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Immunofluorescence studies of canine distemper encephalitis on paraffin-embedded tissue.

A paraffin-embedding technique for fluorescent antibody studies of canine distemper encephalitis was developed. Specific fluorescence was demonstrated in all brain tissue from dogs with canine distemper, and when compared with tissue on cryostat sections, the paraffin-embedded tissue showed superior preservation of tissue architecture. The preservation of viral antigen was good, and the appearance of fluorescence in gray- and white-matter lesions was described. In gray matter, extensive fluorescence was found mainly in neurons; fluorescence in white matter was less extensive and was mainly associated with astrocytes.

Animals↗

Experimental and naturally occurring transplacental transmission of canine distemper virus.

In the present study, 2 different effects of experimentally induced infection with virulent canine distemper virus (CDV) on pregnant CDV-susceptible dogs were studied. In 1 bitch, abortion occurred 7 days after viral inoculation and there was no evidence of fetal infection. Another bitch had subclinical infection and delivered 3 CDV-infected pups. Sequential clinical, immunologic, and virologic studies of a litter of gnotobiotic pups (3rd bitch) that were congenitally infected with CDV demonstrated the heightened susceptibility to CDV in the neonatal period. The data presented add canine distemper to the list of transplacental infectious diseases in the canine species.

Abortion, Veterinary↗

Clinical trials with canine distemper vaccines in exotic carnivores.

Two types of killed canine distemper virus (CDV) vaccine and a modified-live CDV vaccine were clinically evaluated in four species of exotic carnivores. In 16 trials in which 13 red pandas (Ailurus fulgens) were given the killed vaccine, only 1 animal had a virus-neutralization titer that exceeded 1:100. A red panda given modified-live CDV vaccine deemed safe for gray foxes and ferrets died of bacterial pneumonia 16 days later. There was no pathologic evidence of canine distemper in that panda. The same modified-live vaccine proved to be immunogenic and safe in 12 bush dogs (Speothos venaticus), 5 maned wolves (Chrysocyon brachyurus), and 3 fennec foxes (Fennecus zerda) in which virus-neutralization titers often exceeded 1:512 and persisted for several months after vaccination.

Animals↗

Plasma phase viremia in canine distemper virus infection.

Plasma samples from gnotobiotic pups infected with R252 canine distemper virus at 7 days of age contained free infective virus when titrated on canine pulmonary macrophage cultures. Virus was detected 7 days after infection and increased thereafter. Platelets may be involved in leukocyte-free viremia. The present study indicated that the method of dissemination of the virus in vivo involves plasma and canine distemper virus-infected leukocytes.

Animals↗

Vaccine-induced canine distemper in European mink, Mustela lutreola.

This report describes vaccine-induced canine distemper virus (CDV) infection in four European mink (Mustela lutreola) induced by the administration of a multivalent, avian-origin vaccine. Clinical signs consisting of seizures, ataxia, facial twitching, oculonasal discharge, hyperkeratosis of footpads, and anorexia developed 16-20 days postvaccination. Conjunctival smears from one animal were positive for CDV antigen by direct fluorescent antibody testing, confirming the clinical diagnosis. The four mink died 16-26 days postvaccination. Gross and microscopic lesions that were diagnostic for CDV infection included interstitial pneumonia, lymphoid depletion, nonsuppurative encephalitis, and dermatitis. Vaccine-strain virus was isolated from tissues of three animals. Cases of vaccine-induced distemper in mustelids using avian-origin vaccine have seldom been reported.

Adenoviruses, Canine↗

Restricted infection with canine distemper virus leads to down-regulation of myelin gene transcription in cultured oligodendrocytes.

Canine distemper virus (CDV) induces oligodendroglial degeneration and multifocal demyelination in the central nervous system. The mechanism of oligodendrocyte degeneration is not understood but it has been shown that there is a restricted infection of these cells without viral protein production. Using a combination of immunocytochemistry and in situ hybridization we were able to demonstrate the transcription of the entire virus genome throughout the whole observation period (7-35 days after infection) in oligodendrocytes in CDV-infected brain cell cultures. Therefore, the lack of viral protein and particle production can not be explained on the basis of a defective viral transcription. The present study also shows that a restricted infection of oligodendrocytes with CDV down-regulates the transcription of the major myelin genes coding for proteolipid protein, myelin basic protein (MBP) and myelin-associated glycoprotein in a very similar way. Using densitometry for in situ hybridization products of MBP in populations of normal and infected oligodendrocytes, an effect could be observed long before morphological changes were detectable. The present results strongly suggest that demyelination in distemper is induced by a restricted CDV infection of oligodendrocytes which down-regulates the expression of a variety of cellular genes, in particular those coding for myelin proteins. Consequently, the infected cells are no longer able to synthesize all the membrane compounds which are necessary for maintaining their structural integrity.

Animals↗

Early events in canine distemper demyelinating encephalomyelitis.

The early neuropathological development of demyelinating Canine Distemper Encephalomyelitis (CDE) was studied in SPF dogs. Neural tissues were examined up to 30 days post infection (PI). Three phases of activity were observed. The primary event (first observed 8 days PI) was a nonsuppurative encephalomyelitis associated with the initiation of central nervous system (CNS) infection by virus-laden lymphocytes. At 24 days PI noninflammatory demyelination occurred in well defined, subependymal foci. Cell fusion and syncytia formation accompanied this early demyelination. The third phase, found at day 30 PI in one dog showing signs of recovery, was a second wave of nonsuppurative inflammation. The initial encephalomyelitis was widely disseminated throughout the CNS but subsequent demyelination appeared to be initiated from within the ventricular system. Myelin was phagocytosed by endogeneous CNS macrophages often infected with Canine Distemper Virus (CDV). The possible importance of viral induced cell fusion as well as immune factors in the mechanism of demyelination are discussed.

Animals↗

Antibody-induced generation of reactive oxygen radicals by brain macrophages in canine distemper encephalitis: a mechanism for bystander demyelination.

The mechanism of inflammatory demyelination in canine distemper encephalitis (CDE) is uncertain but macrophages are thought to play an important effector role in this lesion. Serum and cerebrospinal fluid (CSF), containing anti-canine distemper virus and anti-myelin antibodies from dogs with CDE were tested for their ability to generate reactive oxygen species (ROS) in macrophages in primary dog brain cell cultures using a chemiluminescence (CL) assay. The majority of serum samples and several CSF samples from animals with inflammatory demyelination elicited a CL signal in infected dog brain cell cultures. In contrast, none of these samples induced a positive response in uninfected cultures which contained large numbers of myelin antigen-presenting cells, although defined anti-myelin antibodies lead to a marked secretion of ROS in this system. It was concluded that antiviral antibody-induced secretion of ROS, known to be highly toxic for brain tissue, may play an important role in white matter damage in inflammatory lesions supporting a previous hypothesis of bystander demyelination in CDE. No evidence was found for a similar antibody-dependent cellular cytotoxicity-like mechanism mediated by anti-myelin antibodies in CDE, which does not support the concept of autoimmunity in this disease.

Animals↗

Immunoglobulins in demyelinating lesions in canine distemper encephalitis. An immunohistological study.

The brains of 14 dogs with canine distemper encephalitis were examined with immunohistologic techniques to search for immunoglobulin in demyelinating lesions. Four types of lesions presumably representing a temporal sequence of lesion development were distinguished. Immunohistologic findings included immunoglobulin bearing lymphoid cells, amorphous Ig containing material, immunoglobulin bound to the tissue and immunoglobulin containing macrophages and astrocytes. The humoral immune response was absent or very minimal in acute lesions and very intense in chronic lesions. It was concluded that early demyelination in canine distemper encephalitis occurs in the absence of a local humoral immune response but that this response may aggravate and accelerate myelin destruction in the later stages of the disease.

Acute Disease↗

Experimental canine distemper encephalomyelitis in neonatal gnotobiotic dogs. A sequential ultrastructural study.

The ultrastructural morphogenesis of neuronal degeneration and necrosis and patterns of associated myelin and axonal degeneration were studied in gnotobiotic dogs neonatally infected with neurovirulent R252 strain of canine distemper virus (CDV-R252). Distemper virus-infected neurons underwent a distinct sequence of ultrastructural changes culminating in direct viral-induced necrosis beginning after 21 days post inoculation (DPI). Viral-induced neuronal cytolysis occurs apparently independently of anti-viral immune mechanisms of immunologic destruction. Viral nucleocapsid aggregates in postsynaptic axosomatic and axodendritic complexes and in structurally intact axons provided morphologic evidence for viral-induced functional modulation of synaptic transmission and possible trans-synaptic interneuronal viral spread. There were secondary degenerative axonal and myelin changes, particularly in heavily myelinated tracts. There was no evidence of primary demyelination. Active phagocytosis of degenerating axons and myelin debris in foci of virus-associated necrosis was apparently restricted to CDV-containing macrophages. Demonstration of a productive CDV infection of choroid plexus epithelium 10 DPI and thereafter was identified as an intracranial source of free infectious virus.

Animals↗

The fusion protein gene of phocine distemper virus: nucleotide and deduced amino acid sequences and a comparison of morbillivirus fusion proteins.

The nucleotide sequence of the gene encoding the fusion protein of phocine distemper virus has been determined. The mRNA is 2206 nucleotides in length and contains one major open reading frame (ORF) of 1893 nucleotides encoding a potential protein of 631 amino acid residues. However, analogy with canine distemper virus (CDV) suggests that translation of the F protein starts at the sixth AUG codon in the mRNA sequence which is located at position 461, resulting in an F0 protein of exactly the same size (537 aa) as that of CDV. The overall homology at nucleotide level between the CDV and PDV F genes is 66%. The homology between the two F proteins of these respective viruses is 83%.

Amino Acid Sequence↗

Determination of the buoyant density of canine distemper virus by radioassay.

Canine distemper virus was labelled with tritiated uridine and, following precipitation with saturated ammonium sulphate solution, was concentrated 66-fold by centrifugation through a discontinuous sucrose gradient. When this preparation was centrifuged to equilibrium in density gradients of potassium tartrate or sucrose, radioactivity was distributed over the density range 1.218 to 1.180 with a pronounced peak at around 1.195. This corresponded closely to the distribution of infectivity and also to that of virus particles revealed by electron microscopy. In density gradients of caesium chloride, a plateau of radioactivity was present over the density range 1.26 to 1.24 with a peak at around 1.240 but most of the infectivity was limited to the range of 1.24 to 1.22. Since the amount of infectious virus recovered from potassium tartrate was greater than that recovered from the other two materials and the radioactive peak occurred over a narrower density range, it was concluded that potassium tartrate was the material of choice for the isopycnic centrifugation of canine distemper virus.

Ammonium Sulfate↗

Mechanisms of heterotypic immunity against canine distemper.

Hep-2 cells infected with measles virus (MV) for as short as 6 h became refractory to superinfection with canine distemper virus (CDV) but not to vesicular stomatitis virus (VSV). The exact mechanism of such interference is unknown but probably occurs after virus attachment and penetration. These results verify the suggestion that virus interference may be a mechanism of heterotypic protection against canine distemper.

Animals↗

The role of the 5' nontranslated regions of the fusion protein mRNAs of canine distemper virus and rinderpest virus.

The mRNAs which code for the fusion proteins of the morbilliviruses (measles virus, canine distemper virus, and rinderpest virus) have unusually long 5' untranslated regions (UTRs) which are GC-rich and are capable of folding into extensive secondary structures. In measles virus the first AUG codons in the fusion (F) protein mRNA are in close proximity at nucleotide positions 574 and 583 and protein translation is initiated at the second position. In the canine distemper virus (CDV) and rinderpest virus (RPV) F gene transcripts the analogous initiation codons are preceded by several other AUG codons many nucleotides upstream either in the same reading frame or at the beginning of other short open reading frames. We have studied the effect of deleting these upstream regions on the production of the fusion proteins of both CDV and RPV from cDNA constructs. Within the cells the presence of these regions enhances the production of the F protein while, in contrast, the production of the authentic F protein from in vitro translations using RNA transcripts is inhibited by these sequences.

Animals↗

Canine distemper virus increases procoagulant activity of macrophages.

Inflammatory demyelination in canine distemper has been proposed to be due to a "bystander" mechanism, in which macrophages play an important role. In the present work we studied whether infection of macrophages by canine distemper virus (CDV) results in changes of macrophage functions, including Fc receptor-dependent and -independent phagocytosis, release of reactive oxygen species (ROS), and procoagulant activity (PCA). As a source of macrophages, dog bone marrow cells were seeded in teflon bags and grown for 1-2 weeks, at which time a marked enrichment of macrophages was noted. These cells were infected with the A75/17 strain of CDV. We could not detect any significant difference between uninfected and CDV-infected macrophages with respect to Fc receptor-dependent or -independent phagocytosis or with respect to the release of ROS. However, from Day 4 p.i. to the end of our observation period (10 days p.i.), PCA was up to 10-fold higher in CDV-infected unstimulated macrophage cultures than in uninfected unstimulated cultures of the same age. Increase in PCA was not due to the inoculation procedure by itself nor to components of the inoculum other than CDV; in particular, PCA was not due to contaminating endotoxin. Thus, several important macrophage functions do not appear to be impaired by CDV infection. The marked increase of macrophage PCA expression suggests that certain macrophage functions may even be enhanced as a result of infection. Such macrophage activation might contribute to the pathogenesis of the disease.

Animals↗

Lymphocyte responsiveness to lectin and myelin antigens in canine distemper infection in relation to the development of demyelinating lesions.

Eleven dogs were experimentally infected with canine distemper virus and studied for periods of up to 63 days post-inoculation. The responsiveness of lymphocytes in vitro toward phytohemagglutinin, myelin basic protein and galactocerebroside was tested at regular intervals during the course of infection by means of [3H]thymidine incorporation and flow cytometry. All dogs developed a marked decrease of lymphocyte responsiveness toward phytohemagglutinin. Four dogs recovered rapidly from the immunosuppression and did not develop demyelination or had only mild lesions, while two others failed to recover at all and developed severe non-inflammatory demyelinating lesions. The remaining dogs exhibited a slow or partial immune recovery and had various degrees of inflammatory demyelination. Lymphocytes from 2 dogs with demyelination and 2 dogs without myelin lesions responded to myelin antigens. The findings indicate that the degree of immunosuppression in canine distemper virus infection may determine the type of demyelination and autoimmune reactions that occur during the inflammatory stage of demyelination may be epiphenomena.

Animals↗

Nucleotide sequence of the entire protein coding region of canine distemper virus polymerase-associated (P) protein mRNA.

The entire coding region of the polymerase-associated (P) protein gene of canine distemper virus has been sequenced. A single cDNA clone which represents 98% of the mRNA encoding this protein was used to determine the nucleotide sequence. The sequence predicts a major protein of 507 amino acids and a molecular weight of 54 936. There is also a second, overlapping, open reading frame with a start signal 21 bases downstream of the first AUG which could code for a protein of 174 amino acids with a predicted molecular weight of 20 292. This arrangement of the genome for the P protein of canine distemper virus is exactly analogous to that published recently for the P gene of measles virus (Bellini, W.J. et al., 1985, J. Virol. 53, 908-919). When the sequences are aligned at the first AUG, considerable homology is seen at both the nucleotide and protein sequence level.

Amino Acid Sequence↗

Dogs, distemper and osteitis deformans: a further epidemiological study.

There is extensive evidence linking paramyxoviruses, notably measles and respiratory syncytial virus, with Paget's disease of bone. The epidemiology of Paget's disease does not fit with that of known human paramyxovirus infections and it is possible that the disease is a zoonosis with domestic animals acting as host. Canine distemper, a paramyxovirus of the morbillovirus family (closely related to measles) is therefore a potential candidate. We have surveyed previous pet ownership in 150 Paget's patients each of whom was matched with two general practice controls; one from an inner city practice and the other from a suburban practice both in Greater Manchester. Recall of previous dog ownership was higher in Paget's patients with differences being more marked against inner city than suburban controls. 88% of the patients had lived in the same household as a dog at some stage compared with 79% of the inner city controls (P less than 0.05) and 83% of the suburban controls (n.s.). The differences were greater in the years 1930-60 during which the proportion of patients owning dogs was largest. For Paget's patients and controls alike, recalled exposure to dogs with canine distemper appeared to cluster in certain periods between 1930 and 1960. Unexpectedly, significantly more (7 out of 22, P less than 0.01) of the patients with a known first degree relative suffering from Paget's disease had no previous history of dog ownership when compared with the other patients (10 out of 128).

Adult↗