Establishment and Application of a Novel Protein Microarray for Serological Detection and Differentiation of Senecavirus A. [PDF]
Senecavirus A (SVA) is an emerging swine pathogen that causes vesicular disease, which presents clinically indistinguishable signs from other vesicular diseases. To enable differentiation of infected from vaccinated animals (DIVA), we developed a novel protein microarray for dual serological detection of antibodies against SVA structural (VP2‐VP3‐VP1 ...
Li D +7 more
europepmc +2 more sources
Phorbol Myristate Acetate Inhibits Senecavirus A Replication by Activating IKBKE-Mediated IFN Pathway and NF-κB Signal. [PDF]
Senecavirus A (SVA) is an emerging picornavirus causing vesicular disease indistinguishable from foot‐and‐mouth disease virus (FMDV). So far, there are no commercial vaccines and effective therapeutic drugs against SVA infection in China. Here, a library of 112 compounds were screened, and we found that phorbol myristate acetate plays an antagonistic ...
Yan J +5 more
europepmc +2 more sources
A Novel In-Cell ELISA With Superior Sensitivity and Specificity for the Detection of African Swine Fever Virus-Specific IgM and IgG Antibodies. [PDF]
African swine fever (ASF), a high‐profile transboundary animal disease caused by ASF virus (ASFV), imposes a devastating impact on the global swine industry. Given that vaccines are still under development, including field evaluations, early detection of ASFV is crucial for effective disease control and mitigation.
Wu P +4 more
europepmc +2 more sources
An evaluation of the efficiency and effectiveness of diagnostic tests for foot and mouth disease: are novel diagnostic tests for FMD more feasible than conventional tests in Southeast Asia? [PDF]
Foot and mouth disease (FMD) remains endemic in many areas of continental Southeast Asia (SEA). It is responsible for substantial economic losses in the smallholder sector and threatens livelihoods. In recent years, novel diagnostic tests have been developed which reportedly detect FMD virus more effectively and efficiently.
Tan WY, Ward MP.
europepmc +2 more sources
Epitope Mapping of <i>Senecavirus A</i> 3A Protein Using Monoclonal Antibodies. [PDF]
Senecavirus A (SVA), an emerging pathogen causing vesicular disease in pigs, poses a significant threat to the swine industry. The nonstructural protein 3A of SVA plays an essential role in the viral replication cycle. In this study, we immunized mice with the prepared SVA 3A protein and produced two monoclonal antibodies (mAbs), AG4 and 2F3.
Meng L +8 more
europepmc +2 more sources
Covid-19 dermatoses: Acral vesicular pattern evolving into bullous pemphigoid. [PDF]
Abstract Bullous pemphigoid (BP) appears to be rising in incidence across the Western World, especially in the elderly. Some of the pathogenetic mechanisms involving antigen mimicry and antibody cross‐reactivity have been elucidated for cases associated with neurological disease and certain drugs.
Goon PKC +5 more
europepmc +2 more sources
Abstract Xenotransplantation has the potential to address shortages of organs available for clinical transplantation, but concerns exist regarding potential risks posed by porcine microorganisms and parasites (MP) to the health of human recipients. In this study, a risk‐based framework was developed, and expert opinion was elicited to evaluate porcine ...
Huybert Groenendaal +14 more
wiley +1 more source
Background Seneca Valley virus (SVV) has emerged in multiple countries in recent years. SVV infection can cause vesicular lesions clinically indistinguishable from those caused by other vesicular disease viruses, such as foot-and-mouth disease virus ...
Jianqiang Zhang +13 more
doaj +1 more source
Vesivirus 2117 capsids more closely resemble sapovirus and lagovirus particles than other known vesivirus structures [PDF]
Vesivirus 2117 is an adventitious agent that in 2009, was identified as a contaminant of CHO cells propagated in bioreactors at a pharmaceutical manufacturing plant belonging to Genzyme.
Bhella, David +8 more
core +1 more source
USE OF REAL-TIME qRT-PCR FOR FMD VIRUS DETECTION IN CATTLE MILK
FMDV can be shed with milk of infected animals and infect susceptible animals. The possibility of using real-time qRT-PCR for FMD virus detection in cattle milk was assessed. To prepare samples of FMDV infected milk the following strains were used: А No.
A. M. Timina +2 more
doaj +1 more source

