Experimental parainfluenzavirus infection. 1. Hydrocephalus of mice due to infection with parainfluenza virus type 1 and type 3.
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The pathogenicity of parainfluenza type 2 (croup-associated) virus known to cause infections of the respiratory tract in the early life of man was studied in the brain of mice. One- to 4-day-old sucklings and 4-week-old mice were inoculated intracerebrally with the virus. The virus multiplied in sucklings, but not in adults. Most mice inoculated intracerebrally with the virus appeared healthy. Histological examination showed minimum inflammatory changes, although moderate hydrocephalus developed in three of twenty-one sucklings by 6 weeks post-infection. Immunofluorescent study in sucklings showed viral antigens in ependymal lining cells and choroid plexus epithelium during the first two weeks, and parenchymal cells for more than two months. Virus specific antibody response was observed in adults, but not in sucklings. One interesting finding was that viral antigens persisted in six out of 11 suckling brains for one to two months.
In order to attenuate parainfluenza type 3 virus, a wild type strain that was isolated from a child with respiratory disease was adapted to replicate in African green monkey kidney cells at 20 degrees C. Replication at 20 degrees C was not a property of the wild type virus. The virus was serially passaged 45 times in the cold, and clones were selected following passage levels 7, 12, 18, and 45. The population of cold-adapted virus was found to be progressively enriched with temperature sensitive (ts) mutants. After 7 passages in the cold, 1 of 9, and after 12 passages in the cold, 3 of 12 clones were temperature sensitive. Following 18 passages in the cold, 80% of the clones were temperature sensitive and after 45 passages in the cold, all clones were temperature sensitive. In addition to being temperature sensitive each ts clone manifested the tiny plaque morphology. Each temperature-sensitive clone was also cold adapted. Some clones were cold adapted but were not temperature sensitive. The mutants were found to be genetically stable when serially passaged at 32 degrees, 35 degrees, or 39 degrees C. The mutants may possess the necessary degree of attenuation for use as live attenuated intranasal vaccines.
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BACKGROUND: We report a prospective comparative study of the efficacy of three commercial cell lines in the isolation of the parainfluenza (PI) virus from nasopharyngeal samples. MATERIAL AND METHODS: In a 16 months period we studied all nasopharyngeal samples from patients with the suspension of a viral respiratory infection. The compared cell lines were LLC-MK2 and MDCK. All samples were processed by the shell-vial assay, incubated 3 days at 36 degrees C. The monolayers were stained by an indirect immunofluorescence assay with a monoclonal antibody against the nucleoprotein of the PI virus. RESULTS: In the study period 746 samples were analyzed, 46 PI virus were isolated, all belonged to the serotype 3. The LLC-MK2 cell line isolated 44 viruses (95.6%) and the MDCK cell line 41 (89.1%), no statistically significant differences were detected (p = 0.14) (qualitative sensitivity). In 84.8% of positive samples, the PI virus was isolated simultaneously in the two cell lines. Neither cell line isolated all PI virus. No statistical differences were detected in the quantitative sensitivity, although the LLC-MK2 cell line detected a slightly more samples with a low viral load (70.4 vs 68.2%). CONCLUSIONS: In view of the results obtained in this study, we believe that anyone of the two cell lines would be used in the isolation of the PI virus from respiratory samples.
LLC-MK2, GMK AH-1, BSC-1, and Vero cells were compared in titrations of recent isolates and laboratory strains of influenza A and B and parainfluenza types 1, 2, and 3 viruses. About the same titres, as determined by haemadsorption in cell cultures, were obtained in LLC-MK2, GMK AH-1, and BSC-1 cells when trypsin had been added to the medium, whereas the Vero cells were less sensitive to the influenza virus strains tested. Virus titres were usually low in the absence of trypsin. A laboratory strain of parainfluenza 2 virus reached about the same titres in medium without as in medium with trypsin, possibly owing to prior adaptation by passages in Vero cells. Comparative titrations of influenza A, and parainfluenza 1 and 3 viruses suggested the same susceptibility of LLC-MK2 cells with trypsin as of primary monkey kidney cells. Re-isolation experiments from 38 clinical specimens showed LLC-MK2 cells to be as efficient as primary monkey kidney cells for isolation of influenza and parainfluenza viruses, whereas the susceptibility of the other cell lines to clinical material has not yet been tested on a larger scale. It is concluded that a continuous line of monkey kidney cell culture may be acceptable as an alternative to primary monkey kidney cells for the isolation of influenza and parainfluenza viruses from patients.
Persistence of antibodies in calves vaccinated with 2 types of inactivated infectious bovine rhinotracheitis (IBR) virus and parainfluenza-3 (PI-3) virus vaccines were determined. Calves seronegative for IBR and PI-3 viruses were inoculated with 2 doses of inactivated IBR virus-PI-3 virus vaccines administered 2 weeks apart. Blood samples were obtained from the calves for serum at 2 weeks, 6 months, and 1 year after vaccination. The serums were tested by serum-neutralization tests. Antibody response to the vaccines persisted on a declining scale for 1 year. The anamnestic responses to the vaccines were determined by inoculating the same calves with a booster dose of vaccine 1 year after the original 2 doses were given. Blood samples were obtained from the calves for serum 2 weeks later. The serums were tested by serum-neutralization tests. The single booster dose of vaccine elicited an anamnestic response to both IBR and PI-3 viruses.
We describe the generation of lentiviruses pseudotyped with human parainfluenza type 3 envelope (HPIV3) glycoproteins. Lentivirus particles, expressed in 293T/17 cells, incorporate HPIV3 hemagglutinin-neuraminidase (HN) and fusion (F) proteins into their lipid bilayers and are able to transduce human kidney epithelial cells and polarized MDCK cells. Neuraminidase, AZT, and anti-HPIV3 antisera block transduction, which is consistent with lentiviral-mediated transduction via sialated receptors for HPIV3. Our findings show that HPIV3 pseudotyped lentiviruses can be formed and may have a number of useful properties for human gene transfer.
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The effect of Bordetella bronchiseptica upper airway colonization on the clinical, radiographic, serologic, pathologic, and pulmonary function changes caused by canine parainfluenza-2 virus (CPIV-2) infection was studied in 24 purebred Beagle pups (10.5 +/- 1.4 weeks old). Eight control dogs (group I) were not colonized or inoculated with CPIV-2. Of the 12 noncolonized dogs inoculated with CPIV-2 (group II), 9 developed antibody titers to CPIV-2 and 10 had clinical signs of infectious canine tracheobronchitis (kennel cough). Group I and group II dogs did not differ in radiographic findings or pulmonary function. Four group II dogs necropsied 1 to 5 days after clinical signs developed had laryngotracheobronchitis and bronchiolar inflammation not present at necropsy on 2 group I dogs. Four dogs had B bronchiseptica upper airway colonization and were inoculated with CPIV-2 (group III). All 4 group III dogs developed positive antibody titers, had clinical signs of kennel cough, and had radiographic changes. Pulmonary dynamic compliance was lower in group III than in group I or group II animals. Respiratory rate and tidal volume did not differ among the 3 groups. The 1 group III dog that was necropsied had changes similar to group II dogs with the addition of lobar bronchopneumonia. The present study indicates that asymptomatic B bronchiseptica colonization may effect the clinical, radiographic, and pulmonary function changes produced by CPIV-2 respiratory tract infections.
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Persistent infection of mouse L cells was achieved by serial passages of undiluted parainfluenza SV5 virus. At the level of the 10--12th passage a stationary noncytocidal type of persistent infection was established. A low level of the infectious virus produced by the persistently infected cells was observed; the number of cells synthesizing the virus-specific antigen detectable by immunofluorescence was high. Persistently infected cells were resistant to the infection with the homologous virus and sensitive to superinfection with heterologous viruses. The persisting virus had marked interfering activity. The possibility of participation of defective interfering particles and endogenous oncornavirus in the maintenance of the persistent infection is discussed.
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One-hundred and twenty-seven sera were tested to determine whether a primary infection could be identified by a determination of the class of antibody (IgM) detected in serum collected in the period after a viral infection. Serum was collected from patients with a history of measles (18 cases), rubella (24 cases), mumps (12 cases), and M. parainfluenzae type 3 infections (9 cases). The results of the serological assays are compared with clinical observations and the limitations of the methods under consideration are discussed.
Immunofluorescent observations showed that after intranasal instillation of parainfluenza 1 (Sendai) virus into adult mice, infection is confined to the epithelial lining of the larger airways. Alveolar macrophages were not significantly involved, although they could be infected in vitro. In suckling mice, the infection was more acutely lethal and extended into the terminal air spaces. The intranasal susceptibility of adult mice was not reproducibly affected by treatment with potent antithymocyte serum, and there were no obvious pathogenic effects when heterologous antiserum was instilled intranasally into infected mice. Peritoneal macrophages were infected by intraperitoneally injected Sendai virus, with production of a highly viscous peritoneal exudate. Kupffer cells of the liver and endothelial cells in large veins and auricles were infected by intravenously injected virus. When injected intracerebrally, Sendai virus infected ependyma and choroid plexus epithelium. Adult mice often survived, in spite of ependymal destruction and changes in ventricular morphology. Astrocytes were activated but not infected.
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A serologically proven case of parainfluenza viral infection was associated with the onset and disappearance of cluster headache. The patient had long-standing migraine that ceased during the cluster headache period and recurred when the latter stopped. Possibly, the virus was neurally transmitted to the trigeminal-autonomic system, creating an inflammatory response that transiently precipitated cluster headache and obliterated migraine.