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Biomedical subjects

G Libeau

Publications and source records attributed to G Libeau.

At least 19 recordsLinked to original sources

Peste des petits ruminants has been widely present in southern India since, if not before, the late 1980s.

Because previous authorities had suggested that small ruminants were playing a part in the dissemination of rinderpest, and a rinderpest-eradication campaign was about to begin, it was necessary to make precise virus identifications from a number of small-ruminant "rinderpest" outbreaks. When this was done using a database created from passive disease reports, we found that epidemics-reportedly due to rinderpest-were in fact due to peste des petits ruminants (PPRs). Although such cases had been common in India for a number of years, earlier clinical and laboratory reports no longer should be regarded as definitive. PPR outbreaks have been frequent in recent years. Further, we suggest that PPR is not a recent invader of India.

Animals↗

Rapid and sensitive detection of peste des petits ruminants virus by a polymerase chain reaction assay.

A rapid and specific test was developed for the diagnosis of peste des petits ruminants disease. This assay is based on the rapid purification of RNA on glass beads followed by the reverse transcription-polymerase chain reaction (RT-PCR). To that effect, a set of primers (NP3/NP4) was used to amplify specifically a fragment of about 350 bp in the 3' end of the RNA messenger that encodes the nucleocapsid protein of the peste des petits ruminants virus. The PCR-product was detected by UV illumination after electrophoresis on agarose gel or by hybridisation with a digoxigenin-11-dUTP labelled oligonucleotide probe after a blot transfer. In comparison with the conventional titration technique on Vero cells, this RT-PCR assay was 1000-fold more sensitive. Compared with the popular Chomczynski and Sacchi's method [Anal. Biochem. 162 (1987) 156], the purification of the RNA on the glass beads offers the advantage of being more rapid and also avoiding the use of solvents.

Animals↗

Goat immune response to capripox vaccine expressing the hemagglutinin protein of peste des petits ruminants.

Sheep-pox and capripox are contagious diseases of domestic small ruminants for which the causal agent is a poxvirus classified into the Capripoxvirus genus. Viruses of this group have a host range specific to sheep, goats, cattle, and possibly buffalo. Thus, they are clearly indicated as vectors for the development of recombinant vaccines for peste des petits ruminants (PPR). Here we report the immune response of goats inoculated with a recombinant capripox-PPR hemagglutinin.

Animals↗

The matrix protein gene sequence analysis reveals close relationship between peste des petits ruminants virus (PPRV) and dolphin morbillivirus.

The gene encoding the matrix protein of peste des petits ruminants virus (PPRV) has been cloned and its nucleotide sequence determined. This gene is 1466 nucleotides long and contains an open reading frame (ORF) capable of encoding a basic protein of 335 amino acid residues with a predicted molecular weight of 38,057 Da. This ORF starts at position 33-35 and ends with the codon TAA at position 1038-1040 thus leaving a long untranslated region (426 nucleotides) at the 3' end of the messenger RNA. This fragment is very G/C rich (68.5%) and in contrast to the ORF region appears to be least conserved in the M gene sequence of the morbilliviruses. A comparison of the PPRV M protein with those of other viruses in the group confirms the previously noted high degree of conservation for this protein sequence. The percent of identity within the group ranges from 76.7 to 86.9%, the highest being with the dolphin morbillivirus matrix protein.

Amino Acid Sequence↗

Detection of peste des petits ruminants virus antigen in conjunctival smears of goats by indirect immunofluorescence.

Peste des petits ruminants virus (PPRV) antigen was detected in conjunctival epithelial cells obtained from goats in the early or late stage of the disease by the use of a specific monoclonal antibody (mAb) to PPRV in an immunofluorescent antibody test (IFAT). The affected goats were sampled during an outbreak of peste des petits ruminants in Eritrea. Syncytia were also observed in some smears, consistent with a morbillivirus infection, but the IFAT was more sensitive than staining for syncytia in the detection of viral antigen, the two tests giving 63 per cent and 40 per cent of animals, respectively, with positive tests. Positive immunofluorescence was observed in samples from goats in the early and late stages of the disease, but was not observed with a specific rinderpest mAb or with conjunctival smears from uninfected animals. It is concluded that preparation of conjunctival smears for staining for syncytia is a simple procedure which can be applied in the field, and by use of a specific mAb PPRV infection can be rapidly confirmed and differentiated from rinderpest.

Animals↗

The isolation of peste des petits ruminants virus from northern India.

The aetiological agent responsible for an epizootic of a rinderpest-like disease afflicting sheep and goats in three states of northern India was confirmed as peste des petits ruminants virus. To differentiate the virus from rinderpest a number of diagnostic tests were used, including immunocapture ELISA, specific oligonucleotide primers in a reverse transcriptase polymerase chain reaction, immunofluorescence with virus specific monoclonal antibodies and virus isolation. The virulence profile of one isolate in cattle sheep and goats was established. Infected animals developed specific antibody responses and excreted specific antigen in their lachrymal secretions.

Animals↗

Development of a competitive ELISA for detecting antibodies to the peste des petits ruminants virus using a recombinant nucleoprotein.

A competitive ELISA based on the reaction between a monoclonal antibody (mAb) and a recombinant nucleoprotein of the peste des petits ruminants virus (PPRV) was developed. This protein was obtained in large quantities from insect cells infected with a PPR nucleoprotein recombinant baculovirus (N-B). The competitive ELISA was compared with the virus neutralisation test (VNT) for detecting specific antibodies to PPRV in sheep and goats. The time consuming VNT is the only prescribed test that is capable of distinguishing between PPRV and the cross-reactive rinderpest virus (RPV). The competitive ELISA involves the simultaneous addition of the mAb and antibodies present in a positive serum, leading to competition for a specific epitope on the N-B. Optimum conditions were obtained by using serum samples which had positive or negative neutralising activity against PPRV or RPV. A negative cut-off point was determined on PPRV-negative sera from RPV-vaccinated cattle. A threshold value of 48 per cent inhibition, calculated from the mean for this population plus 2.7 standard deviations, was used in routine testing. A total of 683 sera were analysed by the competitive ELISA and the VNT. A good correlation (r = 0.94) was observed between the titres obtained in the two tests, with 80 sera that were from laboratory sources. The agreement between the two tests was determined on 271 field sera (kappa = 0.825). Their relative sensitivity (94.5 per cent) and specificity (99.4 per cent) were assessed on the 148 laboratory sera plus the 271 sera used for the determination of kappa.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Recent developments in the diagnosis of rinderpest and peste des petits ruminants.

Effective implementation of control measures for rinderpest and peste des petits ruminants requires that a proper and rapid diagnosis of the disease is made. Peste de petits ruminants (PPR) can be confused clinically with other infections such as pasteurellosis or contagious ecthyma. Rinderpest, in its classical form, is easy to identify clinically; however, mass vaccination in many countries and also the emergence of mild strains of the virus have made clinical diagnosis more difficult. Clinical observations for both diseases should always be confirmed by a laboratory. Diagnostic techniques used in the past were virus neutralization, agar gel immunodiffusion and virus isolation in cell culture, followed sometimes by reproducing the disease in susceptible animals. All these techniques are either time-consuming, labour intensive, insensitive, or expensive to perform. With the advent of hybridoma and molecular biological techniques, new reagents to assist diagnosis have become available and have led to the development of specific and rapid tests for the diagnosis of each disease. The present article reviews the diagnostic techniques currently available. An indirect ELISA was used successfully to evaluate the status of cattle following the Pan African Rinderpest Campaign. More recently competitive or blocking ELISAs have been developed based on monoclonal antibodies specific for the N or H proteins of the viruses, and which enable differential diagnosis between rinderpest and PPR. This is particularly important in sheep and goats, which may be infected with either virus. In future, improved standardization and reduced costs may be expected with the introduction of ELISAs based on purified antigens expressed in gene vector systems such as baculovirus. ELISA may also be adapted to antigen detection. Nucleic acid technology has also been applied to virus detection procedures. Hybridization probes showed a disappointing sensitivity for diagnostic applications, but more recently the polymerase chain reaction method has shown great promise, providing the potential of high sensitivity combined with specificity.

Animals↗

Rinderpest virus infection of bovine peripheral blood monocytes.

The ability of rinderpest virus (RPV) to replicate in vitro in adherent peripheral blood monocytes and monocyte-derived macrophages under non-stimulation conditions was investigated. When flow cytometry analysis on bovine peripheral blood mononuclear cells (PBMC) was performed, monocytic cells were seen to be targets for infection by the cell culture-attenuated RBOK vaccine strain of RPV. Viral glycoprotein (H) and nucleoprotein (N) expression in adherent blood monocytes and monocyte-derived macrophages was compared with the infection in Vero cells, in which a productive infection typical of morbilliviruses is obtained. In both cell types, the infection was m.o.i.-dependent, but the rate of viral protein accumulation was slower in monocytes/macrophages. Double-labelling experiments with monoclonal antibodies against RPV and the myeloid marker CD14 confirmed that the infected blood adherent cells were monocytes and macrophages. Productive infection of monocytes was confirmed by progeny virus titration. Permissiveness to infection was not dependent on macrophage differentiation: in vitro maturation of monocytes to macrophages before infection, did not increase the susceptibility of these cells to RPV infection. With the virulent Saudi RPV isolate, similar results were obtained, although the Saudi virus apparently had a higher rate of replication compared to the attenuated virus. These observations demonstrate clearly that bovine blood monocytes and monocyte-derived macrophages serve as hosts for a relatively slow but productive infection by rinderpest virus.

Animals↗

The use of monoclonal antibodies in the diagnosis of contagious caprine pleuropneumonia (CCPP).

Contagious caprine pleuropneumonia is a severe disease affecting goats in Eastern Africa and the Middle East, caused by Mycoplasma sp. type F38. Its exact geographical distribution is however not exactly known due to the lack of specificity of the available serological tests and the difficulty in cultivating M. sp. F38. A panel of monoclonal antibodies (mAbs) was produced, using crude or membrane proteins antigens from type F38 strains to immunize mice. The reactivity of the mAbs was tested by an immunobinding assay with crude mycoplasma antigens spotted on nitrocellulose filters. One hundred and twelve antigens, standardized at 0.5 mg protein/ml, were used. Mycoplasma strains were chosen among closely related species of the "mycoides cluster", M. capricolum, Group 7 of Leach, M. mycoides mycoides LC, M. mycoides mycoides SC, M. mycoides capri, as well as among species that are isolated from goat lungs, M. arginini, M. ovipneumoniae, M. putrefaciens, M. agalactiae. Out of 60 mAbs, 4 were chosen to build an identification test for mycoplasmas of the "mycoides cluster". Controls showed that accurate identification could be hampered by antigenic heterogeneity within the M. capricolum species. One mAb was used for the direct detection of M. sp. F38 antigen in pleural fluid from goats suspected of CCPP. The sensitivity of the test can be estimated at 0.5 micrograms protein/ml. Comparison with isolation results show a 74% agreement between the two methods. The same mAb was used to build a blocking ELISA. This serological test was strictly specific for CCPP. It detects antibodies in sera of naturally infected or artificially immunized animals while it remained negative with hyperimmune sera to related strains such as PG 50. Direct antigen detection and blocking ELISA are tools that may enable a better assessment of CCPP distribution.

Animals↗

Rapid differential diagnosis of rinderpest and peste des petits ruminants using an immunocapture ELISA.

An immunocapture ELISA for the diagnosis of rinderpest and peste des petits ruminants is described. Monoclonal antibodies directed against non-overlapping antigenic domains on the nucleocapsid (N) were used to detect the virus N protein in supernatants from infected cells and in field specimens. The assay, which is very sensitive, can be performed in one hour on pre-coated plates. There was no cross reaction between the two viruses in the test and the N protein could be detected in infected cell supernatants kept at ambient temperature for one week. These results show that the ELISA is suitable for routine diagnosis of field samples.

Animals↗

Monoclonal antibody-based blocking enzyme-linked immunosorbent assay for specific detection and titration of peste-des-petits-ruminants virus antibody in caprine and ovine sera.

A blocking enzyme-linked immunosorbent assay (B-ELISA), using two neutralizing monoclonal antibodies (MAbs), was established and compared with the virus neutralization test (VNT) for detecting specific peste-des-petits-ruminants virus (PPRV) antibody in caprine and ovine sera. This technique was developed because VNT, the only available specific serological test for PPRV and the cross-reactive rinderpest virus (RPV), is time-consuming and unaffordable for most laboratories in regions where both peste des petits ruminants and rinderpest occur. The test depends on the blocking of the binding of the MAb to a specific epitope in the presence of positive serum. Test conditions were optimized by using peste-des-petits-ruminants and rinderpest sera that were known to be VNT positive and negative. A blocking format, in which serum is preincubated with a solid-phase PPRV antigen and then incubated with the MAb, yielded levels of sensitivity and specificity superior to those of a competitive format, in which the two reagents are added simultaneously. A threshold value of 45% inhibition, representing the mean for a negative population (n = 277) plus 2.7 standard deviations, was adopted for routine screening. A total of 605 serum samples were screened by B-ELISA and the VNT. The sensitivity and specificity of B-ELISA relative to the VNT were 90.4 and 98.9%, respectively. Of 264 field serum samples tested, 11 (4.2%) could not be assayed by the VNT because of contamination or cytotoxicity; the overall agreement quotient between results of the two tests (n = 253) was 0.91. A high correlation (r>/=0.98) was observed between B-ELISA and the VNT for endpoint titration of sera (n=57). Because B-ELISA proved to be nearlyas sensitive and specific as the VNT while being simpler and more rapid, it would be an adequate substitute for the VNT for assessing herd immune status and for epidemiologic surveillance.

Animals↗

Field diagnostic kits: a solution for developing countries?

An exact assessment of the animal health situation in a country is an essential element in formulating eradication and control programmes, and in regulating international trade in animals and animal products from that country. Due to a lack of human and technical resources, Veterinary Services in developing countries often lack precise knowledge on disease occurrence. Since the collection and transmission of reliable information on animal diseases in developing countries are major concerns of the Office International des Epizooties (OIE), a project aimed at improving this situation was implemented with international financial support. This project involved the development by the Centre for the Application of Methodology for the Diagnosis of Animal Diseases (CAMDA) of field kits for the diagnosis of the main diseases present in tropical Africa: rinderpest, peste des petits ruminants (PPR), contagious bovine pleuropneumonia (CBPP) and contagious caprine pleuropneumonia (CCPP). Several tests already exist, such as complement deoxyribonucleic acid (cDNA)-specific probes and polymerase chain reaction (PCR) for rinderpest and PPR, DNA probes and PCR for CBPP, capture enzyme-linked immunosorbent assay, the agglutination test and the immunobinding peroxidase test for CCPP, etc. With specific reference to these examples, the various problems faced by the OIE and CAMDA are reviewed.

Animals↗

A competitive ELISA using anti-N monoclonal antibodies for specific detection of rinderpest antibodies in cattle and small ruminants.

A competitive ELISA (C-ELISA) using monoclonal antibodies (mAbs) which bind to the nucleo-protein (NP) of rinderpest virus (RPV) for detection of RPV antibodies in cattle and small ruminant sera is described. Unlike virus neutralisation test (VNT), this test using mAb IVB2-4, can detect specific RPV antibodies without showing a cross-reaction with antibodies to peste-des-petits ruminants-virus (PPRV); by contrast, when mAb VE4-1 is used the test detects both RPV and PPRV antibodies, including low levels of antibodies that can be found in sera containing maternal antibodies. Although antibodies to the PPRV 75-1 strain are also detected with mAb 51-5-6, the test is suitable for assessing the immune status of cattle against the Rinderpest Old Kabete (RBOK) strain. The results from a panel of sera with a known status of vaccination provide evidence for a highly significant correlation between C-ELISA and VNT. This test may be a useful tool for a standardized and accurate determination of the immunity status of both cattle and small ruminants.

Animals↗

Comparison of rinderpest and peste des petits ruminants viruses using anti-nucleoprotein monoclonal antibodies.

Monoclonal antibodies (MAbs) were obtained using a purified preparation of the RBOK strain of a rinderpest vaccine virus. The cytoplasmic immunofluorescent staining test showed that these clones had specificity for the nucleoprotein (N) of the virus. Six clones which immunoprecipitated the N protein corroborated these results. Thirteen anti-N MAbs were used to compare geographically widespread rinderpest viruses (RPV) and peste des petits ruminants viruses (PPRV) to two other morbilliviruses, measles (MV) and canine distemper (CDV). The N protein antigen profiles of the 23 isolates determined by immunofluorescent staining and enzyme linked immunosorbent assay (ELISA) on infected cells enabled us to classify the strains into groups. A differential identification of the morbilliviruses can be made using one MAb or associations of the MAbs. The potential to distinguish between RPV and PPRV and between virulent and avirulent strains of rinderpest is of primary interest.

Animals↗

[An immunoenzyme test used for the detection of antibodies to rinderpest: the advantage of using a purified virus cultivated in a cell line].

Two types of in vitro assays (enzyme immunoassay and sero-neutralization test) were compared for their ability to detect antibodies to rinderpest virus in field sera from West African bovines. Purified virus grown on Vero cells (Ag/Vero) or bovine kidney cells (Ag/BK), were tested as antigen in enzyme-linked immunoassays (EIA). The results of the comparative evaluation of the two antigens by EIA, prove that Ag/Vero did enhance the sensitivity and the specificity of the test in comparison to Ag/BK and offers a 94% correspondence with seroneutralization.

Animals↗

Trypanosoma brucei: analysis of relapsing populations in sensitive and resistant breeds of cattle.

The clone DiTat 1.1 of Trypanosoma brucei brucei was injected into four bovids, and clones obtained from successive waves of parasitemia were used to study the expressed variant-specific surface glycoprotein repertoire. Twenty-four clones were obtained which could be classified into 12 different variable antigen types, in addition to the clone injected, using agglutination or immunofluorescence with monospecific antisera. The variable surface glycoproteins of the 25 clones were extracted using the detergent octyl-beta-D-glucopyranoside in the presence of the protease inhibitor, N-cbz-L-phenylalaninechloromethylketone. The molecular weights varied from 52,000 to 69,000 and the pI from 5.0 to 8.8. The virulence of 14 clones representing 13 variable antigen types was ascertained in mice. The mean survival time ranged from 20.5 to 43.0 days. Clones isolated from early peaks of parasitemia in the bovid were the most virulent while clones derived from later peaks were less virulent. It seems that organisms of diminishing virulence appear in bovids, leading to self-cure of the disease. All clones were sensitive to human serum in a blood infectivity inhibition test. Antibody against all virulent clones appeared in 20 cattle (10 Zebus, 10 Baoulés) which had been injected with T. brucei DiTat 1.1. There was no evidence for parasites of high or low virulence being preferentially expressed in resistant or sensitive hosts.

Agglutination Tests↗