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Diagnosis of tick-borne encephalitis: evaluation of sera with borderline titers with the TBE-ELISA.

Tick-borne encephalitis (TBE) is a member of the Flaviviridae family. Strong cross-reactions can occur between members of this family, so that it may be difficult to diagnose specific flavivirus infections, especially when tests with frequent cross-reactions e.g. ELISA tests are used. We tested 238 sera with borderline titers for TBE using the indirect immunofluorescence or neutralization test for other flaviviruses (yellow fever, dengue, West Nile) to detect cross-reactions due to other flavivirus infections or flavivirus vaccination. Only one serum reacted against all the flaviviruses tested, indicating cross-reactivity due to infection with any of the flaviviruses. Two other sera exhibited low antibody titers against yellow fever, which could be confirmed by the neutralization test, indicating recent yellow fever vaccination. None of the other sera reacted at all against any of the flaviviruses tested in the tests used, which indicates false positive reactions with the TBE-ELISA. Sera with borderline titers in the TBE-ELISA in particular should be retested using other test systems (preferably neutralization) and for other flaviviruses (yellow fever, dengue, West Nile) to detect cross-reactions and to confirm positive results.

Cross Reactions↗

Evaluation of an enzyme immunoassay for detection of antibodies to pseudorabies virus in porcine field sera.

The performance of an indirect enzyme-linked immunosorbent assay and the standard serum neutralization test for detection of antibodies to pseudorabies virus in porcine field sera were compared, using 304 sera from pseudorabies-free pigs in Canada, and 1082 and 580 swine sera from the USA and England, respectively. The sensitivity and specificity of the ELISA relative to the serum neutralization test were in the order of 97 to 98%, with the higher agreement between the tests when a 1:40 dilution of serum samples was used for the ELISA. The indirect ELISA was considered to be a rapid and convenient procedure, offering many advantages over the serum neutralization test for routine serodiagnostic use.

Animals↗

[Epitope specificity and protective activity of monoclonal antibodies to Venezuelan equine encephalomyelitis virus].

Epitope specificity and protective activity of 5 types of monoclonal antibodies (MAB) to strain TM-14 of Venezuelan equine encephalomyelitis (VEE) virus were studied. The competing VEE A4 and VEE B5 MAB were shown to recognize the conformation-dependent epitope of glycoprotein E2 third site and to possess an extremely high protective activity. VEE C6 MAB were active in all the studied biological tests (hemagglutination inhibition, neutralization tests, passive defence) and were directed to glycoprotein E2 site six. Competitive radioimmunoassay demonstrated that VEE A5 MAB also interacted with E2-6 site and by the sum of characteristics detected a new epitope of this site. VEE G1 MAB specific to glycoprotein E1 were characterized by protective, but not neutralizing activity, and competed with MAB to sites E2-2 and E2-6. This means that VEE G1 MAB detect a heretofore not described epitope E1 overlapping with two E2 sites.

Animals↗

Antibodies to Berne virus in horses and other animals.

After inoculation into 2 foals, Berne virus induced neutralizing antibody, but did not cause clinical symptoms. In a horizontal study of seropositive mares and their offspring, a decline of maternal antibodies and a sudden synchronous seroconversion in all foals were observed, again without clinical symptoms. The virus is widespread in the Swiss horse population and has been so during the last decade; rises in antibody titers were noted in 9% of paired sera sampled at random. Positive reactions were also obtained in serum neutralization tests and ELISA using small numbers of horse sera from Germany, France and the U.S.A. The results of neutralization tests and ELISA were correlated in 83% of random samples tested; 13% were neutralization-positive and ELISA-negative and in 4% the inverse was observed. Neutralizing activity was found in the sera of other ungulates (cattle, goat, sheep and pig), laboratory rabbits and 2 species of wild mice (Clethrionomys glareolus and Apodemus sylvaticus). Inconclusive results were obtained with feline and human sera; those from dogs and foxes (Vulpes vulpes) were consistently negative. The probable occurrence of antigenic variants in Berne-type viruses is discussed.

Animals↗

California encephalitis virus, a newly described agent.

In three cases of encephalitis in humans that occurred in the area where the newly described California virus was isolated from mosquitoes, serological evidence seemed to indict the California virus as the etiological agent. In the case of an infant with very severe disease, the serological evidence was convincing; the evidence was almost as strong in the case of a seven-year-old boy; the results in an adult were equivocal. Inapparent infection in man is quite common as indicated by neutralization tests on the sera of nearly 600 residents of California, but encephalitic manifestations of infection are extremely rare. In Kern County, California, where the virus was discovered, approximately 11 per cent of the population has been infected. Infection rates are higher in adults than in very young children. Absence of neutralizing antibodies from 64 specimens of blood from persons in Japan, Washington, and other states supports the specificity of the neutralization test in man and suggests that this virus is absent or is not being similarly transmitted in some areas. Serological evidence from serial bleedings of two sick horses suggested, but did not definitely establish, that this virus leads to a naturally acquired encephalomyelitis in horses. Serological tests with the viruses of western equine and St. Louis encephalitis did not lead to any other etiological diagnosis in the sick animals studied. Results of neutralization tests on the sera of eight horses and three cows in Kern County suggested extremely high infection rates, and an immunity rate of 18 per cent was noted in rabbits and ground squirrels. In the natural biological cycle rabbits and ground squirrels are suspected as the possible counterpart of birds in the St. Louis and western equine virus cycles. There is no evidence from field or laboratory to indicate that birds become infected with the California virus. Sera from 33 mammals other than man were collected from Northern California and Washington. All were free from neutralizing antibodies, again supporting the specificity of positive findings from Kern County.

Adult↗

Operational overlapping of cross-reactive and serotype-specific neutralization epitopes on VP7 of human rotavirus serotype 3.

VP7-specific neutralizing monoclonal antibodies (N-MAbs) to serotype 3 human rotavirus were produced to analyze serotype 3-specific and cross-reactive neutralization epitopes on VP7. On the basis of the reactivity patterns in neutralization tests with various human and animal strains, a total of 10 N-MAbs could be classified into four groups; five antibodies specific to serotype 3 were divided into two groups, and five antibodies consisted of two groups which are cross-reactive with strain 69 M (serotype 8) or strain WI61 (serotype 9). Seven N-MAbs showed the same reactivity patterns to the virus strains in both neutralization tests and enzyme-linked immunosorbent assay (ELISA), while three N-MAbs specific to serotype 3 in neutralization showed a cross-reactivity with the serotype 8 strain in ELISA. Neutralization-resistant mutants of serotype 3 strains P and YO were selected by the N-MAbs. Cross-neutralization tests between the mutants and the MAbs indicated the presence of two serotype-specific (S1 and S2) and three cross-reactive (C1, C2, and C3) epitope groups. S1, S2, and C3 epitope groups overlapped operationally each other, and the S1 epitope group had an overlapping with the C1 epitope group. However, C2 epitope group identified by the MAbs which neutralized serotypes 3 and 9, had no operational overlapping with any other epitope groups.

Animals↗

A solid-phase blocking ELISA for detection of antibodies to Nipah virus.

A monoclonal antibody (MAb) based solid-phase blocking ELISA was developed for detection of antibodies to Nipah virus. The ELISA was designed to detect remaining antigens on the plate with anti-Nipah MAb conjugate after the reaction with sample serum, and enabled simple procedure, detection of neutralizing antibody to Nipah virus, and application of samples from different animal species. Forty of 200 swine reference sera examined were positive by the ELISA, of which thirty seven were found positive by serum neutralization test. Sera from a total of 131 fruit bats captured in Malaysia were also tested and all found negative by the both tests. It is considered that the solid-phase blocking ELISA can be used as a screening test for Nipah virus infection followed by the serum neutralization test as confirmatory test.

Animals↗

Isolation of measles virus from cerebrospinal fluid of children with acute encephalopathy without rash.

OBJECTIVE: To determine the viral agent involved in cases of acute encephalopathy in children during an outbreak in Northern India. DESIGN: Virological and serological studies using serum and cerebrospinal fluid specimens from patients. METHODS: Serum and CSF specimens were tested by IgM ELISA for IgM antibodies to variety of viruses like Japanese encephalitis, West Nile, Dengue and Measles. The specimens were inoculated into Vero cell monolayer for virus isolation. The viral strains isolated were identified by indirect immunofluorescence test and qualitative in-vitro neutralization test using polyclonal and monoclonal antibodies to measles. Identity of the isolates was reconfirmed using RT-PCR method. RESULTS: Of the 28 specimens tested, 17 had IgM antibodies to measles. Commercial IgM ELISA kits confirmed the serological findings. Vero cell cultures yielded 4 isolates from CSF and 2 from serum specimens of six different patients. Cytopathic effect was typical of measles. Indirect imunofluorescence using polyclonal and monoclonal antibodies to measles HA protein, confirmed the measles etiology. Neutralization tests reconfirmed the measles strain isolation. RT-PCR amplified product was confirmed as measles. CONCLUSION: The isolation of measles virus from CSF and serum of children with acute encephalopathy without rash proved the etiological role of measles virus in this outbreak.

Acute Disease↗

[A comparison of serological methods and their use in the diagnosis of enzootic bovine leukemia].

ELISA method with polystyrene micro-plates and rods was compared with the neutralization test in plaque modification (SN) and with the immunodiffusion method (ID). Micro-plates are the best for the adsorption of the virus, mainly in quantitative studies. In screening examinations it is also the diagnostic rods that give results comparable with the SN method. In the modified ELISA method, dubious results should also be regarded as diagnostically important. In mass examination, ELISA test can be considered as an alternative to the neutralization test. As demonstrated, the titres of antibodies from 80 to 100 determined by ELISA method in micro-plates or by the SN test represent the marginal titres of the positivity of ID test. The ELISA method is suitable mainly in the final stages of the sanitation of herds since infected animals are revealed with a high sensitivity and in time.

Animals↗

An enzyme-linked immunosorbent assay for the detection of canine antibodies to canine adenoviruses.

An enzyme-linked immunosorbent assay was used to detect canine immunoglobulin G antibodies specific for infectious canine hepatitis virus and the serologically related canine adenovirus Type 2. The sequential development of homologous and heterologous antibodies was measured by the enzyme-linked immunosorbent assay and serum neutralization tests in two groups of dogs which were experimentally infected with either infectious canine hepatitis virus or canine adenovirus Type 2. Both tests were comparable in their abilities to detect the development of homologous and heterologous antibodies. Homologous antibodies were detected earlier and to a higher titer in both tests. There was a 98% agreement between the serum neutralization test and the enzyme-linked immunosorbent assay when sera from 224 random-source dogs were examined for infectious canine hepatitis virus antibodies. The enzyme-linked immunosorbent assay was found to be a highly efficient and rapid test to determine the immune status of dogs to infectious canine hepatitis virus and canine adenovirus Type 2.

Adenoviridae↗

Seroepidemiological survey for yellow fever antibodies in domestic animals.

A total of 192 out of 300 serum samples from camel, cattle, sheep and goats tested for yellow fever virus antibody by the counterimmunoelectrophoresis were found positive. This test was confirmed by the single radial haemolysis and serum neutralization tests. Twenty-one and 36 sera were positive for specific yellow fever virus antibodies by the single radial haemolysis and serum neutralization tests respectively. The possible role of these animals in the epidemiology of yellow fever is discussed.

Animals↗

Antigenic and biological comparisons of bovine coronaviruses derived from neonatal calf diarrhea and winter dysentery of adult cattle.

The antigenic and biological properties of 6 strains of bovine coronavirus (BCV) derived from neonatal calf diarrhea (CD) and 8 strains of BCV from winter dysentery (WD) of adult cattle, propagated in HRT-18 cells, were compared to determine if CD and WD strains belong to distinct serotypes or subtypes of BCV. All strains hemagglutinated both mouse and chicken erythrocytes at 4 degrees C, but the ratios of hemagglutination titers with mouse erythrocytes compared to chicken erythrocytes showed diversity for both CD and WD strains. Some CD and WD strains did not hemagglutinate chicken erythrocytes at 37 degrees C and showed receptor-destroying enzyme activity against chicken erythrocytes. Hyperimmune antisera were produced in guinea pigs against 3 and 7 strains of BCV from CD and WD, respectively. No significant differences in antibody titers against these strains were observed by indirect immunofluorescence tests. However, in virus neutralization tests, antisera to 1 CD and 2 WD strains had 16-fold or lower antibody titers against 3 WD and 1 CD strains than against the homologous strains, and this variation reflected low antigenic relatedness values (R = 13-25%), suggesting the presence of different subtypes among BCV. In hemagglutination inhibition tests, some one-way antigenic variations among strains were also observed. These results suggest that some antigenic and biological diversity exists among BCV strains, but these variations were unrelated to the clinical source of the strains; i.e. CD or WD.

Aging↗

Serological relationships between rotaviruses from different species as studied by complement fixation and neutralization.

Human, piglet, mouse, foal, lamb, calf and rabbit rotaviruses all infected, but could not readily be subcultured in LLC MK2 cells. Cells infected with mouse and calf rotaviruses reacted by indirect immunofluorescence (FA) with convalescent serum from children, piglets, mice, foals, lambs, calves or rabbits, taken after rotavirus infection. Human, calf, piglet, mouse and foal rotaviruses reacted with human, calf, mouse, foal and lamb convalescent serum by complement fixation (CF). It was not possible to distinguish between different rotaviruses by CF or FA. Neutralization tests, however, detected species-specific rotavirus antigens. Any virus was neutralized by a much higher dilution of homologous species convalescent serum than by any heterologous serum. With the exception of the mouse virus there was very little cross reaction. However, in sera with a very high neutralizing titre for the homologous virus the titre was proportionately raised against heterologous virus. It is, therefore, now possible to type to species an unknown rotavirus by a neutralization test in LLC MK2 cells using convalescent serum from each species.

Animals↗

Serologic characterization and sero-epidemiologic studies on acute hemorrhagic conjunctivitis (AHC) virus.

Serologic and sero-epidemiologic characteristics of AHC virus infection were studied by neutralization test (NT). Four-fold or greater virus neutralizing (VN) antibody response was demonstrated to the Japanese isolate of AHC virus (the J 670/71 strain) in 77.3% and 66.7% of paired sera from clinical AHC patients in Japan (1971-1973) and Tunisia (1973). The four patients from Indonesia studied in 1972 showed similar antibody response. Cross-neutralization tests of AHC virus isolated in Japan (1971), Taiwan (1971), Hong Kong (1971), Thailand (1972), Indonesia (1972), Singapore (1972), Morocco (1971) and England (1971) with three kinds of antisera prepared against Japanese, Hong Kong and Moroccan AHC virus isolates indicated their antigenic identity. However, isolates from Sinapore in 1970 (Singapore 70 virus) were not neutralized with the AHC virus antisera mentioned above: Singapore 70 virus constitutes another antigenic type, to which, however, no VN antibody rise was found in paired patients' sera from Japan, Tunisia and Indonesia. Thus, no serologic evidence supporting an etiologic role of this virus group in the development of AHC was found. Although cross-tests using monospecific antisera suggested some cross-relation between AHC and both echovirus type 4 (E4) and coxsackie A (CA), type 19, no serologic relationship between AHC and these viruses was found. Sera from healthy individuals collected before and after AHC outbreaks were tested for VN antibody against AHC virus in Japan and two epidemic foci, Ghana and Indonesia. Before the epidemic, 80 to 90% of the people lacked antibody in the three countries, but 39.7% and 45.2% of inhabitants posessed VN antibody of 1:8 or over in Ghana and Indonesia after the outbreak. In Japan, however, only a slight increase was found in VN antibody prevalence afterwards. Serologic study showed that 41.5% of horse sera were VN positive at dilutions of 1:8 or more; many cattle sera also had a low VN titer but few cynomologus monkey sera had VN activity.

Acute Disease↗

Encephalitis and retarded growth of chicks caused by Sitiawan virus, a new isolate belonging to the genus Flavivirus.

A new virus named Sitiawan virus (SV) was isolated from sick broiler chicks in chicken embryos. The virus replicated well with cytopathogenic effect (CPE) in the chicken B-lymphocyte cell line LSCC-BK3. The virus was an enveloped RNA virus of approximately 41 nm in size with hemagglutinating activity (HA) to goose erythrocytes. It was cross-reactive with Japanese encephalitis virus (JEV), a member of flaviviruses by HA inhibition tests but not by cross-virus neutralization tests. The cDNA fragment of NS5 gene was amplified with primers corresponding to NS5 gene of flaviviruses. The nucleotide sequences were 92% homologous to Tembusu virus, a member of the mosquito-borne virus cluster of the genus Flavivirus. In cross-neutralization tests with Tembusu virus, antiserum to SV did not neutralize Tembusu virus, and antiserum to Tembusu virus neutralized more weakly to SV than against homologous virus. These results indicate that SV is a new virus which can be differentiated serologically from Tembusu virus but is otherwise similar with respect to nucleotide sequence. The virus causes encephalitis, growth retardation, and increased blood glucose levels in inoculated chicks.

Animals↗