Search PubMedSearch

SEARCH · Search PubMed

Results for “herpesviruses”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Antigenic comparisons between herpesviruses isolated from fallow deer in Alberta and the viruses of infectious bovine rhinotracheitis, equine rhinopneumonitis and DN-599, a non-IBR bovine herpesvirus.

Antigenic comparison studies of three herpesviruses isolated from fallow deer (Dama dama) in Alberta and herpesviruses from some domestic species were carried out by the alpha serum-virus neutralization test. Complete cross neutralization was demonstrated among the deer herpesviruses and equine herpesvirus type 1.

Alberta

Inhibition of herpesvirus replication and herpesvirus-induced deoxyribonucleic acid polymerase by phosphonoformate.

Phosphonoformate was found to be an inhibitor of the deoxyribonucleic acid polymerase induced by the herpesvirus of turkeys. The apparent inhibition constants were 1 to 3 muM. Phosphonoformate was also able to block the replication in cell culture of Marek's disease herpesvirus, the herpesvirus of turkeys, and herpes simplex virus. It was as effective as phosphonoacetate. Phosphonoformate was not an effective inhibitor of a phosphonoacetate-resistant mutant of the herpesvirus of turkeys nor of its induced deoxyribonucleic acid polymerase.

Catalysis

The serological relationship of herpesvirus ovis to other herpesviruses and its possible involvement in the aetiology of jaagsiekte.

Cross-neutralization studies showed that 3 different isolates of herpesvirus ovis from cell cultures derived from the lungs of sheep suffering from jaagsiekte were not only identical but were also related to similar isolate made in Scotland. No relationship, however, could be established between herpesvirus ovis and common bovine or equine herpesviruses. Antibodies to herpesvirus ovis were present in roughly 70% of all animals tested and no evidence was obtained for the involvement of the virus in the aetiology of jaagsiekte. On the other hand, the absence of antibodies in sheep sera from Iceland as well as the other data obtained in this study did not exclude involvement of the virus in jaagsiekte.

Animals

Simple mathematical deductions in the seroepidemiology of viral infections. I. Herpesvirus group (herpesvirus hominis, varicella-zoster virus, cytomegalovris, Epstein-Barr-Virus).

Large samples of nonselected persons collected in South-West Germnay were investigated for the prevalence of serum antibodies to the human Herpesviruses HSV, VZV, CMV and EBV. According to "catalytic models", which compare the infection spread to simple chemical reactions of molecules, a mathematical approximation of the serum surveys was performed. Through a new deduction of the exponential function y = k (l - e-r+) a simple way was found to estimate the annual attack rates in percent of the susceptible, seronegative people. While it was possible to represent the prevalence of serum antibodies to VZV by a continuous curve, a biphasic curve to the antibody prevalence rates in the epidemiology of the other Herpesviruses proved to be more adequate indicating changes in hormonal balance and social behaviour. The use of the epidemiologic parameters k and r for the characterization of the test sensitivity was examined for CMV. By evaluation of the mean antibody titres to CMV, HSV, and EBV throughout different age groups, information about the reactivation of the Herpesvirus diseases could be obtained.

Adolescent

Further characterization of a herpesvirus-positive orang-utan cell line and comparative aspects of in vitro transformation with lymphotropic old world primate herpesviruses.

An orang-utan (Pongo pygmaeus) suspension line, CP81, was shown to lack myeloid markers of lysozyme activity an d phagocytosis but to be positive for lymphocytic N-alkaline phosphatase activity, and to release a B-cell-tropic herpesvirus. This herpesvirus, termed Herpesvirus pongo, had 30--40% DNA homology with EBV and was present at 2-3 genome copies per CP-81 cell. Gibbon lymphocytes transformed by H. pongo, Epstein-Barr virus (EBV), and H. papio (of baboon, Papio hamadryas, origin) were found to be virus antigen-positive B cells. Gibbon lymphocytes transformed by H. pongo and EBV and transplanted to nude mice by the intracranial (IC) route (had a 75% and a 45% success rate, respectively), while transplants of similar cells transformed by H. papio were only 10% successful. None of these lines transplanted subcutaneously (SC) nor manifested a high degree of colony formation in 0.33% agarose (less than or equal to 0.5%), Gibbon lymphocytes transformed by H. pongo were hypodiploid while those transformed by EBV or H. papio were diploid. CP-81 cells themselves could be transplanted both IC (100%) and SC (70%) and showed a relatively high degree of colony formation in agarose (6.4-7.6%). B95-8 cells (marmoset, Saguinus oedipus-EBV) could be transplanted IC (66%) but not SC and had a low but significant ability to grow in agarose (1.6%). 594S (baboon, P. hamadryas-H. papio) cells could be transplanted IC (25%) but not SC, and grew to very low levels in agarose (0.1%).

Alkaline Phosphatase

Experimental infection of Callithrix Jacchus marmosets with Herpesvirus ateles, Herpesvirus saimiri, and Epstein Barr virus.

We inoculated common marmosets (Callithrix Jacchus) with Herpesvirus ateles (HVA), Herpesvirus saimiri (HVS), and Epstein-Barr virus (EBV). HVA-induced tumors contained several cell types, including giant cells reminiscent of the Sternberg-Reed cells observed in human Hodgkin's disease. HVS and EBV did not induce tumors, although HVS was present in lymphocytes and elicited a strong antibody response. EBV elicited only a variable antibody response. We feel that more common marmosets should be used to determine if the pathologic and immunologic lesions caused by HVA would be a suitable animal model for Hodgkin's disease and/or other malignant lymphomas of man. Inconsistency in the induction of tumors by EBV and HVS in common marmosets suggets that this species may be a different type of model for human cancer research than the cottontop marmoset, which is the most susceptible animal host for EBV and HVS oncogenesis.

Animals

Relation between common antigen and membrane antigens associated with Marek's disease herpesvirus and turkey herpesvirus infections.

The appearance of two kinds of membrane antigen (MA) in Marek's disease herpesvirus (MDHV) or herpesvirus of turkey (HVT) infected cells was examined using antiserum to the common antigen (common-Ag). No early-appearing MA(EMA) was detected in these cultures until 16 hours post-inoculation, after which a number of cells in these cultures had late-appearing membrane antigen (LMA) as detected by immunofluorescence (IF). Fluids from cultures infected with these viruses were examined for the presence of the common-Ag by agar-gel precipitation (AGP) test. No common-Ag was detected until 16 hours, but after 24 hours, it was detected by AGP test. These results suggest that the common-Ag is related to LMA but not to EMA.

Animals

Studies of Marek's disease herpesvirus and turkey herpesvirus specific common antigen which stimulates the production of neutralizing antibodies.

An agar-gel precipitation antigen prepared from the skin (feather-Ag) of chicken infected with JM strain of Marek's disease herpesvirus (MDHV) and cell extracts of cultures infected with either Type 2 plaque producing agent (PPA) of MDHV or turkey herpesvirus (HVT) (Type 2-Ag, HVT-Ag) had 1 precipitation line in common. Hyperimmune sera to the common antigen (common-Ag) neutralized to a greater extent by homologous antiserum. Absorption of HVT antiserum or hyperimmune serum to Type 2 PPA with common-Ag reduced their neutralizing activity. This reduction was almost complete with homologous antigen but less complete with heterologous antigen. The location of antigen in Type 2 PPA and HVT infected cells was determined using hyperimmune serum to the common-Ag in fluorescent antibody tests. Antigen mainly occurred in the cytoplasm of cells corresponding to the rounded refractile cells in the plaques, whereas unfixed cells showed antigen on the cytoplasmic membrane. The common-Ag associated with MDHV or HVT infections might be a virus structural component which is associated with the envelope.

Absorption

Marke's disease herpesviruses. III. Purification and characterization of Marek's disease herpesvirus B antigen.

Sera from chickens naturally infected with Marek's disease herpesvirus (MDHV) form preciptin lines with at least two immunologically distinct soluble antigens designated MDHV-A and MDHV-B. Partial purification and characterization of the glycoprotein MDHV-A antigen was previously reported. MDHV-B was found predominantly in the sonically treated extracts of infected cells, in contrast to the predominantly extracellular MDHV-A. Analysis of these extracts from [14C]glucosamine-labeled cells by immunodiffusion with chicken anti MDHV-B serum negative for MDHV-A followed by autoradiography confirmed that MDHV-B was a common antigen between MDHV and herpesvirus of turkeys and revealed that it was also a glycoprotein. Because of their glycoprotein nature, both MDHV-A and MDHV-B bound to concanavalin A affinity chromatography columns and could then be eluted by alpha-methyl-D-mannoside and recovered for further analysis. Concanavalin A affinity chromatography was an excellent technique for initial purification of MDHV-A and MDHV-B, since approximately 5- and 15- fold purification, respectively, was achieved in a single simple step. MDHV-B was resistant to trypsin under conditions where MDHV-A was sensitive, but was similar to MDHV-A in resistance to pH 2.0 and to 1.0 or 2.0 M urea and 0.05% Brij 35. Partially purified MDHV-B was analyzed by sucrose gradient sedimentation, isoelectric focusing, and gel filtration on Sephadex G-200 in the presence of 1.0 or 2.0 M urea and 0.05% Brij 35 to purify the antigen and to determine its physical and chemical properties in comparison with those already reported for MDHV-A. MDHV-B had a much lower isoelectric point in pH 4,54, a higher sedimentation coefficient of 4.4S, and a greater molecular weight of 58,250. These data indicate that MDHV-B is physically distinct from MDHV-A antigen, although the size difference is not sufficient to allow for effective separation. In contrast, the isoelectric point difference of greater than 2 pH units makes isoelectric focusing an effective means of purifying the antigens free of one another. The four-step purification procedure achieved greater than 200-fold purification of MDHV-B. Immunization of rabbits with this highly purified antigen results in the preparation of antisera that appeared monospecific for MDHV-B in immunodiffusion.

Antigens, Viral

Influence of vaccination with avirulent herpesvirus on subsequent infection of chickens with virulent Marek's disease herpesvirus.

Vaccination of chickens with turkey herpesvirus (HVT) or attenuated Marek's disease herpesvirus (aMDHV) blocked infection with virulent MDHV (VMDHV) for approximately 5 weeks after contact exposure. However, there was no apparent blockage of infection when challenge virus was administered intraabdominally (IA). Evidence for infection with VMDHV was based on viral isolation by in vivo assay or by detecting precipitins to "A" antigen associated with virulent virus. The HVT stimulated production of neutralizing antibody against VMDHV in a high percentage of chickens, whereas the aMDHV was a comparatively poor inducer of such antibody. Despite this difference, both of the vaccinal viruses conferred protection against development of Marek's disease.

Animals

A comparative study of bovine herpesvirus 1247 and equine herpesvirus 1 in ponies.

The clinical and immunological response of ponies exposed to a bovine herpesvirus isolate and equine herpesvirus 1 were compared. Each virus was inoculated into two ponies by the intranasal route. One uninoculated pony was used with each group as a contact control. The four inoculated ponies developed a mild rhinitis with an increase in rectal temperature. Virus was recovered from nasal secretions collected from the four inoculated and one contact pony. All ponies developed a serum neutralizing antibody to each virus. The data show that the two viruses are similar.

Animals

Relation of herpesvirus hominis type II to carcinoma of the cervix. An animal model for the induction of long-term latency of herpesvirus hominis type II.

Proof of latency of herpesvirus hominis type II (HVH-II) following acute vaginocervical infection must be validated if it is to be considered an etiologic factor in carcinoma of the cervix. An animal model is presented which demonstrates acute HVH-II vaginocervical infection. Following the primary acute infection, animals maintained for an equivalent of 60 human years display persistance of the herpesvirus in the pelvic sensory ganglia. Evidence of the specificity of HVH-II as the infectious agent is presented.

Acute Disease

Extraction of soluble antigens of Epstein-Barr virus, Herpesvirus salmirl, and Herpesvirus ateles with the use of glycine.

For extraction of soluble antigen from cells infected with Epstein-Barr virus, Herpesvirus salmirl, and H. ateles, 0.1 M glycine (pH 9.5) was used. This method yielded increased amounts of the antigen containing much less cell debris. Lymphoblastoid cells infected with Epstein-Barr virus could maintain up to 50% viability after the extraction procedure. These cells could be used again after an appropriate interval in culture. The usefulness of this technique is discussed.

Antigens, Viral

Herpesvirus ateles DNA and its homology with Herpesvirus saimiri nucleic acid.

Analysis of the structural organization of Herpesvirus ateles DNA shows that two types of viral DNA molecules are encapsidated in virions: (i) M-genomes, which contain 74% light sequences (L-DNA, 38% guanine plus cytosine) and 26% highly repetitive heavy sequences (H-DNA, 75% guanine plus cytosine), and (ii) defective H-genomes, which consist exclusively of repetitive H-DNA. The structure of M-genomes from H. ateles consists of an L-DNA region of about 70 x 10(6) daltons inserted between H-DNA termini of variable length. M-genomes with a shorter H-DNA region at one end of the molecule have a long stretch of H-DNA at the other end, resulting in a total molecular weight of 89.8 +/- 8.5 x 10(6). Thus it resembles the structure of M-genomes of H. saimiri. H-DNA of the two independent H. ateles isolates, strains 810 and 73, reveals different patterns after cleavage with restriction endonuclease Sma I. H-DNA of H. ateles 810 appears to consist of identical tandem repeat units with a molecular weight of 1,035,000; the H-DNA repeat unit of strain 73 is shorter (930,000 molecular weight). Corresponding DNA sequences of the two H. ateles strains (810 and 73) are completely homologous in cross-hybridizations. However, a discrete nucleotide sequence divergence between these virus strains is detected by measuring melting temperatures (T(m)) of DNA hybrid molecules. Some homology exists between H. ateles and H. saimiri DNA. Hybridization of L-DNA from H. ateles with L-DNA from H. saimiri shows about a 35% homology between the respective L-DNA sequences; the resulting heteroduplex molecules show a decrease of T(m) by 13.5 degrees C, corresponding to about a 9% mismatching in cross-hybridizing parts of L-regions. Very little homology is found between H-DNA of H. ateles and H. saimiri.

Base Sequence

Purification of the JS-3 isolate of Herpesvirus ovis (Bovid herpesvirus 4) and some properties of its DNA.

A procedure incorporating the use of heparin was developed to purify Herpesvirus ovis. The viral DNA has a buoyant density of 1.706 +/- 0.001 g/cm3, and the sedimentation constant was estimated to be 47.5 +/- 1.5S; from the latter, the molecular weight was calculated as 67.3 +/- 5.4 X 10(6). Estimates of the guanine-plus-cytosine content made from the buoyant density and melting point (72 degrees C) gave levels of 47 and 46%, respectively.

Centrifugation, Density Gradient