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Updated: Jun 19, 2026

A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
SPONTANEOUS ENCEPHALOMYELITIS OF MICE, A NEW VIRUS DISEASE
1Laboratories of the International Health Division, The Rockefeller Foundation, New York.
Abstract:
1. The characteristics of a filterable virus obtained from mice found spontaneously paralyzed and showing lesions of encephalomyelitis are described. 2. The course of the disease in mice, following intracerebral inoculation, is briefly as follows: After an incubation period varying from 7 to over 30 days a flaccid paralysis of one of the limbs appears. This paralysis usually spreads rapidly until all four limbs are affected. Young mice are more susceptible than older ones, and very young mice, less than 4 weeks of age, usually die without showing signs of paralysis. 3. Adult mice often show no signs of infection after an intracerebral inoculation of virus. A number of these mice, although showing no signs of paralysis, nevertheless have become infected, a fact which is demonstrated by recovery of the virus from the mice as well as by histopathological studies. 4. Intranasal instillation of the virus is the only other method of producing the infection. This method, however, produces paralysis in only a small percentage of the mice. Following intranasal instillation of the virus, there often develops a slight immunity to a subsequent intracerebral injection of virus. 5. The paralysis in the surviving mice recedes gradually, but a permanent residual paralysis, usually of the hind legs, is almost invariable. Such mice, however, are virus carriers, as the virus can be recovered from the spinal cord for 1 year after infection. 6. Paralyzed mice are immune to a subsequent intracerebral injection of the virus. There is evidence that neutralizing substances are present in the immune mice. A considerable proportion of the mice which have remained well after an intracerebral injection of virus are immune to a second injection. 7. The virus resists the action of 50 per cent glycerine at from 2-4 degrees C. for at least 150 days. It passes all grades of Berkefeld filters with ease. By the use of graded collodion filters, the size of the virus particle has been determined to be probably about 13 to 19 mmicro. 8. The virus of mouse encephalomyelitis is not pathogenic for rhesus monkeys. No evidence of immunological relationship with the virus of human poliomyelitis has been obtained. 9. The anatomical basis of the paralysis is an acute necrosis of the ganglion cells of the anterior horn of the spinal cord. Isolated ganglion cells of the cerebrum also undergo necrosis. Following the acute necrosis of the ganglion cells, there is a marked neuronophagia. A perivascular infiltration is observed in the brain and spinal cord.
Insights
This study describes a filterable virus causing mouse encephalomyelitis, leading to paralysis and spinal cord lesions. Infected mice develop immunity, and the virus is characterized by its size and resistance to glycerol.
Area of Science:
- Virology
- Neuroscience
- Pathology
Background:
- Spontaneous paralysis and encephalomyelitis lesions were observed in mice.
- A filterable virus was isolated from affected mice.
Purpose of the Study:
- To characterize the virus responsible for mouse encephalomyelitis.
- To understand the disease course, transmission, and pathological effects in mice.
Main Methods:
- Intracerebral inoculation and intranasal instillation of the virus in mice.
- Virus recovery and histopathological studies.
- Filtration experiments to determine virus size and resistance.
Main Results:
- Intracerebral inoculation caused flaccid paralysis, particularly in young mice.
- Infected mice developed immunity, with virus recoverable from spinal cords for up to a year.
- The virus particle size was estimated at 13-19 mmicro, and it was resistant to 50% glycerol.
- Pathology included acute necrosis of anterior horn ganglion cells and neuronophagia.
Conclusions:
- The characterized virus is the causative agent of mouse encephalomyelitis.
- The study details the pathogenesis, immune response, and physical properties of the virus.
- No pathogenicity was observed in rhesus monkeys, and no immunological relationship with human poliomyelitis virus was found.
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