Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “virus classification”

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 631 records · Page 35Linked to original sources

[Epidemiology of malignant liver tumors].

Interpretation of descriptive statistics on liver cancer is affected by misclassification problems, evolving diagnostic procedures and changes in international classifications. Chronic infection with virus B and aflatoxin are major determinants for liver cancer in high-risk areas. In low and intermediate risk areas, including Italy, alcohol and cirrhosis are the most important risk factors. Preventive measures are neonatal vaccination against hepatitis B, reduction in aflatoxin contamination of foods, alcohol and tobacco consumption. Screening programs cannot be recommended as a measure of public health, particularly in western countries.

Aflatoxins↗

Evolutionary relationships among parvoviruses: virus-host coevolution among autonomous primate parvoviruses and links between adeno-associated and avian parvoviruses.

The current classification of parvoviruses is based on virus host range and helper virus dependence, while little data on evolutionary relationships among viruses are available. We identified and analyzed 472 sequences of parvoviruses, among which there were (virtually) full-length genomes of all 41 viruses currently recognized as individual species within the family Parvoviridae. Our phylogenetic analysis of full-length genomes as well as open reading frames distinguished three evolutionary groups of parvoviruses from vertebrates: (i) the human helper-dependent adeno-associated virus (AAV) serotypes 1 to 6 and the autonomous avian parvoviruses; (ii) the bovine, chipmunk, and autonomous primate parvoviruses, including human viruses B19 and V9; and (iii) the parvoviruses from rodents (except for chipmunks), carnivores, and pigs. Each of these three evolutionary groups could be further subdivided, reflecting both virus-host coevolution and multiple cross-species transmissions in the evolutionary history of parvoviruses. No parvoviruses from invertebrates clustered with vertebrate parvoviruses. Our analysis provided evidence for negative selection among parvoviruses, the independent evolution of their genes, and recombination among parvoviruses from rodents. The topology of the phylogenetic tree of autonomous human and simian parvoviruses matched exactly the topology of the primate family tree, as based on the analysis of primate mitochondrial DNA. Viruses belonging to the AAV group were not evolutionarily linked to other primate parvoviruses but were linked to the parvoviruses of birds. The two lineages of human parvoviruses may have resulted from independent ancient zoonotic infections. Our results provide an argument for reclassification of Parvovirinae based on evolutionary relationships among viruses.

Animals↗

[Autoimmune hepatitis (history of the research, current aspects)].

Important achievement in the study of autoimmune hepatitis are shown, particularly in establishing the role of hepatitis viruses, other hepatotropic viruses and some medicines. The last classification of chronic hepatitis based on the etiology, autoimmune hepatitis considers autoimmune hepatitis as a disease of unknown etiology. It is thought valid that investigation of autoimmune reactions produced by hepatitis viruses and other agents will enable a revision of classification of chronic hepatitis.

Hepatitis Viruses↗

Avian influenza A viruses.

The antigenic structure of eight strains of influenza A viruses of avian origin was investigated by haemagglutination inhibition, virus neutralization and strain-specific complement fixation. All strains could be distinguished from each other, but certain cross-reactions were observed allowing the establishment of four antigenic groupings, as follows: (1) classic fowl plague virus ("Dutch" strain), Turkey/England/63 ("Langham" strain) and virus N; (2) two strains isolated from ducks, one in Czechoslovakia in 1956 and one in England in 1962; (3) a third strain isolated from ducks in England in 1956; (4) the "Smith" strain (Chicken/Scotland/59) and the tern virus (Tern/South Africa/61).This article also reports the results of tests to determine the capacity of the above-mentioned viruses to infect monkey-kidney cultures and to produce plaques in chick-embryo fibroblasts. It concludes with a discussion of problems connected with the classification and nomenclature of these viruses.

In Vitro Techniques↗

PEDIATRIC VIROLOGY.

Pediatric virology is not an isolàted discipline. Rather, the syndromes associated with viral infection are modified by the unique characteristics of infancy and childhood. Fortunately for the pediatrician, and certainly for children, viral infections in childhood are rarely fatal, and are almost never serious. Future efforts of the pediatrician and virologist should be directed toward increased fetal salvage as with rubella and the prevention of severe, viral lower respiratory tract disease.

Child↗

Primary and secondary role of viruses in chronic renal failure.

Viruses may be the cause of renal disease. This effect may be direct, affecting the renal parenchyma, or may be indirect, usually through immune complex damage. The classification and potential role of viruses involved in renal damage is discussed.

Animals↗

Histologic classification and immunophenotype of lymphosarcomas in cats with naturally and experimentally acquired feline immunodeficiency virus infections.

Lymphosarcoma (malignant lymphoma) is the commonest hematopoietic tumor in the cat. Many cases are associated with feline leukemia virus (FeLV) infection, but epidemiologic and experimental data suggest that feline immunodeficiency virus (FIV) may also have a role in lymphomagenesis. In this paper, we describe the clinical presentation, histologic classification, and immunophenotype of lymphosarcoma in eight domestic cats with natural or experimental FIV infections. The tumors were often of unusual distribution, with the majority of cases conforming to the least common anatomic classification of "miscellaneous." Histopathologic and immunophenotypic analysis using a panel of anti-cat and cross-reactive anti-human monoclonal and polyclonal antibodies identified seven of these tumors as high-grade B cell lymphomas of the centroblastic or immunoblastic subtypes. The remaining case was a T-cell tumor associated with a concurrent FeLV infection. Our findings, together with the results of an analysis of FIV proviral DNA in these tumors, indicate that the B-cell lymphosarcomas were comparable to those observed in human and simian immunodeficiency virus infections and that the role of FIV in lymphomagenesis is indirect and related to the potential for malignant transformation during polyclonal B cell activation.

Animals↗

Analysis of oropouche virus L protein amino acid sequence showed the presence of an additional conserved region that could harbour an important role for the polymerase activity.

We described here the complete nucleotide sequence of the L RNA segment of Oropouche virus (genus Orthobunyavirus, family Bunyaviridae). We found the L RNA segment is 6846 nucleotides long and encodes a putative RNA polymerase of 2250 amino acids. Phylogenetic analysis showed that ORO virus cluster to the Orthobunyavirus genus confirming the serological classification. It also showed that Bunyamwera and California viruses, from the Orthobunyavirus genus, are more closely related to each other than to ORO virus. Sequence comparisons performed between the L proteins of 15 bunyaviruses and the PB1 proteins of 3 influenza viruses revealed that ORO L protein contains the 3 regions characteristic of arenaviruses and bunyaviruses. These comparisons also showed the existence of an additional fourth conserved region in the L protein of bunyaviruses that contains at least two active sites.

Amino Acid Motifs↗

[Epidemiologic survey on viral lesions and CIS of the cervix: multicenter retrospective study in public and private centers].

Fifteen pathologists working in various laboratories contributed to a survey designed to evaluate the frequency of viral lesions and carcinoma in situ of the cervix. This study, based on almost 400,000 cervico-vaginal smears demonstrated that the lesions were fell into a relatively narrow range (between 0.2% and 3% of low-grade lesions, between 0.2 and 2% of high-grade lesions, total at risk lesions between 0.5 and 5.2%). The results were stable over time within the one center. Sub-typing of human papilloma viruses provides a more informative classification of the low-grade lesions in which the morphological frontier between carcinoma in situ and condyloma is often blurred and in which the detection of an oncogenic virus lead to more rapid treatment.

Carcinoma in Situ↗

Detection and identification of ruminant and porcine pestiviruses by nested amplification of 5' untranslated cDNA regions.

Based on published gene sequences of bovine viral diarrhoea virus (BVDV) type I and classical swine fever virus (CSFV), genus- and species-specific primers were designed to detect and identify pestivirus cDNA sequences in a nested polymerase chain reaction (PCR). The PCR primers were validated using cDNA synthesized from 146 pestivirus isolates, comprising representatives of all four so far described genotypes (BVDV type I, BVDV type II, CSFV and border disease virus), as well as others of uncertain classification. PCR products of the predicted size were amplified from all viruses with the genus-specific primers. All 53 cattle isolates, including 5 typed antigenically as BVDV type II were amplified by the internal BVDV-specific primers, but not the CSFV-specific primers. The same result was found for other BVDV type I and II viruses isolated from sheep and pigs. Seventy-seven CSF viruses were amplified by their respective internal primers. Available information strongly indicate that 4 CSF viruses also amplified by the BVDV-specific primers had been contaminated with BVDV in cell cultures. Border disease viruses were mostly not detected by the BVDV-specific primers, but were detected weakly by the CSFV-specific primer pair. Using carrier RNA for extraction of viral RNA, the sensitivity of detection of the single and nested PCR was, respectively, 5 and 50 times higher than obtained with a cell culture assay. The RT-PCR also detected BVDV in all of 15 commercial batches of fetal calf serum examined, and verified three earlier diagnoses of CSFV by detecting specific gene sequences in 30 year old frozen archival organ samples.

Animals↗

Molecular analysis of rabies-related viruses from Ethiopia.

From brain samples collected from domestic animals in Ethiopia, two rabies-related viruses were isolated. According to their reactivity pattern with anti-nucleocapsid monoclonal antibodies, they were characterized as Lagos bat virus (isolate Eth-58) and Mokola virus (isolate Eth-16). This classification was confirmed by neutralization experiments with Mokola and Lagos bat specific antisera. Two potent anti-rabies vaccines were unable to protect mice against the two rabies-related viruses. In order to investigate molecular relationships to classical rabies virus, cDNA cloning and sequencing was performed. The RNA genome of both viruses comprises 12 kilobases (kb) and has an organization similar to that of rabies virus with the gene order 3'-N-P-M-G-L-5'. Using virus-specific cDNA as probes in heterologous hybridization experiments, the RNAs of other members of lyssavirus serotypes 2 and 3 were detected. From hybridization experiments and sequence analysis of the 3' terminal 5,5 kb of the genomes, Eth-16 and Eth-58 viruses were shown to be equally genetically distant from rabies virus with 60% nucleotide identity; Eth-16 and Eth-58 had 68% homology.

Animals↗

Capillary column gas chromatographic profile analysis of volatile compounds in sera of normal and virus-infected patients.

Using a transevaporator sampling technique, the volatile profiles from 70 microliter of serum were obtained by capillary-column gas chromatography. The complex chromatograms were interpreted by a combination of manual and computer techniques and a two-peak ratio method devised for the classification of normal and virus-infected sera. Using the K-nearest neighbor approach 85.7% of the unknown samples were classified correctly. Some preliminary results indicate the possible use of the method for the assessment of virus susceptibility.

Chromatography, Gas↗