نتایج جستجو برای: pseudorabies virus

تعداد نتایج: 397229  

Journal: :Veterinary research 2007
Hans Nauwynck Sarah Glorieux Herman Favoreel Maurice Pensaert

In the present review, several cell biological and molecular aspects of virus-cell and virus-host (pig) interactions are reviewed for pseudorabies (Aujeszky's disease) virus. Concerning the virus-cell interactions, the complex cascade of events in the virus replication cycle is given together with the different mechanisms of cell-to-cell spread. The pathogenesis of pseudorabies virus infections...

Journal: :Regulatory mechanisms in biosystems 2023

The article presents the results of a molecular genetic study two isolates Pseudorabies virus that were isolated from pigs in Ukraine. Bioinformatic analysis gE gene fragment Aujeszky's disease (Pseudorabies virus) was carried out order to determine phylogenetic relationships and homology nucleotide sequences. Fragments Aujeszky genome corresponding C-terminal region selected for sequencing fur...

Journal: :Journal of clinical microbiology 1978
P C Smith W C Stewart

Soluble antigen prepared from pseudorabies virus-infected embryonic pig kidney cells was used to demonstrate the presence of pseudorabies virus antibodies in sera taken from naturally and experimentally infected swine. Antibody could be detected by agar-gel immunodiffusion as early as 14 days postexposure and was demonstrable at least 3 months after experimental infection (the longest period te...

2011
Judit Tóth

s related to the subject of the thesis Tóth JS, Tombácz D, Petrovszki P, Boldogkői Z: Regulatory function or transcriptional noise? – Antisense RNS sin Aujeszky‟s disease virus. Acta Microbiol Immunol Hung 2009, 56, 104. Tombácz D, Tóth JS, Petrovszki P, Boldogkői Z: Transcriptional analysis of Aujeszky‟s disease virus by Real-Time RT-PCR. Acta Microbiol Immunol Hung 2009, 56, 103. Tombácz D, T...

Journal: :Journal of virology 1986
A K Robbins R J Watson M E Whealy W W Hays L W Enquist

A pseudorabies virus (Becker strain) glycoprotein gene was located in the UL region at map position 0.40. The gene was identified by using open reading frame Escherichia coli plasmid expression vectors and specific antibody reagents. A 1.55-kilobase unspliced transcript from the gene was detected in pseudorabies virus-infected tissue culture cells. The DNA sequence revealed a single open readin...

Journal: :Stroke 2009
Zhongwu Liu Rui Lan Zhang Yi Li Yisheng Cui Michael Chopp

BACKGROUND AND PURPOSE To elucidate how the motor pathways rewire the denervated tissue after stroke, we investigated remodeling of the corticospinal tract (CST) in transgenic mice with yellow fluorescent protein CST labeling in conjunction with transsynaptic pseudorabies virus retrograde tracing. METHODS Adult male CST-yellow fluorescent protein mice were subjected to permanent right middle ...

Journal: :Journal of clinical microbiology 1983
J A Badylak G Scherba D P Gustafson

Pseudorabies virus was photoinactivated with a combination of methylene blue dye, light, and electricity. Viral suspensions were mixed with variable amounts of methylene blue dye and then were placed in a current source apparatus. Total inactivation of pseudorabies virus (1.7 X 10(6) 50% tissue culture infective doses per ml) was achieved with constant mixing, a methylene blue dye concentration...

2016

Etiology • Pseudorabies virus (PRV) is an enveloped, double-stranded DNA virus belonging to the family Herpesviridae. Also known as suid herpesvirus-1 (SuHV-1), the virus causes Aujeszky’s disease. • ‘Classical’ PRV strains affecting multiple species were first isolated in the early 1900s. ‘Variant’ PRV strains emerged in swine in China in 2011. • Genomic sequencing and phylogenetic analyses ha...

2016

Etiology • Pseudorabies virus (PRV) is an enveloped, double-stranded DNA virus belonging to the family Herpesviridae. Also known as suid herpesvirus-1 (SuHV-1), the virus causes Aujeszky’s disease. • ‘Classical’ PRV strains affecting multiple species were first isolated in the early 1900s. ‘Variant’ PRV strains emerged in swine in China in 2011. • Genomic sequencing and phylogenetic analyses ha...

Journal: :The Japanese journal of veterinary research 1999
A Takada K Okazaki H Kida

Intranasal administration of plasmid DNA encoding glycoprotein B of pseudorabies virus into mice induced both serum and secretory antibody responses. These mice resisted intranasal challenge with lethal dose of the virus, but did not intraperitoneal challenge. On the other hand, intramuscular injection of the plasmid induced less secretory and higher serum antibody responses than those of intra...

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