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Crispell, G. P.

Publications and source records attributed to Crispell, G. P..

2 recordsLinked to original sources

Method Comparison for Japanese Encephalitis Virus Detection in Samples Collected from the Indo-Pacific Region

IntroductionJapanese encephalitis virus (JEV) is a mosquito-borne viral pathogen, which is becoming a growing public health concern throughout the Indo-Pacific. Five genotypes of JEV have been identified. Current vaccines are based on genotype III and provide a high degree of protection for 4 of the 5 known genotypes. MethodsRT-PCR, Magpix, Twist Biosciences Comprehensive Viral Research Panel (CVRP), and SISPA methods were used to detect JEV from mosquito samples collected in South Korea during 2021. These methods were compared to determine which method would be most effective for biosurveillance in the Indo-Pacific region. ResultsOur data showed that RT-PCR, Twist CVRP, and SISPA methods were all able to detect JEV genotype I, however, the proprietary Magpix panel was only able to detect JEV genotype III. Use of minION sequencing for pathogen detection in arthropod samples will require further method development. ConclusionBiosurveillance of vectorborne pathogens remains an area of concern throughout the Indo-Pacific. RT-PCR was the most cost effective method used in the study, but TWIST CVRP allows for the identification of over 3,100 viral genomes. Further research and comparisons will be conducted to ensure optimal methods are used for large scale biosurveillance.

molecular biology↗

Alpha-Gal Syndrome: Involvement of Amblyomma americanum α-D-galactosidase and β-1,4 Galactosyltransferase enzymes in α-gal metabolism

Alpha-Gal Syndrome (AGS) is an IgE-mediated delayed-type hypersensitivity reaction to the oligosaccharide galactose--1,3-galactose (-gal) injected into humans from the lone star tick (Amblyomma americanum) bite. This study aims at the functional characterization of two tick enzymes, -D-galactosidase (ADGal) and -1,4 galactosyltransferase ({beta}-1,4GalT) in -gal metabolism. The ADGal enzyme cleaves terminal -galactose moieties from glycoproteins and glycolipids, whereas {beta}-1,4GalT transfers -galactose to a {beta}1,4 terminal linkage acceptor sugars: GlcNAc, Glc, and Xyl in various processes of glycoconjugate synthesis. An RNA interference approach was utilized to silence ADGal and {beta}-1,4GalT in Am. americanum to examine their functional role in -gal metabolism and AGS onset. Silencing of ADGal led to the significant down regulation of genes involved in galactose metabolism and transport in Am. americanum. Immunoblot and N-glycan analysis of the Am. americanum salivary glands showed a significant reduction in -gal levels in silenced tissues. However, there was no significant difference in the level of -gal in {beta}-1,4GalT silenced tick salivary glands. A basophil-activation test showed a decrease in the frequency of activated basophil by ADGal silenced salivary glands. These results provide an insight into the role of -D galactosidase & {beta}-1,4GalT in tick biology and the probable involvement in the onset of AGS.

molecular biology↗