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Antibodies against equine herpesviruses in free-ranging mountain zebras from Namibia.

Twenty-one blood samples of free-ranging mountain zebras (Equus zebra) from Namibia were tested for equine herpesvirus (EHV-1, -2, -3, -4) specific antibodies by immunofluorescence assay (IFA) and neutralization test (NT). Additionally, type-specific nested polymerase chain reactions (nested PCR) were employed for detection of EHV-1, -2 and -4 DNA. Equine herpesvirus-1 antibodies were detected by IFA in all zebras, while only seven serum samples contained EHV-4 IFA antibodies. Sera with high IFA antibodies also were found to neutralize EHV-1 and -4. Furthermore, 20 zebras were EHV-2 seropositive by IFA, and one zebra had EHV-2 neutralizing antibodies. Equine herpesvirus-3 specific antibodies were not detected. We did not amplify EHV-1, -2 or -4 specific DNA sequences in peripheral blood leukocytes of the same zebras using type-specific nested PCR. EHV infections appear to be widespread in free-ranging zebras, as they are in domestic horses.

Animals↗

Variants of amphotropic type-C retrovirus isolated from cultures of Moloney- and Rauscher-MuLV-induced tumors.

We isolated and characterized 2 strains of type-C retrovirus, R5NX and YACNX, from established lymphoid cell cultures derived from Rauscher-MuLV-induced lymphoma (RBL-5) in a C57BL/6 mouse, and Moloney-MuLV-induced lymphoma (YAC) in an A-strain mouse, respectively. The R5NX and YACNX viruses were compared with the prototype 4070A strain of amphotropic virus isolated from feral mice in California, and were found to belong to the same amphotropic virus class on the basis of viral interference, neutralization tests, and other biological properties. However, they were not quite identical with respect to viral neutralization antigens and restriction enzyme cleavage patterns of the proviral DNA. The possibility that these viruses may have been present in the original tumor together with the R-MuLV or M-MuLV as "exogenous" viruses rather than as contaminants of cell cultures by the 4070A virus is discussed. Although these 2 isolates were not pathogenic when inoculated into newborn C3H/HE mice, they could establish persistent infections in these mice.

Animals↗

Neutralization of different activities of venoms from nine species of Bothrops snakes by Bothrops jararaca antivenom.

Antivenoms are the usual treatment in cases of systemic envenoming by Bothrops snakes. However, the neutralization of each venom component by the antivenom is not well established. Bothrops jararaca antivenom, produced in rabbits, recognizes the venoms of nine different Bothrops species with high ELISA antibody titres. Western blot analysis showed that almost all antigens present on both homologous and heterologous venoms are recognized. Neutralization tests were performed using whole antivenom or its IgG fraction. The antivenom was able to neutralize the haemorrhagic, coagulant and necrotizing activities of the heterologous venoms in the same antivenom/venom proportion as for the homologous venom. Myotoxic activity was only partially neutralized. Neutralization of the proteolytic activity of heterologous venoms required higher amounts of antivenom than for the homologous venom. Phospholipase and oedema-inducing activities were completely neutralized only in the homologous system.

Animals↗

Antibody against Testudo herpesvirus is not common in Chinese soft-shelled turtles.

Seventy-six serum samples of Chinese soft-shelled turtles (Trionyx sinensis) were collected at Jiangsu Province, China. The neutralization test (NT) was performed with the sera, Testudo herpesvirus (THV) and turtle heart cells (THC). Neutralizing antibodies were detected in five of 76 samples and the titres were 1:10-1:20. Having optimized the conditions, the dot-enzyme-linked immunosorbent assay (Dot-ELISA) was developed and eight serum samples exhibited positive results. Five samples were positive by both NT and Dot-ELISA. The percentage of positive samples was only 6.6% (NT) and 11% (ELISA). It is suggested that THV infection is not a serious problem for the Chinese soft-shelled turtle culture in this region.

Animals↗

Identification of novel neutralization-inducing regions of the human T cell lymphotropic virus type I envelope glycoproteins with human HTLV-I-seropositive sera.

The humoral immune response in sera from 30 human T cell lymphotropic virus type I (HTLV-I)-positive individuals from Martinique in the French West Indies was studied. The subjects were subdivided into those suffering from TSP/HAM and those being asymptomatic. In general, TSP/HAM patient sera seemed to contain more virus-specific antibodies than did the sera from the asymptomatic subjects. Three of the 13 TSP/HAM sera and 1 of the 17 asymptomatic sera contained HTLV-I-specific IgM antibodies, whereas 6 and 5 sera, respectively, contained IgA antibodies. By correlating the ability of patient sera to inhibit HTLV-I-induced syncytia with their antibody reactivity in ELISA to 42 synthetic peptides, together corresponding to the entire envelope glycoprotein of HTLV-I, a number of putative neutralizing domains were identified. Eight synthetic peptides representing the regions with the highest coefficient of correlation between neutralizing titer and ELISA reactivity were employed to specifically adsorb potentially neutralizing antibodies, and were also used directly, without sera, in the syncytium-neutralizing test. By those techniques, three novel and two previously described domains that seemed to contain neutralizing epitopes were identified. Two of the novel neutralizing sites resided in the external glycoprotein (gp46) and were contained within amino acids 53-75 and 287-311, respectively, and one was located in the transmembrane glycoprotein (gp21) within amino acids 346-368. Our findings may have implications for the rational design of subunit vaccines for prevention of and/or alteration of the clinical outcome of HTLV-I-related diseases.

Adult↗

Direct serotyping of human rotavirus in stools by an enzyme-linked immunosorbent assay using serotype 1-, 2-, 3-, and 4-specific monoclonal antibodies to VP7.

Four serotypes of human rotaviruses that can be differentiated by neutralization tests have been described so far. We prepared serotype 1-, 2-, 3-, and 4-specific, neutralizing monoclonal antibodies to human rotaviruses. All were directed to VP7, a glycoprotein that carries a major serotype specificity. An enzyme-linked immunosorbent assay using these monoclonal antibodies has been developed for serotyping human rotavirus isolates. The sensitivity and specificity of this method were verified by using various strains of human rotavirus that were adapted to cell culture. Furthermore, it was shown that the method was applicable to serotyping human rotaviruses directly in stool specimens.

Antibodies, Monoclonal↗

Analysis of the newly identified neutralization epitopes on VP7 of human rotavirus serotype 1.

Neutralizing monoclonal antibodies (MAbs) directed to the VP7 protein and neutralization-resistant mutants were used to analyse the antigenic structure of VP7 of human rotavirus serotype 1. Cross-neutralization tests using the MAbs and the resistant mutants indicated the existence of two functionally independent neutralization epitope regions (S1 and S2) on VP7. Region S1 corresponds to a single epitope domain of VP7 which has been detected previously. Two MAbs prepared in this study recognized the S1 region, and the resistant mutants they selected had amino acid substitutions at positions 94 or 213. On the other hand, region S2 is considered to be a novel epitope. Single or double amino acid substitutions were detected in the variable regions (amino acid positions 145, 217 and 221) and in the constant regions (positions 104, 201 and 291) of the VP7 protein of mutants selected by MAbs directed to the S2 region. It was suggested that the variable region E (amino acids 208 to 221) includes two independent neutralization sites, and that amino acid substitutions in the constant region of VP7 also affect serotype-specific neutralization epitopes. Neutralization epitopes on VP7 are considered to be highly dependent on the conformation of VP7.

Animals↗

A rapid microneutralization assay for cytomegalovirus.

A rapid, simple and reproducible microneutralization test for human cytomegalovirus is described. The results can be read in 1-2 days and the neutralization titer detected in human and guinea pig sera and in monoclonal antibody-containing supernatants is consistent with that derived by the plaque-reduction neutralization test.

Animals↗

Prevalence of antibody to influenza C virus among pigs in Hyogo Prefecture, Japan.

The prevalence of influenza C virus among pigs in Hyogo Prefecture, Japan, was investigated by serological techniques. Out of 240 sera tested, 45 (19%) showed haemagglutination inhibition (HI) to influenza C virus. Pig sera with high HI titres also scored high in neutralization tests and ELISAs. When fractionated by sucrose density gradient ultracentrifugation, the HI/ELISA reactivities corresponded to antibodies of the IgM and IgG classes. Radioimmunoprecipitation tests revealed that some, but not all, of the pig sera with high HI activities precipitated HEF glycoprotein of influenza C virus. These results suggested that the HI activities of pig sera in Hyogo Prefecture were due to the presence of antibody to influenza C virus. Sera with IgM class antibody to influenza C virus were found throughout the year. However, the question of whether or not pigs serve as a natural reservoir for human influenza C virus still remains to be solved.

Animals↗

[Determination of the hepatitis B virus surface antigen (HBsAg) by immunoenzyme analysis].

Studies aimed at the development of a variant of ELISA for the determination of hepatitis B virus surface antigen (HBsAg) showed the assay to be most effective when a modified periodate method of conjugation of highly purified horseradish peroxidase with the IgG-fraction of antiserum to HBsAg was used. With the resulting conjugates, the "sandwich"-test on polystyrene solid phase could detect HBsAg in concentrations up to 5 ng/ml which is several thousand-fold higher in sensitivity than counter immunoelectrophoresis, one order of magnitude more sensitive than the passive hemagglutination test, and comparable with the radioimmunoassay (RIA). The specificity of the method was confirmed by positive results of the neutralization test. By this method, HBsAg in the sera of hepatitis B patients was detected as frequently as by the RIA.

Counterimmunoelectrophoresis↗

Monoclonal antibody neutralization of unmanipulated Chlamydia trachomatis serovar A infection of human epithelioid cells (A-431).

A human epithelioid cell line (A-431) was tested in parallel with McCoy fibroblast cells for the growth of trachoma-related serovar A Chlamydia trachomatis without centrifugation or cycloheximide addition. A-431 cells were 4-7 times more susceptible to infection with serovar A than McCoy cells in such unmanipulated cultures. Murine monoclonal antibodies (MAbs) developed against serovar A were then evaluated for their ability to inhibit unmanipulated serovar A infectivity of A-431 cells. Two of seven MAbs tested neutralized infectivity by more than 50%. An IgG2a MAb (2C8) that is specific for serovar A, and another IgG2a MAb (4E3) that reacts equally with serovars A and L2 neutralized infectivity of serovar A by 72.2 +/- 3.7% and 56.0 +/- 5.8% (mean +/- SEM of 7 experiments) respectively. Mouse immune serum (MIS) raised against serovar A elementary bodies (EB) neutralized infectivity of serovar A by 76.0 +/- 4.9% (mean +/- SEM of 7 experiments). Immunoblot detection of serovar A EB polypeptides separated by SDS-PAGE indicated that 2C8 reacted with a 16 kD and 4E3 reacted with a 12 kD polypeptide while MIS reacted with several polypeptides including the major outer membrane protein (MOMP). These studies show that the human epithelioid cell line A-431 is a more susceptible host than McCoy cells in unmanipulated cultures, and that 2 MAbs neutralize serovar A infectivity of A-431 cells. Identification of antigenic moieties of importance in unmanipulated chlamydial infections may help in the development of potential vaccines against trachoma.

Animals↗

A microneutralization test for the identification of enterovirus isolates.

Two-hundred and thirty-four enterovirus isolates were identified using a recently modified, microneutralization procedure. Neutralization tests were performed in 96 well plastic 'V' plates, using 20 microliter quantities of antisera and virus, then inoculated onto monolayers of buffalo green monkey kidney cells, growing in 48 well tissue culture plates. Utilization of this microneutralization procedure resulted in considerable savings of time, material, and particularly, neutralizing antisera.

Animals↗

CHARACTERIZATION OF ENTEROCOCCUS BACTERIOPHAGES FROM THE SMALL INTESTINE OF THE RAT.

Rogers, C. G. (University of Wisconsin, Madison) and W. B. Sarles. Characterization of enterococcus bacteriophages from the small intestine of the rat. J. Bacteriol. 85:1378-1385. 1963.-Enterococcus bacteriophages were isolated by an enrichment procedure from the contents of the small intestines of Sprague-Dawley white rats. After purification by single-plaque isolation, the phages were maintained in Tryptose broth by propagation on strains of Streptococcus faecalis var. zymogenes of similar intestinal origin. The presence of two phage strains was suggested from host range studies, and confirmed by antiserum neutralization tests, whereby the bacteriophages were placed in two distinct, but serologically related, groups. When the characteristics of one phage from each group were studied, differences were observed in antigenic properties, as shown by the ability to stimulate antibody production in rabbits, and in single-step growth characteristics. At 32 C, the latent period was 21 min, and the burst size was 88 plaque-forming particles (PFP) for phage 1; and 34 min and 147 PFP for phage 2. The bacteriophages were similar in temperature of inactivation, sensitivity to pH, and in rates of adsorption to host cells (K = about 2 x 10(-9) ml/min at 32 C). In electron micrographs, the viruses were characterized by slightly elongated heads and long tails, and resembled one another closely. The dimensions of the phage particles were similar to those reported for other phage-host systems within the genus Streptococcus.

Animals↗

Seroprevalence of infectious bursal disease virus in free-living wild birds in Japan.

Serum samples collected from 739 free-living wild birds of 44 species from Gifu, Mie and Hyogo Prefectures in Japan during the period 1989 to 1997 were tested for antibodies to infectious bursal disease virus (IBDV) serotypes 1 and 2 by a virus neutralization test. Serological evidence of infection with serotypes 1 and 2 was found in 15 (2%) of the sera of 6 species and 36 (4.9%) of the sera of 11 species, respectively. Antibodies to IBDV were detected from both sedentary and migratory species. These findings suggest that free-living wild birds have an important role in the natural history of IBDV. These findings raise the possibility that the IBDV prevalent in the breeding grounds of these birds in other countries could be imported by the migratory species. This is the first report of an extensive serological survey of IBDV in wild birds.

Animals↗

The Great Island subgroup of tick-borne orbiviruses represents a single gene pool.

The geographical distribution of members of the Great Island (GI) subgroup in the Kemerovo serogroup of orbiviruses extends from the Arctic to the Sub-antarctic. To examine the gene pool size of this group, five topotypes whose origins ranged from Iceland in the northern hemisphere to Macquarie Island in the Southern Ocean were tested for their ability to reassort in vitro. All the isolates were distinguishable by plaque reduction neutralization tests, and their genome profile in polyacrylamide gels. They showed high frequency reassortment following dual infection of cell cultures with temperature-sensitive (ts) mutants and/or wild-type virus. Analysis of the dsRNA profile of the reassortants by PAGE confirmed the observation from reassortment assays that the Great Island subgroup constitutes a single gene pool. A seventh reassortment group was identified, distinct from the six groups previously described. The ts lesions for reassortment groups I, V and VII were considered to be in genome segments 9, 3 and 2, respectively. Segment 6 of GI virus (in contrast to segment 5 of Broadhaven and Wexford viruses) was shown to be the major genetic determinant of serotype specificity.

Animals↗

MAC-ELISA and ELISA inhibition methods for detection of antibodies after yellow fever vaccination.

The IgM antibody capture ELISA (MAC-ELISA) and ELISA inhibition methods for the detection of antibodies against dengue virus were modified to detect antibodies against yellow fever virus. Tests were carried out in 21 persons vaccinated with 17D and compared with the Plaque reduction neutralizing test. Of 17 naive subjects vaccinated, 16 (94%) seroconverted using the MAC-ELISA test and 14 (82%) seroconverted (or >/=fourfold titer increase) in the ELISA inhibition method. Cross-reactivity was evaluated by both tests and resulted in a high specificity to IgM antibodies against yellow fever, when all the samples from vaccinated individuals were negative by MAC-ELISA using dengue antigen. However, 10.7% of the positive dengue sera from the Santiago de Cuba epidemic cross-reacted by MAC-ELISA using yellow fever antigen. ELISA inhibition method showed high cross-reactivity when the 21 sera pairs were worked with yellow fever and dengue antigens. The MAC-ELISA and ELISA inhibition methods have become indispensable tools in our laboratory in order to maintain a surveillance system for dengue and dengue hemorrhagic fever. They are relatively rapid, simple, and they do not require sophisticated equipment. Both MAC-ELISA and ELISA inhibition methods for yellow fever could be useful for diagnosis, surveillance and yellow fever vaccine evaluation.

Adult↗

Mechanisms of rabies virus neutralization by glycoprotein-specific monoclonal antibodies.

Incubation of radiolabeled rabies virus with neutralizing monoclonal antibodies (MAbs) resulted in complete neutralization of the virus but only partial inhibition of virus binding to, and internalization by, BHK cells. Several of the neutralizing MAbs were capable of preventing infection after virus adsorption to cells; up to 30% of the bound virus was released when cells containing adsorbed virus were incubated with these MAbs at 4 degrees, indicating that the release of bound virus accounts only in part for the neutralization of adsorbed virus. To study the mechanism of neutralization of cell-bound virus, temperature shift experiments were carried out to follow the fate of neutralized cell-adsorbed virus at 37 degrees. Treatment of infected cells with each of the tested neutralizing MAbs had no effect on virus uptake at 37 degrees and the MAbs were endocytosed together with the virus; however, the ability of some of the MAbs to neutralize cell-adsorbed rabies virus correlated with the fusion inhibition activity of these MAbs. We hypothesize from these data that these MAbs neutralize rabies virus by inhibiting the intraendosomal acid-catalyzed fusion step that leads to virus uncoating.

Adsorption↗