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Biomedical subjects

V Moennig

Publications and source records attributed to V Moennig.

At least 55 records · Page 3Linked to original sources

Effect of formalin fixation and long-term storage on the detectability of bovine viral-diarrhoea-virus (BVDV) RNA in archival brain tissue using polymerase chain reaction.

Detection of DNA or RNA in formalin-fixed, paraffin-embedded tissues using polymerase chain reaction (PCR) may be hindered by degradation of nucleic acids during tissue collection, preparation and archivation. This study describes investigations on the effect of formalin fixation and prolonged storage of paraffin-embedded tissues on bovine viral-diarrhoea (BVD)-virus RNA as a model system. Brain tissues from eight persistently BVDV-infected calves containing high amounts of the virus were fixed in 5% neutral-buffered formalin or 10% non-buffered formalin for different fixation times, respectively, and paraffin embedded. Subsequent detection of an 803 bp fragment from single tissue sections using nested PCR after reverse transcription (nested RT-PCR) demonstrated a loss of detectability of viral RNA after more than 10 days (10% non-buffered formalin) and 3 months (5% neutral-buffered formalin) of fixation. Additional studies with 280 initially BVDV-positive brain tissues from 25 persistently BVDV-infected calves after storage of up to 10 years revealed a loss of detectable RNA after more than 1 year of storage. For estimation of the higher sensitivity of nested RT-PCR compared to single step RT-PCR, serially diluted BVD virus suspensions were examined using both methods. Nested RT-PCR was found to be about 100-fold more sensitive than single-step RT-PCR, and is therefore recommended as the appropriate technique for archival studies.

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[Field infection with BVD virus in swine: epidemiology and diagnosis].

In a pig breeding herd in Lower Saxony infertility of breeding sows had been repeatedly observed. Growth retardation and post mortem findings in two piglets gave clinical indication to swine fever/hog cholera. A virus was isolated and typed by monoclonal antibodies as pestivirus not identical with hog cholera virus (HCV). In neutralization tests applying the field isolate, HCV and bovine viral diarrhea (BVD) virus the sera breeding sows and weaner pigs yielded high neutralizing antibody titres against the pestivirus field isolate but low titres against HCV. Specific antibodies against HCV were ruled out by a complex trapping blocking (CTB) ELISA. Intranasal inoculation of a weaner pig with spleen homogenate led to a short-termed viraemia without clinical signs but seroconversion with high antibody titres against the homologous pestivirus. In an in-contact pig no virus was detected and no antibody demonstrated within a period of 18 weeks.

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RNA insertions and gene duplications in the nonstructural protein p125 region of pestivirus strains and isolates in vitro and in vivo.

Sixteen cytopathogenic (cp) bovine viral diarrhea virus (BVDV) strains/isolates were screened for the existence of RNA insertions in the p125 gene region and/or for p80 gene duplications using the polymerase chain reaction after reverse transcription. Three strains/isolates were shown to contain insertions, and in three others gene duplications were demonstrated. One strain was shown to contain a gene duplication in addition to an insertion. Insertions or duplications were absent in the genomes of 10 non-cp BVD virus strains/isolates, in 4 hog cholera (HC) virus strains, and in 9 of the 16 cp BVD virus strains/isolates analyzed. These results indicate that RNA insertions and gene duplications, although significant, are not the only mechanism contributing to cytopathogenicity in vitro. The RT-PCR was also applied to RNA isolated from tissues of a calf suffering from mucosal disease. Insertion-containing amplification products could be demonstrated in an organ-specific pattern.

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Distribution of cytopathogenic and noncytopathogenic bovine virus diarrhea virus in tissues from a calf with experimentally induced mucosal disease using antigenic and genetic markers.

A comparative analysis of the distribution of cytopathogenic (cp) and noncytopathogenic (ncp) bovine virus diarrhea disease (BVD) virus in tissues from a calf with experimentally induced mucosal disease was performed using immunohistology and polymerase chain reaction after reverse transcription (RT-PCR) of viral RNA. For immunohistology, an antigenic marker on the superinfecting cp BVD virus defined by a monoclonal antibody (mab) was used, and overall presence of antigen was assessed with a pestivirus specific mab. The primers selected for RT-PCR detected the genomic insertion in the p125 region of the superinfecting cp BVD virus. Both methods gave consistent results.

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Detection of bovine viral diarrhea virus RNA in formalin-fixed, paraffin-embedded brain tissue by nested polymerase chain reaction.

Isolation and amplification of RNA from formalin-fixed, paraffin-embedded tissues is delicate due to its fragility and ubiquitous ribonucleases. For retrospective studies, however, a convenient procedure for the detection of RNA in archived material is of great value. Bovine viral diarrhea (BVD) virus is a member of the pestivirus genus in the family Flaviviridae. Different protocols for the isolation of BVD virus RNA from fresh and autolytic as well as from routinely formalin-fixed and paraffin-embedded brain tissue of BVDV-infected calves were compared. The polymerase chain reaction (PCR) after reverse transcription (RT-PCR) was carried out subsequently for the detection of viral RNA. Using proteinase K digestion of deparaffinized tissue sections without additional ribonuclease inhibitors and subsequent nested PCR, a 803 bp fragment of the gene coding for the nonstructural protein p125 of BVD virus could be consistently detected. In addition, BVD virus RNA was detected by RT-PCR from non-fixed brain tissue after 10 days of autolysis.

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Clinical, virological and serological findings after intranasal inoculation of pigs with bovine viral diarrhoea virus and subsequent intranasal challenge with hog cholera virus.

Five groups of weaner pigs were intranasally inoculated with constant doses of bovine viral diarrhoea virus (BVDV) strain OSLOSS/2482. Four weeks post primary inoculation (p.p.i.) the animals were intranasally challenged with decreasing doses of hog cholera virus (HCV) strain Alfort/187. Clinical signs were not observed apart from a short febrile period (2 days, > 40 degrees C) in one animal. Another animal died intercurrently without showing any pathological signs. Virus isolation from leucocyte samples taken regularly during one week post challenge detected HC viraemia in most animals that had received HCV doses > 100 TCID50 per animal. Using monoclonal antibody (mab) analysis all isolates obtained were proven to be HCV. Serological investigations using the virus neutralization test (VNT) yielded HC neutralizing antibodies in all groups with higher titres in those animals having received HCV doses > 100 TCID50. However, HCV specific neutralizing antibodies never exceeded the BVDV antibody titre. A complex trapping blocking (CTB) ELISA applying a HCV specific mab detected HCV specific antibodies in animals that had gone through HC viraemia while discriminating BVDV specific antibodies.

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An immunoplaque assay distinguishing between cytopathogenic and noncytopathogenic biotypes of bovine viral diarrhoea virus.

Cytopathogenic (cp) and noncytopathogenic (ncp) biotypes of bovine virus diarrhoea virus (BVDV) could be clearly distinguished by hollow plaques with peripheral immunostaining in infected fetal calf kidney (FCK) monolayers cultures or the appearance of homogenously stained immunoplaques (IPs), respectively. Of 70 BVDV isolates formerly classified as cytopathogenic according to microscopic observations in FCK cell cultures, 46 produced IPs of both types while the remaining 24 isolates induced only the IP type characteristic of the ncp BVDV biotype. The same was true for 24 additional isolates classified by light microscopy as ncp after ten blind passages in FCK cell cultures. Thus it appeared that in 1/3 of the cases changes in FCK cell cultures had been formerly misinterpreted as BVDV induced cytopathic effects (CPE). Of the 46 isolates which produced both ncp and cp immunoplaques 5 BVDV isolates were selected and successfully subjected to cloning. Clones of the cp biotype were developed by picking native plaques from unfixed FCK cell monolayers. In case of ncp IP, cloning was attempted by picking randomly in the spaces between visible native plaques. Pairs of clones from each of the field isolates proved to consist of pure plaque populations of cp BVDV and ncp BVDV biotypes, respectively, at the dilution of viral suspension which allowed the classification of a single IP according to morphology. Analysis of the clones using 15 monoclonal antibodies against the major viral glycoprotein revealed far-reaching antigenic homogeneity for each pair with only few but distinct exceptions.

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Prolonged persistence of cytopathogenic bovine viral diarrhea virus (BVDV) in a persistently viremic cattle.

A bull persistently viremic with noncytopathogenic (ncp) BVDV was inoculated with the cytopathic (cp) BVDV strain TGAC, which had been found to be antigenically different from the endogenous ncpBVDV (ncpW8). Neutralizing antibodies against strains NADL and TGAC were detectable 12 days and four weeks post infection, respectively. The animal developed fever and diarrhea 15 weeks post infection. On days 3 and 8 after onset of diarrhea a cpBVDV (cpX) was isolated from feces. Antigenic analysis using monoclonal antibodies (MoAbs) showed that cpX and the endogenous ncpBVDV (ncpW8) had identical reactivity patterns except for one epitope that was neither expressed on TGAC nor on ncpW8. Using polymerase chain reaction analysis it was shown that both TGAC and cpX contained a p8 phi gene duplication combined with genomic insertions of identical size. Restriction enzyme analysis of the TGAC and cpX amplicons using four enzymes showed an identical cleavage pattern, except for HaeIII digestion where an additional fragment was observed with cpX. These results suggest that cpBVDV strain TGAC persisted in the viremic animal and apparently caused disease after 15 weeks.

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Diagnosis of bovine virus diarrhoea by two enzyme-linked immunosorbent assays.

Two enzyme-linked immunosorbent assays (ELISAs) for the diagnosis of bovine virus diarrhoea (BVD) are described: CHEKIT-BVD-VIRUS and CHEKIT-BVD-SERO. The first test detects virus antigen in leucocytes, resulting in identification of persistently-infected animals, while the second detects antibodies to BVD virus (BVDV). It is well known that even persistently-infected animals may have antibodies to heterologous BVDV strains. These animals are still negative to the CHEKIT-BVD-SERO test because of immunotolerance to conserved virus antigens. Data on these two tests are summarised and a scheme is presented for the diagnosis of BVD using a combination of these two tests.

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[Use of a modified "antigen-capture" enzyme immunoassay for the identification of virus persistence in cattle infected with bovine virus diarrhea (BVD)].

Bovine viral diarrhoea (BVD)/mucosal disease (MD) is an economically important infectious disease of cattle, and persistently infected animals are of central epidemiological significance. The identification of these animals is a prerequisite for further sanitary measures in affected herds. In order to process large numbers of samples an antigen capture enzyme immunoassay (AC-ELISA) for the detection of bovine viral diarrhoea viral antigen in peripheral blood leukocytes of cattle of all ages has been developed. In this communication an improved method for the preparation of samples is described. A total of 563 blood samples was tested using the AC-ELISA and a routine virus isolation procedure on susceptible bovine cells. When compared to virus isolation in cell culture, the sensitivity of the AC-ELISA was 97%. From the samples that were virus negative in cell culture, 99.1% were also negative in the AC-ELISA. There is some evidence that the AC-ELISA discriminated between transiently and persistently infected animals.

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The hog cholera virus.

Hog cholera virus (HCV) is a spherical enveloped particle of about 40-60 nm dia. The viral genome is a single strand RNA of about 12,000 bases with positive polarity. One single large open reading frame codes for presumably four structural, i.e. three glycoproteins and a core protein, and about three to five nonstructural proteins. The functional role is not yet fully clear for all viral proteins. HCV belongs to the pestivirus group and it is closely related to bovine viral diarrhoea and border disease viruses. The relationship extends to morphology, antigenicity, host spectrum and molecular properties. Pestiviruses hold generic status in the family Flaviviridae.

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Infection of ovine fetal brain cell cultures with cytopathogenic and non-cytopathogenic bovine viral diarrhoea virus.

The in vitro cell tropism of non-cytopathogenic (ncp) and cytopathogenic (cp) bovine viral diarrhoea virus (BVDV) was studied in primary dissociated brain cell cultures derived from ovine fetuses of different gestational ages. The cell types infected were identified by double immunofluorescence using antibodies against BVDV and cell type-specific markers. In cultures infected with ncp BVDV viral antigen was present in neurofilament (NF 200 kDa)-positive neurons, glial fibrillary acidic protein (GFAP)-positive astrocytes and fibronectin-expressing cells. Estimation of the percentages of individual cell types infected with ncp BVDV indicated a tropism for NF 200-positive neurons. In cultures infected with cp BVD virus cytopathic changes were observed beginning at 40 hours post infection. Viral antigen was present in vacuolated NF 200-, GFAP- and fibronectin-positive cells. In comparison with non-infected control cultures a considerable reduction of the number of the different cell types was seen.

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Heterogeneous expression of the non-structural protein p80/p125 in cells infected with different pestiviruses.

In order to analyse the expression of the non-structural (ns) protein p80/p125 in cells infected with different pestiviruses at the protein level, radioimmunoprecipitations with the pestivirus-specific monoclonal antibody (MAb) BVD/C16 were performed. Cell lysates infected with cytopathic (cp) and non-cytopathic (ncp) bovine viral diarrhoea (BVD) virus strains and isolates, and with hog cholera (HC) virus strains were analysed. From cpBVD virus-infected cells, the MAb precipitated one or more proteins corresponding to ns p125, displaying a marked size heterogeneity. In contrast, the lower Mr ns p80 proteins from all cpBVD virus strains and isolates analysed had identical electrophoretic motility. The ncpBVD virus strains displayed either one single band or a doublet of the p125 protein and no p80 cleavage products. The p125 proteins precipitated from HC virus-infected cells showed no size heterogeneity. The possibility is discussed that multiple recombination events, including both insertions or deletions in the genomes of ncpBVD viruses, may lead to the heterogeneous expression of the ns p125 in cpBVD virus populations.

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An antigen capture test for the detection of cattle viremic with bovine viral diarrhoea virus--a comparison with BVD virus isolation from buffy coat cells in bovine kidney cells.

An antigen capture enzyme immunoassay (EIA) for the detection of bovine viral diarrhoea (BVD) viral antigen in peripheral blood lymphocytes of cattle was used for the screening of 241 animals. The test used a monoclonal antibody directed against a conserved antigenic domain of a nonstructural protein (p125/p80) of pestiviruses for antigen capture. Bound antigen was detected with a pestivirus-specific polyclonal peroxidase conjugate. In parallel the samples were analysed by routine virus isolation procedures based on cell culture. Virus isolation and antigen capture EIA were positive in 54 cases. The latter test scored one additional sample.

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Distribution of bovine virus diarrhoea viral antigens in the central nervous system of cattle with various congenital manifestations.

Distribution of bovine viral diarrhoea virus (BVDV) antigens in the central nervous system (CNS) of 26 cattle persistently BVDV infected, 11 cattle with mucosal disease (MD), and 32 calves with congenital brain malformations was studied using monoclonal antibodies against BVDV epitopes. In persistently infected cattle and in cattle with MD, a widespread infection of neurons was present. Predilection sites for BVDV antigens were the cerebral cortex and the hippocampus. In calves with congenital encephalopathies, viral antigen-containing neurons could only be detected in the CNS of four animals. From the topographical distribution of BVDV antigens in these four postnatal cases with end-stage lesions, no conclusions could be drawn concerning the pathogenesis of BVDV-induced encephalopathies.

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