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Isolation, identification, and pathogenicity of two field strains of infectious bursal disease virus.

Using a sentinel bird approach, two field isolates of infectious bursal disease virus (IBDV) were isolated from broiler farms in two major broiler-producing areas of the state of Georgia. These farms had a history of subclinical IBD associated with respiratory problems and poor performance. Isolates designated as U-28 and 3212 were isolated using specific-pathogen-free chicken embryos and chicken embryo bursal cells. These isolates were identified by means of agar gel precipitation and virus-neutralization tests, direct immunofluorescence, histopathology, and electron microscopy. Isolates U-28 and 3212 appear to differ in antigenicity and pathogenicity from previously known serotype I IBDV isolates. In evaluating the extent of bursal damage caused by these field isolates, an association was found between the bursa of Fabricius/body weight index, histopathology scoring of atrophy, and morphometric analysis of the total follicle area.

Animals↗

A comparison of seven strains of porcine rotavirus as studied by serum neutralization and RNA electrophoresis.

Seven strains of porcine rotavirus, four of which (83/17F, 84/52F, 84/106F, 84/158F) had been isolated from diarrheic piglets in herds located in three regions (Lombardia, Veneto, Emilia) of Northern Italy, and the remaining three (SW 20/21, OSU, S80) obtained from the U.K., USA and Japan, respectively, were compared. The study included reciprocal serum neutralization tests as well as genomic RNA electrophoresis. The Italian isolates together with the U.K. (SW 20/21) and the USA (OSU) strains proved to belong to the same serological group, whereas the Japan (S80) strain appeared to be serologically distinct from the others. The gene segments of the viruses under study had identical or closely similar electrophoresis mobilities, with the only exception of S80 strain the genome profile of which was quite different from the other porcine rotavirus strains.

Animals↗

Genetic recombination at different points in the Npro-coding region of bovine viral diarrhea viruses and the potentials to change their antigenicities and pathogenicities.

Cytopathogenic (cp) bovine viral diarrhea virus (BVDV) strain KS86-1 cp was isolated from a cow persistently infected with non-cytopathogenic (ncp) BVDV strain KS86-ncp after development of mucosal disease by superinfection with cp BVDV strain Nose. cp BVDV strains 799cp and 839cp were also isolated from independent cattle that developed mucosal disease by superinfection with cp BVDV KS86-1cp. In the present study, genetic analysis revealed that the genes of cp BVDV strains 799cp and 839cp were chimeras between the genes of the persisting ncp BVDVs and that of superinfecting KS86-1cp. The genetic recombination that generates 799cp occurred between the identical points in the N(pro) gene region, whereas genetic recombination that generates 839cp occurred between different points in the N(pro) gene region. Both 799cp and 839cp were inherited Jiv gene of KS86-1cp strain and envelope protein genes of the persisting viruses. In addition, neutralization test disclosed that antigenicities of 799cp, 839cp, and KS86-1cp were also similar to each persisting virus. These findings indicate that exogenous cp BVDV containing insertion of Jiv gene in the 5 terminal region can induce genetic recombination with the original ncp BVDV at different points in the N(pro) gene region, and those viruses have high potential to change those antigenicities and pathogenicities by RNA recombination.

Animals↗

Recombinant adenoviruses expressing the E2 protein of bovine viral diarrhea virus induce humoral and cellular immune responses.

The E2 protein of bovine viral diarrhea virus (BVDV) is a major viral glycoprotein and an attractive target for BVDV vaccines. Three replication defective recombinant adenoviruses expressing the BVDV/E2 protein (rAds/E2) were constructed. Two contain a constitutive promoter, and one an inducible promoter. All three recombinant adenoviruses induced very strong BVDV specific antibody responses in a mouse model as detected by enzyme-linked immunosorbant assay (ELISA) and neutralization tests. Induction of cellular immune responses was investigated in two recombinant adenoviruses with a constitutive promoter. The mononuclear cells from the immunized mice demonstrated a proliferative response after in vitro stimulation with an homologous BVDV strain, but only one of them induced the production of IFN-gamma.

Adenoviridae↗

Myalgic encephalomyelitis--a persistent enteroviral infection?

Myalgic encephalomyelitis is a common disability but frequently misinterpreted. Amongst 6,000 patients referred for general microbiological diagnosis between 1975 and 1987, 420 cases were recognized. Coxsackie B neutralization tests, in 205 of these, demonstrated significant titres in 103/205 (50%), while of 124 additionally investigated for enteroviral IgM, 38/124 (31%) were positive. This illness is distinguished from a variety of other post-viral states by an unique clinical and epidemiological pattern characteristic of enteroviral infection. Prompt recognition and advice to avoid over-exertion is mandatory. Routine diagnosis, specific therapy and prevention, await further technical advances.

Adolescent↗

Serologic evidence of Puumala virus infection in wild moose in northern Sweden.

Puumala (PUU) virus is the causative agent of nephropathia epidemica, the Scandinavian form of hemorrhagic fever with renal syndrome. The infection is acquired by airborne transmission of PUU virus from its rodent reservoir, the bank vole. Besides serologic data indicating that the virus may spread also to heterologous rodents, there is little information on the susceptibility of wild living animals to PUU virus. We studied the occurrence of antibodies to PUU virus in serum samples from 427 wild-living moose, of which 260 originated from the PUU virus-endemic northern and central parts of Sweden and 167 originated from the southern, nonendemic part of Sweden. Samples from 5 animals showed reactivity in an ELISA for recombinant PUU virus nucleocapsid protein, an immunofluorescent assay, and a neutralization test. These 5 animals all originated from the PUU virus-endemic northern part of Sweden. In conclusion, 5 of 260 moose from the endemic region showed convincing serologic evidence of past PUU virus infection. The seroprevalence was low, suggesting that the moose is subjected to endstage infection rather than being part of an enzootic transmission cycle.

Age Distribution↗

A prospective seroepidemiologic study on dengue in children four to nine years of age in Yogyakarta, Indonesia I. studies in 1995-1996.

A prospective study on dengue (DEN) viruses was initiated in October 1995 in Gondokusuman kecamatan, Yogyakarta, Indonesia. This report presents data from the first year of the study. The studied cohort included all children 4-9 years of age living in the kecamatan. Blood samples for serology were collected from 1,837 children in October 1995 and again in October 1996. Blood samples for virus isolation and serology were collected from cohort children who were seen in municipal health clinics with febrile syndromes or admitted to hospitals with a provisional diagnosis of dengue hemorrhagic fever. Dengue serotype antibody prevalence and 1995-1996 infection rates were calculated using a single dilution (1:60) 70% plaque reduction endpoint neutralization test. Prevalence of dengue antibody at the beginning of the study was DEN 1 = 12%, DEN 2 = 16%, DEN 3 = 2%, DEN 4 = 4%, and two or more dengue infections = 22%. Total dengue antibody prevalence increased from 38% in 4-year-old children to 69% in 9-year-old children. During the observation period, primary dengue infection rates were DEN 1 = 4.8%, DEN 2 = 7.7%, DEN 3 = 4.2%, and DEN 4 = 3.4%, while two or more dengue infections occurred in 6.7% of the study population. The secondary dengue infection rate was 19.0%. From febrile cases, all four dengue viruses were isolated with DEN 3 predominating. Seven children were hospitalized, including one fatal case with a hospital diagnosis of dengue shock syndrome. Based upon presence of antibody in the initial cohort bleeding and the serologic response both weeks and several months following illness, all had secondary dengue infections. Neutralizing antibody patterns in the initial cohort bleeding and in late convalescent serum samples permitted recognition of dengue infection sequence in five patients: DEN 2-DEN 1 (3), DEN 2-DEN 4 (1), DEN 1-DEN 3 (1), and none in the sequence DEN 1-DEN 2. In the total cohort 6.5% of the observed secondary infections were of the sequence DEN 2-DEN 1, while 4.9% were DEN 1-DEN 2, a highly pathogenic sequence in previous studies. Reduced pathogenic expression of secondary DEN 2 with enhanced pathogenic expression of secondary DEN 1 infections was an unexpected finding. Further studies will be required to understand the respective contributions to pathogenicity of antibody from initial dengue infections versus the biological attributes of the second infecting dengue viruses.

Age Distribution↗

Serological and genetic characterization of newly isolated Peaton virus in Japan. Brief report.

The viruses were isolated from the blood of sentinel cattle and Culicoides biting midges in the Kyushu district, southwestern Japan, in 1999 and identified by neutralization tests as Peaton (PEA) viruses. Before this study, PEA virus had been isolated in Australia only. The nucleotide identity of the nucleocapsid (N) protein encoded by the S segment ranged from 91.1 to 91.6% between the Australian and Japanese strains. A phylogenetic analysis of the N protein sequence revealed that the PEA virus strains are closely related to Aino (AIN) virus and suggested reassortment events for PEA and AIN viruses.

Amino Acid Sequence↗

Virus mutation during 'slow infection': temporal development and characterization of mutants of visna virus recovered from sheep.

Visna virus could be recovered from peripheral blood leukocytes of sheep for years after intracerebral inoculation. Viruses recovered from sheep prior to and several months after development of antibody were antigenically identical to the parental strain used for inoculation. Subsequently, mutant viruses which were not neutralized by the animals' sera were obtained. Longitudinal studies of leukocyte viruses collected from two infected sheep showed that more than one strain of virus could co-exist in the animal. Virus neutralization tests using sequentially collected sera and the viruses recovered from leukocytes revealed a sequential development of antibody to parental and then to each strain of mutant virus. Characterization of two of the mutant viruses showed that they were antigenically stable, virulent in cell culture and when inoculated into new sheep, elicited antibodies which cross reacted with the parental virus from which they were derived. This continuous mutation of Visna virus in persistently infected sheep may be a mechanism for the production of chronic disease.

Animals↗

Detection of circulating immune complexes in alcoholic liver disease.

Sera of twenty-five patients with alcoholic liver disease and forty normal control sera were screened for circulating immune complexes by means of the anti-antibody neutralization test and by Raji-cell membrane immunofluorescence assay. IgG-containing immune complexes were detected in thirteen out of twenty-five patients with alcoholic liver diseases and in one out of forty normal individuals; in addition, IgA-containing complexes were demonstrated in seven out of thirteen sera positive for IgG complexes. The presence of immune complexes was restricted to alcoholic hepatitis and active cirrhosis, thus indicating a relationship with disease severity.

Antigen-Antibody Complex↗

[Identification of strain B 657 of Clostridium botulinum].

Strain 657 has been described as a toxin variant of Clostridium botulinum type B. Toxin neutralization tests performed with types B and A botulinum antitoxins of known potency, avidity and specificity at 20, 200, 2.000 and 20.000 DL50/mouse level of testing have shown that 657 toxin is a mixture of B (90 to 99% of the complex) and A antigenic fractions. The possibility of a cross contamination between A and B serotypes has been, in principle, ruled out through the serologic screening of 33 toxin samples coming one each from 33 well isolated colonies taken from two colony variants of this strain. Strain 657 produces a new complex toxin and is proposed as the candidate for the prototype of a new C. botulinum serotype: subtype Ba.

Animals↗

[Cuban epidemic neuropathy. II. The antigenic characteristics of the viral isolates].

With the aim of characterizing antigenically isolations producing mild cytopathogenic effect obtained from the cerebrospinal fluid of patients presenting with epidemic neuropathy, neutralization tests and western blot analysis were performed using hyperimmune sera of patients and hyperimmune sera of rabbits. It was confirmed that isolations with mild cutopathogenic effect studied have the same antigenic characteristics and that they are related to Coxsackie A9 and B4 viruses. Structural proteins were not detected in the strains with mild cytopathogenic effects, only antigens having a high molecular weight which were considered as precursor proteins for viral replication were confirmed.

Animals↗

Observations on clinical and immunofluorescent diagnosis of parainfluenza virus infections.

Immunofluorescent techniques have been applied to nasopharyngeal secretions for the rapid diagnosis of parainfluenza virus types 1, 2, and 3 infections. Seventy-five infections were found by isolation techniques; 55 of these had nasopharyngeal secretions taken and 53 were positive by direct examination. A comparison of the results of 60 neutralization tests with immunofluorescence applied to monkey kidney isolations showed complete agreement. Immunofluorescence appeared to be a satisfactory method for differentiating the various haemadsorption viruses. The importance of parainfluenza viruses and respiratory syncytial virus in croup was noted and the association of the parainfluenza viruses with acute respiratory virus infection was confirmed. The clinical relationship between respiratory syncytial virus and parainfluenza virus type 3 is discussed.

Carcinoma↗

A serological comparison of 4 Japanese isolates of porcine enteroviruses with the international reference strains.

The reference strains of four serotypes (J6, J8, J9 and J10) of porcine enterovirus isolated in Japan were compared with the international reference strains of 11 serotypes (W1 to W11) by cross neutralization tests. No cross reactions were observed between the two groups, although there were minor one-way crosses between W10 and J10, W11 and J9, and W4 and J9. This leads to our conclusion that all 4 Japanese serotypes can be newly added to 11 international serotypes. J9 virus produced type 1 of CPE (CPE I), J6 and J8 did CPE II, and J10 did CPE III. J10 grew in Vero, HeLa cells, and the primate cells, but J6, J8 and J9 did not.

Animals↗

Kinetics of the immune response after primary and booster immunization against tick-borne encephalitis (TBE) in adults using the rapid immunization schedule.

UNLABELLED: A total of 222 adult subjects aged 19-51 years were enrolled in this multi-center, phase III study to evaluate immunogenicity and safety of the first booster immunization with a new tick-borne encephalitis (TBE) vaccine. This was an extension study that followed subjects who had received primary immunization 12-18 months previously with either the new or formerly licensed TBE vaccine according to the rapid immunization schedule (i.e. on Days 0, 7 and 21). Compared to the levels of primary immunization, prior to first booster, neutralizing TBE antibodies (geometric mean titers, GMTs) of both vaccination groups had remained on a high level and were far above the detection limit of the neutralization test used. All subjects showed a sharp increase of TBE antibodies following the booster. The booster was well tolerated by the subjects. CONCLUSION: These results in terms of both immunogenicity and safety indicate that the TBE vaccination with this new TBE vaccine can be used effectively and safely in adults. A long lasting immunity can be concluded from the strong immune response following the first booster.

Adult↗

The use of PCR combined with restriction enzyme analysis to characterize fowl adenovirus field isolates from northern India.

Ten fowl adenoviruses (FAVs), isolated from suspected cases of inclusion body hepatitis (IBH) in quails and broilers, were characterized by a hexon-based polymerase chain reaction (PCR) combined with restriction enzyme analysis (REA) of the amplified DNA fragments. All the isolates could be detected using H1/H2 and H3/H4 primer sets. Amplification of DNA with H1/H2 and H3/H4 primer sets resulted in fragments of approximately 1219 bp and 1319 bp, respectively. HaeII digestion of the H1/ H2 PCR products and HpaII digestion of the H3/H4 PCR products characterized all the isolates in FAV groups, known from genomic typing using the whole DNA. For some of the isolates, neutralization tests were used to confirm these results. The results revealed that, as well as FAV serotype 1, which is the sole member of DNA group A, FAVs of DNA group E are also associated with IBH in poultry in northern India. The FAV specific PCR combined with REA was found to be very useful in investigating the epidemiological situation in the field. It was even possible to define mixed infections with more than one FAV.

Adenoviridae Infections↗

Preparation of a prototype inactivated hepatitis A virus vaccine from infected cell cultures.

Studies were conducted on the preparation, inactivation, safety, and immunogenicity of a prototype hepatitis A virus vaccine prepared from infected cell cultures. BS-C-1 cells maintained in medium 199 without serum were infected with the HM175 strain of hepatitis A virus and harvested after 21-28 days. The harvested virus preparation contained 6.8-7.4 (log 10) cell culture infectious doses/ml. After exposure to 1:4,000 formalin at 35 C, the infectivity titer decreased 10(6)-fold in 30 hr at an exponential rate, although virus was detected in 5.0-ml vaccine samples for up to three days. Three separate vaccine lots elicited antibody in all the guinea pigs given three doses. Owl monkeys given three doses of vaccine did not have any evidence of HAV infection but developed antibodies identifiable by radioimmunoassay and serum neutralization tests. After either oral or intravenous challenge with at least 10(6) monkey infectious doses of a virulent field strain of hepatitis A virus, none of the vaccinated monkeys shed virus in their feces or had elevated serum levels of alanine aminotransferase. The findings suggest that an effective inactivated whole virus hepatitis A vaccine can be prepared from cell culture.

Animals↗

An enzyme-linked immunosorbent assay using nuclear antigen for detection of feline herpesvirus 1 antibody.

To detect antibody against feline herpesvirus 1 (FHV-1) in the sera of cats, the sensitivity and specificity of an enzyme-linked immunosorbent assay (ELISA) using nuclear antigen was investigated. The standardized optical density readings (ODs) of the ELISA obtained by the 1-step serum dilution (1:80) method were compared with the serum neutralization test (SNT) results, with a correlation of 0.993, and with the hemagglutination inhibition (HI) test results, with a correlation of 0.851. The ODs for the ELISA titers were obtained using the serial serum dilution method and were compared with the SNT results, with a correlation of 0.933, and with the HI test results, with a correlation of 0.987. In the experimental infection of 4 specific-pathogen-free cats, the results of different serologic tests (SNT and HI) and the ELISA using the serial serum dilution method revealed rapid production of antibodies after inoculation, whereas the ELISA using the one-step serum dilution method indicated that titers increased more slowly. These results indicate that with the present ELISA using nuclear antigen, there are fewer demands on time and labor, making the method convenient for monitoring FHV-1 infection.

Animals↗