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At least 19 recordsLinked to original sources

Epitope specificity of protective lactogenic immunity against swine transmissible gastroenteritis virus.

The epitope specificity of the protective immune response against swine transmissible gastroenteritis (TGE) has been investigated by using circulating and secretory antibodies. This study was carried out with sows vaccinated with TGEV or the antigenically related porcine respiratory coronavirus (PRCV). TGEV vaccination of sows resulted in greater lactogenic protection of suckling piglets against TGEV challenge and a higher secretory immune response than PRCV vaccination did. These differences in the immune response were conditioned by the route of antigen presentation as a result of the different tropism of each virus. Epitopes on S protein, and in particular those contained in its antigenic site. A, were more immunogenic than epitopes on N and M proteins in both groups of vaccinated sows, as determined by a competitive radioimmunoassay. Minor differences in antibody response against the previously defined antigenic subsites Aa, Ab, and Ac were also detected, with subsite Ab being the most antigenic in both TGEV- and PRCV-immune sows. These findings suggest that antigenic site A on S protein, involved in virus neutralization, is the immunodominant site in pregnant sows that confer lactogenic protection. They also validate, in experiments with secretory antibodies, the antigenic maps made with murine monoclonal antibodies. Therefore, this antigenic site should be considered for vaccine or diagnostic development.

Animals↗

[Combined vaccine protecting from transmissible swine gastroenteritis].

An effective system for specific prevention of transmissive swine gastroenteritis (TSG) is based on the use of combined vaccine and combined vaccination. Combined vaccine is a lyophilized preparation for intranasal application and emulsion for intramuscular injection. The former is prepared from natural attenuated respiratory variant of TSG virus and the latter from artificially attenuated TSG virus. Combined vaccination consists in parallel double immunization of females on days 70-75 of gestation intramuscularly and intranasally and on days 90-95 of gestation intramuscularly. Vaccinal lactogenic immunity ensures protection of newborn piglets under experimental and field conditions (protection of 70-80 and 90-95% piglets, respectively). The proposed vaccine preparations and protocols of combined immunization of females during gestation by two methods are an effective and safe method for specific prevention of TSG.

Administration, Intranasal↗

Expression of swine transmissible gastroenteritis virus envelope antigens on the surface of infected cells: epitopes externally exposed.

The peplomer protein (S) and the transmembrane protein (M) of transmissible gastroenteritis virus (TGEV) of swine were identified by iodination and serologically on the surface of infected cells. Of a total of 4 monoclonal antibodies (mAb) directed against four antigenic sites of S protein (Correa et al., 1988), 3 specific for sites A, B and D attached to the plasma membrane of infected cells, as disclosed by indirect immunofluorescence and by complement-mediated cytolysis. Four of the mAbs assayed were specific for the viral protein M and two of them gave plasma membrane immunofluorescence and mediated cytolysis in the presence of complement. The viral nucleoprotein N could not be demonstrated on the surface of infected cells either by iodination or employing 3 mAbs against this protein. Finally, a time course infection experiment demonstrated that S and M proteins were expressed on the surface of infected cells at 4 h after infection, before infective virus was released from infected cells.

Animals↗

A serodiagnostic ELISA using recombinant antigen of swine transmissible gastroenteritis virus nucleoprotein.

A serodiagnostic ELISA utilizing the recombinant nucleoprotein (rN protein) of transmissible gastroenteritis virus (TGEV) was developed, and evaluated by examining a panel of 141 virus neutralization (VN) positive and 101 negative sera. The rN protein-based ELISA (rnELISA) appeared to be highly sensitive and specific (98.6% and 98.0%, respectively) when it was compared to the VN test. The result was similar to that of an ELISA based on purified viral antigens with showing good correlation (R=0.829). No cross-reaction was detected with antisera against porcine epidemic diarrhea virus, hog cholera virus, type A rotavirus, pseudorabies virus and swine vesicular disease virus in this ELISA. The rnELISA can be an alternative for the diagnosis of TGE with a great advantage in antigen preparation.

Animals↗

Proteins specified by swine transmissible gastroenteritis virus: identification of non-structural proteins by two-dimensional electrophoresis.

Four virus-induced non-structural proteins with apparent molecular weights of 11-14 kilodaltons (kDa) were identified by two-dimensional electrophoresis in cells infected by TGEV. Differences in the number of non-structural proteins were observed among virulent and attenuated TGEV strains as well as with two antigenically related feline and canine coronaviruses.

Animals↗

Development of a novel real-time RT-PCR assay with LUX primer for the detection of swine transmissible gastroenteritis virus.

Real-time RT-PCR assay, based on light upon extension (LUX) fluorogenic primer and LightCycle technology, was developed for rapid detection of transmissible gastroenteritis virus (TGEV). Viral RNA from different TGEV isolates and clinical specimens was detected. To evaluate the sensitivity of the assay, a gel-based RT-PCR method targeted at the same 101 bp sequence was also developed. Serial 10-fold dilutions of TGEV RNA were detected by the two methods. Although the real time method used only 2 microl RNA for each reaction, a 10-fold increase of sensitivity over that of the gel-based method, which used 10 microl RNA was demonstrated. The study indicates that the LUX assay reported below is rapid, reliable and sensitive and it has the potential for use as an alternative molecular method for TGEV diagnosis.

Animals↗

[Development of test systems of immunoenzyme analysis for the detection of antibodies to the transmissible gastroenteritis virus of swine].

Two variants of enzyme immunoassay (EIA) using purified swine transmissible gastroenteritis virus antigen for sensitization of the solid phase and using infected cells on the solid phase have been developed for quantitation of specific antibodies to swine transmissible gastroenteritis (STG) virus. Both variants of the method were found to have approximately similar sensitivity and to be highly specific. The developed EIA proved to be approximately 100 times as sensitive as neutralization test. The optimal concentration of purified antigen for sensitization of microplates, as well as the multiplicity of infection of the heterologous cell culture grown in microplate wells have been determined. The above methods may be widely used in virological and epizootiological studies.

Animals↗

Oral immunogenicity of the plant derived spike protein from swine-transmissible gastroenteritis coronavirus.

Transgenic plants represent an inexpensive alternative to classical fermentation systems for production of recombinant subunit vaccines. Transgenic potato plants were created that express the N-terminal domain of the glycoprotein S (N-gS) from Transmissible gastroenteritis coronavirus (TGEV), containing the major antigenic sites of the protein. Extracts from potato tubers expressing N-gS were inoculated intraperitoneally to mice, and the vaccinated mice developed serum IgG specific for TGEV. Furthermore, when potato tubers expressing N-gS were fed directly to mice, they developed serum antibodies specific for gS protein, demonstrating the oral immunogenicity of the plant derived spike protein from TGEV.

Administration, Oral↗

Leukocyte-aggregation assay for transmissible gastroenteritis of swine.

An in vitro leukocyte-aggregation assay was developed to detect the exposure of swine to transmissible gastroenteritis virus. Leukocytes in heparinized blood samples aggregated when mixed with test antigen prepared from transmissible gastroenteritis-infected swine testicle cell cultures. Twenty-two of 23 swine exposed 3 days or more were positive or suspects in the assay; 6 nonexposed swine were negative. Aggregation was shown as early as 3 days postexposure in 1 sow and persisted for as long as 14 months in another. Persistence of the assay was proved by repeated evaluations on 2 experimentally exposed swine.

Animals↗