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Sensitive neutralization test for rubella antibody.

A modified rubella virus plaque neutralization test for measuring rubella antibody was developed based on the potentiation of the virus-antibody complex by heterologous anti-immunoglobulin. The test is highly sensitive, yielding titers on the average 50 to 100 times higher than the haemagglutination inhibition test or the conventional plaque neutralization test. The sensitivity of this enhanced neutralization test is somewhat limited by the existence of a prozone phenomenon which precludes testing of low-titered sera below a dilution of 1:16. No prozone effect was observed with cerebrospinal fluids. The specificity of the enhanced neutralization test was determined by seroconversion of individuals receiving rubella vaccine. Although the rubella hemagglutination inhibition test remains the test of choice in routine diagnostic and surveillance work, the enhanced rubella neutralization test is particularly useful in monitoring low-level antibody in the cerebrospinal fluid in patients with neurological disorders and in certain instances of vaccine failure.

Adolescent

Modified radial-plaque-neutralization test for demonstration of enterovirus neutralizing antibodies.

A simple radial method based on the formerly described paper disc technique was developed for demonstration of neutralizing antibodies to enteroviruses with plaque forming ability. Sera administered by 5 microliter wire-loops to wells cut into the agar overlay of virus infected cell monolayers produced radial neutralization zones with a size directly related to their specific antibody contents. Results of poliovirus neutralizing antibody tests performed by the radial plaque neutralization method were found to be in a good agreement with those obtained in antibody titrations either in monolayer tube cultures or in microtitre system. The relatively simple technique makes possible to investigate several hundreds of serum samples in a single experiment, so it is especially suitable for use in expanded serological surveys. It proved to be useful also for identification of enteroviruses and for testing the laboratory strains for identity.

Antibodies, Viral

Transmissible gastroenteritis virus: plaques and a plaque neutralization test.

A plaquing system and plaque neutralization test in porcine thyroid cells were used to study different transmissible gastroenteritis isolates and hemagglutinating encephalomyelitis virus. Among transmissible gastroenteritis virus isolates, plaque size varied considerably and mixed size ranges sometimes occurred. The most recently isolated viruses produced smaller plaques than the laboratory viruses or hemagglutinating encephalomyelitis virus. All transmissible gastroenteritis virus isolates reacted in the plaque neutralization test with a transmissible gastroenteritis virus antiserum which showed no activity against hemagglutinating encephalomyelitis virus. Plaque neutralization results both from experimentally infected pigs and following a field outbreak demonstrated the reliability of this test and its greater sensitivity than the conventional tube test.

Animals

Reproducibility of a virus-neutralization test for infectious laryngotracheitis virus.

A virus-neutralization test for infectious laryngotracheitis virus was performed in microtiter plates using standard techniques. To assess the reproducibility of the test, 11 sera were each titrated repeatedly once a week for 8 weeks, and the results were compared to a standard. The standard used for reproducibility was that the 95% logarithmic confidence intervals of the mean calculated from three titrations of the same serum had to be smaller than the logarithmic distance "within" two microtiter plate wells. For the virus neutralization test to give reproducible results, such confidence intervals had to fall "within" two wells at least 75% of the time. Over the 8 weeks, percent reproducibility varied from 43.5% to 81.5%. The infectious laryngotracheitis virus-neutralization test did not meet our defined standard of reproducibility with positive antisera. Results with negative control sera were reproducible, however. Percent reproducibility varied from 31.8% to 93.8% for different sera tested, but it was not related to the titer of the sera.

Animals

Plaque reduction neutralization test for human cytomegalovirus based upon enhanced uptake of neutral red by virus-infected cells.

Foci of cells infected with human cytomegalovirus were noted to stain more intensely than uninfected cells with neutral red, and this provided the basis for development of a plaque assay and plaque reduction neutralization test for cytomegalovirus. Plaques demonstrable by neutral red staining could be counted at 8 days after infection; thus, results could be obtained earlier than for plaque assay systems based upon the viral cytopathic effect, a fewer manipulations were required for staining cell monolayers to demonstrate plaques. Certain variables affecting plaque size and numbers and antibody titers were defined. Addition of fresh guinea pig complement to the reaction mixtures markedly enhanced cytomegalovirus-neutralizing antibody titers of hyperimmune animal sera, but titers of human sera were enhanced only two-or fourfold.

Animals

Comparison of the latex agglutination test with the hemagglutination inhibition test, enzyme-linked immunosorbent assay, and neutralization test for detection of antibodies to rubella virus.

The ability of a rapid, latex agglutination test to diagnose rubella infection and to measure immune status was evaluated by comparison with the hemagglutination-inhibition (HAI) test, enzyme-linked immunosorbent assay (ELISA), and the neutralization (NT) test. The latex agglutination test accurately detected serological conversions in 74 pairs of sera representing 21 natural infections and 53 immunizations. The antibody levels of 276 sera from the general population were determined by latex agglutination, HAI, and ELISA. The correlation coefficients between the titers obtained by HAI and latex agglutination and by ELISA and latex agglutination were statistically significant. Results on 12 sera did not agree when measured by the three tests. These sera were included among the 196 specimens tested by NT. The correlation coefficient between NT and latex agglutination titers was statistically significant. There was one serum positive by latex agglutination but negative by NT, and five sera were negative by latex agglutination but had titers of 4 to 8 in the NT. The relative sensitivity of detecting antibody was greater by latex agglutination than by HAI. An additional 49 sera containing residual nonspecific hemagglutinin inhibitors were evaluated by latex agglutination and NT. The untreated sera showed no false positive reactions, and 36 of 39 NT positive sera were positive in the latex agglutination test.

Antibodies, Viral

Serum dilution neutralization test for California group virus identification and serology.

The serum dilution neutralization test was evaluated for serological diagnosis of California group arbovirus infections and identification of virus isolates. The technical advantages and the degree of subtype specificity of the serum dilution neutralization test over the hemagglutination inhibition test and the complement fixation test were demonstrated with paired specimens from human cases, single human survey sera, and sentinel rabbit sera. Twenty-one virus isolates from various geographical areas of the United States were also used to evaluate the efficacy of the serum dilution neutralization test for specific virus identification.

Adolescent

Sensitive neutralization test for virus antibody. 1. Mumps antibody.

A sensitive mumps virus plaque neutralization test has been developed based on the potentiation of virus-antibody complexes by heterologous anti-immunoglobulins (AIG). The enhanced neutralization test was approximately 100 times more sensitive than the conventional neutralization test or the hemagglutination-inhibition test. Using AIG against human immunoglobulin G (IgG) or human IgM permitted determination of the relative titers of the two classes of mumps antibody. The test does not require special equipment or expertise and can be readily introduced in virological laboratories.

Antibodies, Anti-Idiotypic

A vesicular stomatitis virus (cytomegalovirus) pseudotype and its use in neutralization tests.

Infection with vesicular stomatitis virus (VSV) of human diploid cells preinfected with the AD-169 strain of human cytomegalovirus (CMV) resulted in the formation of a VSV (CMV) pseudotype. Its formation was favored by increasing the bicarbonate content in doubly-infected cultures. The pseudotype was capable of infecting not only human but also rabbit cells. Pseudotype particles formed after infection with the tl 17 mutant of VSV, which carries a thermolabile lesion in its neutralization antigen, were more stable at 45 degrees than the original tl 17 virus. The pseudotype was used in the neutralization test with human sera. All sera positive for CMV antibody in the complement-fixation (CF) test were also reactive in the neutralization test. In addition, numerous sera negative for CMV antibody in the CF test neutralized the pseudotype.

Adult

Comparative evaluation of an enzyme-linked immunosorbent assay (ELISA) to detect antibodies directed against glycoprotein I of pseudorabies virus and a conventional ELISA and neutralization tests.

To determine whether a newly developed enzyme-linked immunosorbent assay (ELISA), which detects antibodies directed against glycoprotein I (gI) of pseudorabies virus, is suitable for serodiagnosis, it was compared with a conventional ELISA and two neutralization tests. The gI ELISA was 99.2% as sensitive and 100% as specific as the conventional ELISA. Antibody titers measured by the gI ELISA were lower than those measured by the conventional ELISA, comparable to those measured by the 24-h neutralization test, and higher than those measured by the 1-h neutralization test. After experimental infections in pigs, antibodies were first detected by the gI ELISA on postinoculation day (PID) 14, by both neutralization tests on PID 7, and by the ELISA on PID 10. All four tests showed the same rate of decline of maternal antibodies in pigs born to sows that had been vaccinated with inactivated vaccine. Thus, not only is the gI ELISA unique in being able to differentiate infected pigs from those vaccinated with gI-negative vaccines, but it is also as useful as a conventional ELISA and as neutralization tests for serodiagnosis.

Animals

Comparison of a liquid-phase blocking sandwich ELISA and a serum neutralization test to evaluate immunity in potency tests of foot-and-mouth disease vaccines.

Sera from cattle vaccinated against either foot-and-mouth disease virus (FMDV) strains A10 Holland, O1 BFS, or C1 Detmold were tested in a serum neutralization test (SNT) and a liquid-phase blocking sandwich ELISA (LBE), and the titers were compared with the results of intradermolingual challenge tests. The LBE test results were significantly more reproducible (P less than 0.005) than the SNT results. The correlation coefficients between SNT and LBE were 0.91 for FMDV strains A10 Holland and O1 BFS, and 0.82 for FMDV strain C1 Detmold (P less than 0.0005). The regression coefficient for strain A10 Holland was 0.80, for strain O1 BFS the value was 0.87, and for strain C1 Detmold it was 0.64. In probit analysis, titers at which 95% of the cattle were protected against challenge with the homologous strain were determined for the SNT and the LBE. In the SNT the 95% protection levels for strains A10 Holland were greater than or equal to 0.84, for O1 BFS greater than or equal to 1.59, and for C1 Detmold greater than or equal to 0.83. In the LBE they were greater than or equal to 1.28, greater than or equal to 1.71, and greater than or equal to 1.74, respectively. Because the SNT and the LBE are highly significantly correlated, and the LBE is more reproducible, the LBE is likely to predict protection more reliably than the SNT.

Animals

A comparison of enzyme-linked immunosorbent assay (ELISA) with the toxin neutralization test in mice as a method for the estimation of tetanus antitoxin in human sera.

An enzyme-linked immunosorbent assay (ELISA) has been developed for the measurement of tetanus antitoxin in human sera as an alternative to the toxin neutralization test in mice, the currently accepted method of assay. The ELISA was found to be simple and quick to perform and required only small amounts of materials. In addition, the assay was found to give reproducible estimates of antitoxin levels and to measure antitoxin at levels as low as 0.01 IU per ml, a sensitivity similar to that of the neutralization test. Furthermore, a comparison of the results of the ELISA and the neutralization test involving 80 human sera, including sera with both high and low antitoxin levels, showed close agreement in antitoxin levels obtained by the two methods. It was concluded that ELISA was an acceptable alternative to the toxin neutralization test in mice for the measurement of tetanus antitoxin levels in human sera.

Animals

Comparison of European isolates of viruses causing hemorrhagic fever with renal syndrome by a neutralization test.

Different virus isolates causing hemorrhagic fever with renal syndrome (HFRS) were compared using a neutralization test. Patient convalescent sera and antisera prepared in rabbits were used to compare Puumala-related Hantavirus isolates from Finland, Sweden, Belgium, and the USSR. The majority of European isolates were indistinguishable from each other using both homologous rabbit antisera and patient convalescent sera. The European isolates of HFRS were also compared with prototype Hantaan (the etiologic agent of Korean hemorrhagic fever). The one-way cross-reaction between the Hantaan and Puumala viruses, previously described using human convalescent sera tested by indirect immunofluorescence and immunoprecipitation, was also seen by the neutralization test.

Europe

A micro-neutralization test for flavivirus antibodies.

A micro-neutralization test for the detection of flavivirus antibodies is described. The test utilizes the PS line of cells in flat bottomed microtiter plates to detect the neutralization of cytopathic effect by specific antibodies. Cross-neutralization of flaviviruses found in Southeast Asia with homologous and heterologous hyperimmune mouse ascitic fluids revealed the test to be specific. The test is simple and inexpensive to perform.

Antibodies, Viral

Micro-neutralization test for mumps virus using the 96-well tissue culture plate and PAP (peroxidase-antiperoxidase) staining technique.

A rapid micro-test method for mumps virus neutralization was developed. In this method, a 96-well tissue culture plate was used for preparation of cell monolayers and the PAP staining technique was used for visualization of mumps virus infected cells. Clusters of infected cells were observed as a focus and the numbers of foci could be counted by the naked eye 2 days after the infection. A linear relationship between virus dilutions and focus numbers was observed. When neutralizing antibodies in sera from cases of natural mumps infection were assayed, a good correlation was observed between those obtained by the focus reduction method applying the micromethod and those obtained by the ordinary plaque method. Our results indicate that this micromethod is useful in mumps virus neutralization tests and it has many advantages over other methods previously reported.

Animals

[Detection of antibodies to Rickketsia prowazekii by using the antigen neutralization test].

The authors studied a possibility of using the antigen neutralization test with dry immunoglobulin typhus erythrocytic diagnostic agent for the purpose of detection of Rickettsia prowazeki antibodies. Blood sera of 315 healthy persons, 24 patients with sporadic typhus, and 18 laboratory animals immunized with R. sibirica and R. burneti, as well as with Proteus OX19 were examined. The results obtained pointed to the high specificity and sensitivity of the given serological test. A possibility of its use for antibody detection both in the typhus patients and in persons who sustained this infection in the past was demonstrated. In difference from the complement fixation test it permits to study anticomplementary sera.

Antibodies, Bacterial

Role of virus strain in conventional and enhanced measles plaque neutralization test.

A low-passage Edmonston strain of measles virus gave on the average four-fold higher antibody titers than two high-passage strains of Edmonston virus when used in a virus plaque neutralization test. Heterologous anti-human immunoglobulin did not affect antibody titers obtained with the low-passage virus but enhanced antibody titers obtained with the high-passage viruses on the average eight-fold. These differences in virus sensitivity to neutralization and neutralization potentiation by anti-immunoglobulin were interpreted as being possibly due to differences in density or accessibility of the functional antigens of measles virus. The conventional plaque neutralization test utilizing the low-passage Edmonston virus was about 10 times more sensitive than the virus CPE-neutralization test, 60 times more sensitive than the measles hemagglutination-inhibition test and 220 times more sensitive than the measles complement-fixation antibody test.

Animals