PubMed Health⌕ Search

Biomedical subjects

E Thiry

Publications and source records attributed to E Thiry.

At least 109 records · Page 6Linked to original sources

Effect of prostaglandins PGE2 and PGF alpha 2 on the mean plaque size of bovine herpesvirus 1.

The effect of prostaglandins PGE2 and PGF alpha 2 on infectious bovine rhinotracheitis (IBR) virus (bovine herpesvirus 1; BHV-1) was studied by using the measurement of the mean size of plaques produced in cell culture by IBR/Cu5 strain. Three concentrations (0.1, 1 and 10 micrograms/ml) of prostaglandins, PGE2 and PGF alpha 2 were used. Each prostaglandin provoked an increase in the mean plaque size when compared to control plaques, at the concentrations 1 and 10 micrograms/ml for PGE2 and 10 micrograms/ml for PGF alpha 2.

Cells, Cultured↗

Therapy of Aujeszky's disease (pseudorabies) in naturally infected and artificially inoculated piglets using BW B759U (9-[1,3-dihydroxy-2-propoxymethyl] guanine).

Two experimental porcine models of Aujeszky's disease (AD) were compared for assessing the efficacy of potential antiviral compounds. While signs were the same following intranasal inoculation and in-contact transmission of the causal herpesvirus, SHV-1 (Suid herpesvirus), the time-course of the disease was different. There was less variation in clinical signs between pigs following artificial infection, but the disease was more severe, making this a consistent but also more stringent test system. A nucleoside analogue, BW B759U (9-[1,3-dihydroxy-2-propoxy-methyl] guanine), was administered intramuscularly in divided twice daily doses at 50 mg kg-1 to three-week-old piglets in these two SHV-1 disease models. In artificially infected animals, in which treatment was begun 1.5 hours preinfection and continued for six days, there was a delay in the onset of clinical signs (4.8 compared with 3.2 days), a 1 log10 reduction in virus shedding, and a 1 to 2 log10 reduction in virus recovered from tissues, but all the treated piglets died from AD. In contrast, none of the BW B759U-treated piglets in the in-contact model system died during the eight-day medication period, although two piglets died subsequently. Mean serum concentrations of BW B759U two hours after intramuscular dosing were about 45 microM, at nine hours 15 to 20 microM and at 17 hours 3.5 microM. The in vitro IC50 of BW B759U against SHV-1 varies from 1.5 to 80 microM depending on the cell line in which the assay is carried out. There were no overt signs of BW B759U toxicity in the treated piglets.

Acyclovir↗

BSA-anti-BSA immune complexes formed in the presence of human complement do not bind to autologous red blood cells.

The binding of 125I-BSA-anti-BSA immune complexes (IC) formed in the presence of complement (nascent IC) and those that reacted with complement after their formation (preformed IC) to human erythrocytes was studied. The effect of antigen-antibody ratios and serum dilutions on IC binding to red blood cells (RBC) were also investigated. A dramatic difference was found between the behaviour of the two types of complexes: while preformed IC bound effectively to human RBC after their interaction with complement, no efficient RBC-binding was observed with nascent BSA-anti-BSA complexes formed in the presence of complement. Changing the antigen-antibody ratio or dilution of serum did not affect markedly the extent of difference between the binding of preformed and nascent IC. Our findings do not support the essential role of red blood cells in the elimination of each type of IC.

Animals↗

Reactivation of infectious bovine rhinotracheitis virus by transport.

Transport was studied as a cause of reactivation of infectious bovine rhinotracheitis virus (Bovine herpesvirus-1; BHV-1) in heifers vaccinated 2-6 months before transport, using a double dose of the thermosensitive (ts) vaccine strain (Tracherine). Eight out of 19 animals showed ts strain re-excretion over a period of 1-3 days, beginning, in 5 out of the 8 heifers, the day after transport. In 14 other heifers, only sera were examined by sero-neutralisation: only 1 out of these 14 animals showed a rise in BHV-1 neutralising antibodies. Transport can therefore be considered as a stimulus of BHV-1 reactivation.

Animals↗

[Virus carriers: analysis of states of equilibrium between the virus and its host].

The various mechanisms of virus persistence are described. Four kinds of virus persistence are presented, depending on their epidemiological significance, persistence associated with continuous multiplication and transmission (feline calicivirus, calf rotavirus); persistence associated with continuous multiplication but discontinuous transmission (equine infectious anemia retrovirus); persistence with continuous multiplication associated with immunotolerance (feline leukaemia retrovirus; mucosal disease pestivirus); latent carrier state with discontinuous transmission (feline and pigeon herpesvirus; infectious bovine rhinotracheitis herpesvirus). The classification of these kinds of virus persistence is based upon their epidemiological significance, even if the mechanisms allowing the persistence are completely different.

Animals↗

Development of specific antibodies mediating antibody-dependent cell-mediated cytotoxicity following experimental infection of cattle with bovine herpesvirus 1 and subsequent viral reactivation.

Evolution of sensitizing antibodies involved in antibody-dependent cell-mediated cytotoxicity (ADCC), antibody-complement cell lysis and complement-facilitated ADCC was followed in bulls after primary infection by a wild strain of infectious bovine rhinotracheitis virus (bovine herpesvirus 1; BHV-1) and after experimental reactivation of the virus. These antibodies were detected between the 4th and the 7th day after primary infection, reached a maximum level after 2 weeks and rose slightly after reactivation of the virus following dexamethasone treatment. The presence of endogenous complement slightly enhanced the ADCC reaction.

Animals↗

Logical description of bovine herpesvirus type 1 latent infection.

Description of the interactions between bovine herpesvirus type 1 (BHV-1) and cattle was performed by the method known as kinetic logic. This logical formalization uses variables with two possible values, 1 and 0, which tell whether an element is present or not at a significant level. To each variable is associated a function which tells if the element is being produced at a significant rate. The temporal relation between a variable and its associated function is given by specific time delays. The BHV-1 infection system is described by a set of five logical equations which tell in what conditions each function is on or off. The five functions are: V, development of viral multiplication; R, development of reactivation of the latent virus; A, development of an immune response; G, establishment of the viral genome; M, development of a memory of a first immune response. Several examples are detailed in a dynamic analysis, in connection with known experimental data.

Animals↗

Apolar ecdysteroid esters in adult female crickets, Gryllus bimaculatus.

Six hours after injection of 0.5 microCi 3H-ecdysone into the hemocoele of adult female crickets, several labelled compounds could be separated from hemolymph and tissues by silicic acid column chromatography, TLC, and HPLC. The amount of conjugated, polar ecdysteroids was low in all tissues, whereas apolar metabolites were predominant in all tissues. The apolar compound A2, which is the most abundant in quantity, could be hydrolyzed by porcine liver esterase, yielding ecdysone and various long chain fatty acids. This represents a new class of apolar ecdysteroid conjugates not yet found in other insects.

Animals↗

Diagnosis and prophylaxis of infectious bovine rhinotracheitis: the role of virus latency.

Efficient methods of diagnosis and prophylaxis of infectious bovine rhinotracheitis must consider the concept of latency of the etiological agent, infectious bovine rhinotracheitis virus (Bovine herpesvirus 1; BHV 1). The identification of BHV 1 in nasal mucus samples or a rise in specific antibodies have to be cautiously interpreted, because they can signify either a primary infection or a reexcretion of the virus after reactivation. The isolated virus can also either be a vaccine or a virulent strain. Another aspect of BHV 1 infection diagnosis is the detection of latent carriers, which are able to transmit the virus to uninfected animals; delayed hypersensitivity test seems to be a good candidate. The classical methods of prophylaxis protect the animal against the disease, but they should also impede the reexcretion of virulent strains by latent carriers. Since, in several countries, attenuated viruses are used as vaccines, a special emphasis has to be laid on the persistence of these vaccine viruses in a latent form in the bovine population.

Animals↗

Excretion and reexcretion of thermosensitive and wild-type strains of infectious bovine rhinotracheitis virus after co-infection or two successive infections.

Twelve cattle were divided into 2 groups. The first was intranasally co-infected with 2 strains of infectious bovine rhinotracheitis virus (Bovine herpesvirus 1; BHV 1): the thermosensitive vaccine strain IBR/ts RLB106 and a Belgian field isolate IBR/Cu5. Reactivation of BHV 1 was induced by dexamethasone treatment 2 months later and again 5 months later for 3 animals that only reexcreted small quantities of virus during the first dexamethasone treatment. The second group was intranasally infected with IBR/Cu5. Two months later, an attempt to reinfect this group with IBR/ts RLB106 failed. Four months after the primary infection, these cattle were treated with dexamethasone. Except after reinfection and at the beginning or the end of the (re)excretion periods, excreted and reexcreted viruses replicated at 35, 37 and 40 degrees C, indicating the presence of the wild-type virus. Only one isolate, out of 116 cloned from the nasal exudates collected during the excretion and reexcretion periods, expressed the thermosensitive phenotype. This isolate was characterized by its mean plaque size as the IBR/ts RLB106 strain. The epizootiological significance of these findings is discussed, with emphasis on the weak spreading capacity of the ts vaccine strain and the possibility of emergence of recombinant viruses.

Animals↗

Effect of dexamethasone on the mean plaque size of bovine herpesvirus 1.

The effect of dexamethasone on infectious bovine rhinotracheitis virus (Bovine herpesvirus 1: BHV 1) was studied by measuring the mean plaque size produced by eight virus strains under two concentrations of dexamethasone phosphate (0.1 and 1 mM). Dexamethasone induced a significant reduction of the mean plaque size, whatever the strain used. Some differences were noted between the BHV 1 strains studied, depending on the dexamethasone concentration.

Animals↗

[Infectious bovine rhinotracheitis virus (bovine herpesvirus l): biochemical aspects].

The biochemical characteristics of infectious bovine rhinotracheitis virus (Bovine herpes-virus 1, BHV 1) are reviewed: description of the virion particle and virus purification, analysis of structural and non structural proteins, nucleic acid properties, restriction endonuclease analysis of the viral DNA. The authors emphasize the biochemical methods able to insure a better understanding of the molecular epidemiology of BHV 1 and of its latency; also to develop biochemical weapons against the infection.

Animals↗

Effect of homologous delayed hypersensitivity testing on specific and non-specific lymphoblastic transformation in cattle latently infected with bovine rhinotracheitis virus (bovine herpesvirus 1, BHV 1).

Two cattle latently infected with infectious bovine rhinotracheitis virus (Bovine herpesvirus 1, BHV 1) were intradermally injected with inactivated BHV 1 antigen (delayed hypersensitivity test, DHT, skin test). Another animal, free of BHV 1 infection was similarly treated. Two latent carriers of the virus, intradermally injected with Phosphate-Buffered Saline solution were used as control. The evolution of spontaneous multiplication of lymphocytes and lymphoblastic transformation in vitro induced by three phytomitogens (con A, PHA, PWM) and BHV 1 antigen was followed in all animals. The delayed hypersensitivity test provoked an increase in spontaneous lymphocyte multiplication in latent carriers as well as an increase in mitogen- and antigen-induced blastogenesis on the 2nd and the 9th day following the treatment. A similar increase occurred on the 9th day in the BHV 1-free animal. Therefore, in latent carriers of BHV 1, delayed hypersensitivity testing induces an anamnestic lymphocyte reaction corresponding to the cutaneous one. This first lymphocyte activity is followed, one week later, by a new reaction which occurs both in infected and uninfected animals.

Animals↗

In vivo and in vitro effect of acyclovir on pseudorabies virus, infectious bovine rhinotracheitis virus and pigeon herpesvirus.

The effect of various concentrations of acyclovir on the mean plaque size of pseudorabies virus (SHV), infectious bovine rhinotracheitis virus (IBR virus) and pigeon herpesvirus (PHV) has been studied. Acyclovir significantly reduced the mean plaque size of SHV and PHV, whereas IBR virus was less affected and did only show a reduction of the mean plaque size at the highest concentration of acyclovir used (1000 microM). In vivo effect of acyclovir was tested using pigeons and budgerigars experimentally infected with PHV and rabbits experimentally infected with a very low dose of SHV. Intramuscular injections of acyclovir (100 mg/kg/day; three injections/day) did not prevent the appearance of clinical disease in infected pigeons nor did reduce the level of viral excretion. The same treatment applied, as for the pigeons, before infection protected most of the budgerigars as long as they were treated, but most of them died soon after the end of the treatment. Only one rabbit was protected by the treatment. SHV was recovered in the lung of only one of the treated animals, whereas it was isolated in the lungs of each control animal.

Acyclovir↗