-depth examination of the paralysis caused by a representative 2014 strain, MO/14-18947, revealed infectious virus, virion particles, and viral genome in the spinal cords of paralyzed mice. Paralysis was elicited in mice following intramuscular, intracerebral, intraperitoneal, and intranasal infection, in descending frequency, and was associated with infection and loss of motor neurons in the anterior horns of spinal cord segments corresponding to paralyzed limbs. Virus isolated from spinal cords of infected mice transmitted disease when injected into naïve mice, fulfilling Koch's postulates in this model. Finally, we found that EV-D68 immune sera, but not normal mouse sera, protected mice from development of paralysis and death when administered prior to viral challenge. These studies establish an experimental model to study EV-D68-induced myelitis and to better understand disease pathogenesis and develop potential therapies.
Insights
A new mouse model shows that enterovirus D68 (EV-D68) can cause paralytic disease similar to acute flaccid myelitis (AFM). This research helps understand EV-D68
Area of Science:
- Virology
- Neurology
- Infectious Diseases
Background:
- The 2014 United States epidemic of acute flaccid myelitis (AFM) in children coincided with a nationwide enterovirus D68 (EV-D68) outbreak.
- EV-D68 RNA was detected in respiratory secretions of up to half of AFM patients, but rarely in cerebrospinal fluid (CSF).
- Prior molecular and epidemiological data suggested a link between EV-D68 and AFM.
Purpose of the Study:
- To develop an animal model for studying EV-D68-induced neurological disease.
- To screen EV-D68 strains for their ability to cause paralysis in neonatal mice.
Main Methods:
- Seven EV-D68 strains were screened for neurovirulence in neonatal mice.
- Paralysis was induced via various infection routes (intramuscular, intracerebral, intraperitoneal, intranasal).
- Histopathology examined spinal cord motor neurons; viral presence confirmed by RT-PCR and electron microscopy.
- Koch's postulates were fulfilled by transmitting disease from infected mice to naïve mice.
- Efficacy of EV-D68 immune sera in protection against paralysis was evaluated.
Main Results:
- Four of five EV-D68 strains from the 2014 outbreak induced paralytic disease in mice, resembling human AFM.
- Infectious virus, virions, and viral genome were found in the spinal cords of paralyzed mice.
- Motor neuron loss in the anterior horns of the spinal cord correlated with paralysis.
- EV-D68 immune sera, but not normal sera, provided protection against paralysis and death.
Conclusions:
- An experimental mouse model for EV-D68-induced myelitis has been established.
- This model allows for the study of disease pathogenesis and the development of potential therapies.
- The findings support EV-D68 as a causative agent of AFM.

