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Interferon in cerebrospinal fluid. A marker for viral persistence of canine distemper encephalomyelitis.

Interferon (IFN) was measured in serum and cerebrospinal fluid (CSF) of dogs after experimental (intranasal) infection with different strains of virulent canine distemper virus (CDV). Viral strains employed produced neurological changes in dogs that range from acute inflammatory to subacute, delayed demyelinating encephalomyelitis. With few exceptions, first appearance of serum-IFN correlated with the first elevated body temperature 4 days post-infection (p.i.). By 16 days p.i. IFN had disappeared from the serum of all infected dogs. In contrast, IFN was constantly detectable in CSF in dogs with CDV infection of the central nervous system (CNS). It was first detected 5 days p.i., was continuously detectable during the variable preclinical phase and into the period when signs of acute or delayed encephalomyelitis were evident. Dogs from which CDV would be retrieved from CNS tissue at necropsy always had CSF-IFN (up to 56 days p.i.). In contrast, dogs that recovered from infection, substantiated at necropsy by minimal, resolving CNS lesions and non-detectable virus, had IFN in CSF demonstrable for only a brief post-inoculation period. CSF-IFN appears to be a valid marker for CDV persistence in the canine CNS and may have broader applications.

Animals↗

Infection studies with canine distemper virus in harbour seals.

Infection studies in harbour seal (Phoca vitulina) were conducted with the Snyder-Hill strain of canine distemper virus (CDV) that is virulent for dog and mink. The inoculated seals showed clinical symptoms which were to some degree similar to those observed in CDV infections of sensitive species of carnivores. Viral replication in lymphoid cells was followed by an extended period of immunosuppression. The results did not provide conclusive evidence for viral replication in surface epithelia of seals, and accordingly no spread of the infection to contact seals and mink was demonstrated. The pathogenicity of the infection did not increase upon a second viral passage in seal. The serological data showed that CDV-infected seals mounted an early virus specific antibody response. Overall, the results indicated that the harbour seal was not especially sensitive to CDV infection. The differences in the in vivo biological properties of CDV and PDV add to the distinction between these viruses at the genomic and antigenic levels.

Animals↗

Loss of virulence of canine distemper virus is associated with a structural change recognized by a monoclonal antibody.

The monoclonal antibody (mAB) L1, which binds to the nucleocapsid protein of canine distemper virus (CDV), was shown to bind to avirulent CDV obtained after serial passages in Vero cells, but not to two different virulent demyelinating CDV-strains propagated in dog glial cell cultures. However, when both virulent CDV-strains were passaged through Vero cells they expressed, after a number of passages, an epitope recognized by mAB L1. The occurrence of the L1 epitope appeared to coincide with loss of virulence in animal inoculation experiments.

Animals↗

Mechanism of reduction of virus release and cell-cell fusion in persistent canine distemper virus infection.

Canine distemper virus (CDV), a mobillivirus related to measles virus causes a chronic progressive demyelinating disease, associated with persistence of the virus in the central nervous system (CNS). CNS persistence of morbilliviruses has been associated with cell-to-cell spread, thereby limiting immune detection. The mechanism of cell-to-cell spread remains uncertain. In the present study we studied viral spread comparing a cytolytic (non-persistent) and a persistent CDV strain in cell cultures. Cytolytic CDV spread in a compact concentric manner with extensive cell fusion and destruction of the monolayer. Persistent CDV exhibited a heterogeneous cell-to-cell pattern of spread without cell fusion and 100-fold reduction of infectious viral titers in supernatants as compared to the cytolytic strain. Ultrastructurally, low infectious titers correlated with limited budding of persistent CDV as compared to the cytolytic strain, which shed large numbers of viral particles. The pattern of heterogeneous cell-to-cell viral spread can be explained by low production of infectious viral particles in only few areas of the cell membrane. In this way persistent CDV only spreads to a small proportion of the cells surrounding an infected one. Our studies suggest that both cell-to-cell spread and limited production of infectious virus are related to reduced expression of fusogenic complexes in the cell membrane. Such complexes consist of a synergistic configuration of the attachment (H) and fusion (F) proteins on the cell surface. F und H proteins exhibited a marked degree of colocalization in cytolytic CDV infection but not in persistent CDV as seen by confocal laser microscopy. In addition, analysis of CDV F protein expression using vaccinia constructs of both strains revealed an additional large fraction of uncleaved fusion protein in the persistent strain. This suggests that the paucity of active fusion complexes is due to restricted intracellular processing of the viral fusion protein.

Animals↗

Effects of induced thrombocytopenia on viral invasion of the central nervous system in canine distemper virus infection.

Groups of canine distemper virus (CDV) susceptible ferrets were treated daily with 2.0 ml of normal goat serum (NGS) or goat anti-ferret platelet serum from 2 days before to 11 days after infection. Each group was subdivided into 2 and one subgroup of each was subsequently injected intraperitoneally with virulent R252-CDV. Ferrets were killed on days 2, 4, 6, 9 and 11 after infection and tissues from the central nervous system (CNS) were examined for histopathological lesions typical for CDV and also of CDV antigen by indirect immuno-fluorescence methods. In NGS-treated animals, a time course-dependent spread of CDV from CNS endothelium during days 2 to 4 after infection through choroid plexus epithelium was observed. In contrast, CDV-infected ferrets treated with anti-platelet antibody exhibited a delay in infection of CNS endothelium until 9 days after infection. The results of this study confirm vascular endothelium as the primary route of invasion of CNS tissues by CDV and implicate the circulating platelet in the initiation of this event.

Animals↗

Canine distemper virus infection in a masked palm civet (Paguma larvata).

A free-living masked palm civet (Paguma larvata) died after exhibiting signs of canine distemper (CD). The microscopic lesions consisted of cytoplasmic and intranuclear eosinophilic inclusion bodies, bronchointerstitial pneumonia, non-purulent encephalitis accompanied by demyelination and lymphocytic depletion in various lymphoid tissues. CD virus-specific antigens were demonstrated immunohistochemically in intracellular eosinophilic inclusions, which were ultrastructurally confirmed to be viral nucleocapsids. From these findings, the present case was diagnosed as CD virus infection in a masked palm civet.

Animals↗

Immunoglobulin class response to canine distemper virus in gnotobiotic dogs.

Serial serum samples from 27 gnotobiotic dogs infected with R252-canine distemper virus (CDV) were tested for anti-viral IgG, IgM and IgA immunoglobulins using an enzyme-linked immunosorbent assay (ELISA). The results were compared retrospectively to clinicopathological course of disease and to previously reported patterns of complement-fixing and virus neutralizing antibody titers determined in these same sera. Virus-specific IgA was never detected in the sera. High levels of IgG correlated with recovery from disease, whereas the antiviral IgM levels were equivalent in both persistently infected animals and those animals which recovered from disease. The inability to sustain a significant antiviral antibody response in either IgM or IgG classes was characteristic of dogs with fatal encephalitis. The data suggests that IgG is the most important Ig class for recovery from disease.

Acute Disease↗

Immunosuppression by canine distemper virus: modulation of in vitro immunoglobulin synthesis, interleukin release and prostaglandin E2 production.

In vitro or in vivo infection of canine mononuclear cells by canine distemper virus (CDV) in short-term microcultures resulted in suppression of lectin-induced 3H-thymidine incorporation. This suppressive effect was also evident in pokeweed mitogen-driven in vitro immunoglobulin synthesis and release. Lectin-induced interleukin-2 production by monocyte-depleted lymphocyte cultures was marginally affected by CDV, whereas interleukin-1 production by adherent mononuclear cells was significantly depressed. Monocyte cultures established from viremic dogs released prostaglandin (PG)E2. The results suggest that, in addition to a direct viral effect upon lectin responsive cellular population(s), CDV modulates monocyte functions by inhibition of interleukin-1 production and by enhancing PGE2 release.

Animals↗

Production of immunoglobulin G and increased antiviral antibody in cerebrospinal fluid of dogs with delayed-onset canine distemper viral encephalitis.

Sera and cerebrospinal fluid (CSF) from four dogs with delayed-onset canine distemper viral (CDV) encephalitis (old dog encephalitis) were compared with samples from dogs with acute CDV and from recently vaccinated controls. Dogs with old dog encephalitis (ODE) had elevated CSF IgG concentrations (122 micrograms/ml) compared to controls (13 micrograms/ml) without elevated CSF albumin; their CSF IgG index was significantly greater. CSF proteins banding in the alkaline region of isoelectric focusing gels were immunochemically identified as IgG. Detectable viral neutralizing antibody was present in ODE CSF, and formed a larger proportion of IgG in CSF than in serum. Serum samples containing 2 mg IgG bound to all viral polypeptides of both R252 and Onderstepoort CDV isolates by immunoblot analysis. CSF samples of ODE patients bound viral antigens when diluted to contain as little as 5-40 micrograms IgG, while patient serum could be diluted to 40-200 micrograms IgG content compared to serum IgG of 100 micrograms/ml in vaccinated controls. Serial CSF dilutions consistently bound to H and NP polypeptides at the highest dilutions, similar to the binding of serums from recently vaccinated dogs. Thus, dogs with delayed-onset CDV encephalitis have elevated concentrations of CSF IgG, much of which is virus-specific, with an antigen binding pattern similar to that of sera of recently immunized dogs.

Acute Disease↗

Canine distemper virus infectivity of various blood fractions for central nervous system vasculature.

In order to determine the infectivity of various viremic blood fractions for central nervous system (CNS) endothelia, viremic plasma, platelets and mononuclear cells were prepared from canine distemper virus (CDV)-infected dogs and infused into the right carotid arteries of CDV-naive gnotobiotic dogs. All blood fractions were infectious for endothelia as determined by indirect immunofluorescence examination for viral antigen in recipients. Virus-positive platelets, even though possessing only trace amounts (1.0 x 10(1) TCID50/ml) of in vitro titratable virus, were the most effective fraction for infection of vascular endothelium. These data confirm the important role of vascular endothelia in establishing CNS infection in this disease and implicate virus-positive platelets and leukocytes in the initiation of this phenomenon.

Animals↗

Immunocytochemical methods for demonstrating canine distemper virus antigen in aldehyde-fixed paraffin-embedded tissue.

The effects of enzymatic digestion, sodium borohydride reduction, acids used in decalcification procedures and techniques for inactivation of endogenous peroxidase were sequentially evaluated for their effect on the immunoreactivity of canine distemper virus in aldehyde-fixed paraffin-embedded tissue. Enzyme digestion improved immunoreactivity while sodium borohydride reduced background staining. Paraformaldehyde-glutaraldehyde-fixed tissues required thioglycolic acid treatment prior to enzyme digestion and sodium borohydride reduction to obtain results comparable to results obtained in formalin-fixed tissues. Detailed protocols for indirect immunofluorescence and the avidin-biotin-peroxidase complex procedure are provided.

Acids↗

Identification of negative strand and positive strand RNA of canine distemper virus in animal tissues using single stranded RNA probes.

In this report, we describe a technique for identifying negative strand (genome) and positive strand (messenger) RNA of canine distemper virus (CDV) in dog tissues by using single stranded RNA probes. Plasmids (pSP64-P and pSP65-P) which contain insert DNA corresponding to the P gene of CDV were transcribed by SP6 polymerase in the presence of radioisotope to produce radiolabeled single stranded RNA probes. RNA transcribed from pSP65-P is complementary to the negative strand (genome) and RNA produced from pSP64-P is complementary to the positive strand (message) of CDV. The binding specificity of the single stranded RNA probes was determined on Northern-blots. The use of these RNA probes in hybridization assays resulted in greater sensitivity and specificity than that obtained from double stranded DNA probes (either whole plasmids or purified insert DNA) which were labeled by the nick translation reaction. We also describe the making of single stranded DNA probes by reverse transcription labeling of complementary RNA. The complementary RNA was produced by the transcription of cloned DNA (pSP64-P and pSP65P). Single stranded RNA probes and single stranded DNA probes were similar in sensitivity. The single stranded RNA and DNA probes were applied to ethanolacetic acid fixed tissue sections from dogs infected with CDV-A75/17. We used 32P-labeled probes in tissue hybridizations and 35S-labeled probes in in situ hybridizations to identify negative and positive stranded CDV RNA. In this report we demonstrate that single stranded RNA and DNA probes can be used successfully in tissue hybridization and in situ hybridization assays to study viral expression in this virus-host system.

Animals↗

Phylogenetic evidence of canine distemper virus in Serengeti's lions.

Recently an epizootic, reported to be due to a morbillivirus infection, affected the lion population of the Tanzanian Serengeti National Park. A morbillivirus phosphoprotein (P) gene fragment was amplified by PCR from tissue samples of several affected lions. Sequencing of the amplificates and subsequent phylogenetic analyses revealed that a wild-type strain of canine distemper morbillivirus (CDV) was involved. Vaccination of the local domestic dog population with proven safe CDV vaccines is proposed.

Animals↗

Natural infection with canine distemper virus in a Japanese monkey (Macaca fuscata).

A case of encephalitis in a Japanese monkey (Macaca fuscata) was examined histopathologically and serologically. The animal had brain lesions consisting of perivascular cuffs, malacia, inclusion bodies and giant cells. Monoclonal antibody to the nucleoprotein of canine distemper virus (CDV) stained the inclusions, and the distribution of the virus antigen was closely associated with that of the histological lesions. Serologically, all the 22 monkeys in the same group as the diseased monkey had relatively high titers of neutralizing antibody to CDV, but not to measles virus (MV). The pattern of the antibody titers to CDV and MV closely resembled that of cynomolgus monkeys experimentally inoculated with CDV, but differed from that of monkeys inoculated with MV. These findings suggest that an epidemic of CDV occurred in these Japanese monkeys, associated with one case of fatal viral encephalitis. This is believed to be the first report of a natural infection by CDV in non-human primates.

Animals↗

The neurobiology of canine distemper virus infection.

Canine distemper virus (CDV) invades the nervous system and replicates in neurons and glial cell of the white matter during a period of severe viral induced immunosuppression. Demyelination occurs in infected white matter areas in the absence of inflammation. The mechanism of demyelination is not apparent because there is no ultrastructural evidence of viral replication in the oligodendrocytes, the myelin producing cells. However, brain tissue culture studies have shown that oligodendrocytes support transcription of all CDV genes and later on degenerate, although no viral proteins can be found in these cells. It remains to be shown how such a restricted infection leads to demyelination. Concomitant with immunologic recovery during the further course of the disease, inflammation occurs in the demyelinating lesions with progression of the lesions in some animals. A series of experiments in vitro suggested that chronic demyelination is due to a bystander mechanism associated with the virus-induced immune response in which antibody dependent cell-mediated reactions play an important role. The progressive, or even relapsing, course of the disease is associated with viral persistence in the nervous system. Persistence of CDV in the brain appears to be due to non-cytolytic selective spread of the virus with very limited budding. In this way CDV escaped immune surveillance.

Acute Disease↗

Selective spread and reduced virus release leads to canine distemper virus persistence in the nervous system.

In primary dog brain cell cultures (DBCC) the attenuated canine distemper virus (CDV) is cytolytic, whereas virulent CDV is not. Thus, the question why cytolysis does or does not occur appears to be intimately associated with the mechanism of persistence. Persistence is most likely related to the way these viruses replicate. In the present study we used morphological and immunocytochemical approaches to compare several aspects of virus replication between a cytolytic and a virulent CDV strain using DBCC to study both strains. Quantitative measurements did not detect a difference in the rate of virus protein synthesis at the level of the single cell, between the two types of infection. Electron microscopical results and virus titration experiments showed marked differences in virus spread and virus release. Immunocytochemical studies showed differences in the distribution of the nucleocapsid and matrix proteins between the two infections. Budding and cytolysis are strongly limited in the virulent A75/17-CDV infection as compared to attenuated viruses. This is probably due to structural changes in the virus proteins leading to modifications of virus assembly. Thus the present study supports a mechanism of CDV persistence through a type of virus maturation and spread by which very little virus is released outside of the cell.

Animals↗

Control of canine distemper.

Control of canine distemper can realistically only be achieved by the use of vaccination. The types of vaccine in current use are described, together with some of the problems encountered such as interference by maternal antibodies, and usage in species other than dogs. Modified live viral vaccines, as used for more than thirty years, have proved very effective. Nevertheless there is scope for some improvement in vaccine efficacy and recent developments in genetic recombinant methods are described.

Animals↗