Abstract
The penetration of the CVS strain of rabies virus and its avirulent derivative AvO1 into peripheral neurons was investigated after intramuscular inoculation into the forelimbs of adult mice. It was found that CVS directly penetrates both the sensitive and motor routes with equal efficiency, without prior multiplication in muscle cells. Infected neurons became detectable 18 h after infection. The second cycle of infection occurred within 2 days, and at day 3 there was a massive invasion of the spinal cord and sensory ganglia. In sensory ganglia, where it was possible to identify cell outlines, it was evident that the infection did not proceed directly from cell body to cell body. The avirulent strain AvO1 penetrated motor and sensory neurons with the same efficiency as CVS. Restriction of viral propagation was observed from the second and third cycles onwards. No further development of the infection could be seen after day 3, and by that time the lysis of primarily infected neurons seemed to occur.
MeSH Terms
Animals
Fluorescent Antibody Technique
Ganglia, Spinal/microbiology
Mice
Motor Neurons/microbiology
Neurons/microbiology
Neurons, Afferent/microbiology
Peripheral Nerves/microbiology
Rabies/etiology,microbiology
Rabies virus/physiology
Spinal Cord/microbiology
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Coulon P
Laboratoire de Génétique des Virus, Centre National de la Recherche Scientifique, Gif Sur Yvette, France.
Derbin C
Kucera P
Lafay F
Prehaud C
Flamand A
References (15)
15 references, click to expand
-
Experimental rabies. Studies of cellular vulnerability and pathogenesis using fluorescent antibody staining.
J Neuropathol Exp Neurol. 1965 Oct;24(4):662-74
PMID: 5319474
-
Antigenic site II of the rabies virus glycoprotein: structure and role in viral virulence.
J Virol. 1988 Jan;62(1):1-7
PMID: 2446011
-
Comparative pathogenesis of rabies and rabies-like viruses. Viral infection and transit from inoculation site to the central nervous system.
Lab Invest. 1973 Mar;28(3):361-76
PMID: 4266465
-
Early street rabies virus infection in striated muscle and later progression to the central nervous system.
Intervirology. 1974;3(4):256-68
PMID: 4282379
-
Rabies pathogenesis.
Arch Virol. 1977;54(4):279-97
PMID: 907476
-
Post-exposure local treatment of mice infected with rabies with two axonal flow inhibitors, colchicine and vinblastine.
J Gen Virol. 1978 May;39(2):381-5
PMID: 77308
-
Evidence for an intraaxonal transport of fixed and street rabies virus.
J Neuropathol Exp Neurol. 1979 May;38(3):286-99
PMID: 86604
-
Experimental rabies in skunks: immunofluorescence light and electron microscopic studies.
Lab Invest. 1979 Jul;41(1):36-44
PMID: 376938
-
Experimental rabies in skunks: oral, nasal, tracheal and intestinal exposure.
Can J Comp Med. 1979 Apr;43(2):168-72
PMID: 497886
-
Entry of rabies virus into the peripheral nerves of mice.
J Gen Virol. 1981 Oct;56(Pt 2):372-82
PMID: 7031182
-
Molecular basis of rabies virus virulence. I. Selection of avirulent mutants of the CVS strain with anti-G monoclonal antibodies.
J Gen Virol. 1982 Jul;61 (Pt l):97-100
PMID: 6181189
-
Rabies virulence: effect on pathogenicity and sequence characterization of rabies virus mutations affecting antigenic site III of the glycoprotein.
J Virol. 1985 Mar;53(3):926-34
PMID: 2579247
-
Pathways of the early propagation of virulent and avirulent rabies strains from the eye to the brain.
J Virol. 1985 Jul;55(1):158-62
PMID: 3892043
-
Rabies virus infection of cultured rat sensory neurons.
J Virol. 1987 Sep;61(9):2733-41
PMID: 2441076
-
[The rabies pathogenesis in mice. II. Spread of virus in the CNS].
Zentralbl Bakteriol Orig. 1969 Dec;212(1):1-13
PMID: 4916848