Characterization of BoHV-4 ORF45
Bovine herpesvirus 4 (BoHV-4) is a Gammaherpesvirus belonging to the Rhadinovirus genus. The bovine is BoHV-4's natural host, and the African buffalo is BoHV-4's natural reservoir.
Luca Russo +7 more
doaj +2 more sources
Rapid, sensitive, and visible RPA-LFD assay for BoHV-1 and BoHV-5
Bovine herpesvirus (BoHV) infection poses a significant threat to the healthy development of the cattle industry. BoHV-1 primarily causes infectious bovine rhinotracheitis, while BoHV-5 is associated with bovine necrotic meningoencephalitis.
Yue Wu +6 more
doaj +2 more sources
Role of bovine herpesvirus type 5 (BoHV-5) in diseases of cattle. Recent findings on BoHV-5 association with genital disease [PDF]
Bovine herpesvirus type 5 (BoHV-5) belongs to the family Herpesviridae, subfamily Alphaherpesvirinae, genus Varicellovirus. This virus is a major causative agent of non-suppurative meningoencephalitis in young cattle. It was first isolated in 1962 from a
S.E. Pérez, M.S. Marin, P.A. Favier
doaj +5 more sources
In vivo image analysis of BoHV-4-based vector in mice. [PDF]
Due to its biological characteristics bovine herpesvirus 4 (BoHV-4) has been considered as an appropriate gene delivery vector. Its genomic clone, modified as a bacterial artificial chromosome (BAC), is better genetically manipulable and can be used as ...
Valentina Franceschi +7 more
doaj +2 more sources
Genetic Characterization and Molecular Docking of Flavonoid Compounds Against <i>Klebsiella pneumoniae</i> and Bovine Herpesvirus Type 1 (BoHV-1) Isolated From Clinical Dairy Cattle Cases. [PDF]
Klebsiella pneumoniae and Bovine Herpesvirus Type 1 (BoHV‐1) are two significant pathogens of dairy cattle that cause debilitating diseases in the respiratory, reproductive, and mammary gland systems. Conventional antimicrobials have become less effective due to the emergence of antimicrobial‐resistant strains, and other molecules are needed for ...
Hamzah KJ +5 more
europepmc +2 more sources
Inducing Antigen-Specific and Functional Immune Responses in Mice Toward Bovine Herpesvirus 1 and Bovine Respiratory Syncytial Virus by Chimeric Peptides Delivered by Bovine Herpesvirus 4-Based Vector. [PDF]
Bovine Alphaherpesvirus 1 (BoHV‐1) and Bovine respiratory syncytial virus (BRSV) are major drivers of respiratory disease in cattle. (A) To target both pathogens, two chimeric antigens—membrane‐linked and secreted—combining BoHV‐1 glycoprotein D and BRSV fusion glycoprotein were designed and expressed using recombinant BoHV‐4‐based vectors.
Di Lorenzo A +7 more
europepmc +2 more sources
A Systematic Review and Meta-Analysis of the Epidemiology of Bovine Herpesvirus 1 Infection in Dairy Cattle in Ethiopia. [PDF]
This systematic review and meta‐analysis summarise the epidemiology of bovine herpesvirus‐1 (BoHV‐1) infection in dairy cattle in Ethiopia. Analysis of 9 studies involving 5078 cattle revealed a high pooled seroprevalence of 46.02%, with higher estimates from c‐ELISA and an increasing temporal trend from 2018 to 2025.
Kolech TA, Molla ED, Mengistu DA.
europepmc +2 more sources
Glycoprotein D of bovine herpesvirus 5 (BoHV-5) confers an extended host range to BoHV-1 but does not contribute to invasion of the brain [PDF]
Bovine herpesvirus 1 (BoHV-1) and BoHV-5 are closely related pathogens of cattle, but only BoHV-5 is considered a neuropathogen. We engineered intertypic gD exchange mutants with BoHV-1 and BoHV-5 backbones in order to address their in vitro and in vivo ...
Gabev E. +17 more
core +1 more source
Data_Sheet_1_Characterization of BoHV-4 ORF45.docx
Bovine herpesvirus 4 (BoHV-4) is a Gammaherpesvirus belonging to the Rhadinovirus genus. The bovine is BoHV-4's natural host, and the African buffalo is BoHV-4's natural reservoir.
Davide Cavazzini (2533249) +15 more
core +1 more source
Pantinin-Derived Peptides against Veterinary Herpesviruses: Activity and Structural Characterization. [PDF]
Pantinin‐1 and pantinin‐2, scorpion venom–derived peptides, show potent antiviral activity against caprine and bovine herpesviruses. Acting via virucidal action and inhibition of viral entry/fusion, they adopt α‐helical structures in membrane‐mimetic environments. These structure–activity insights highlight their potential as therapeutic agents against
Giugliano R +14 more
europepmc +2 more sources

