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Rose, W.

Publications and source records attributed to Rose, W..

2 recordsLinked to original sources

A novel rotavirus reverse genetics platform supports flexible insertion of exogenous genes and enables rapid development of a high-throughput neutralization assay

Despite the success of rotavirus vaccines, rotaviruses are still one of the leading causes of diarrheal diseases, resulting in significant childhood morbidity and mortality especially in low- and middle-income countries. Reverse genetics system enables the manipulation of the rotavirus genome and opens the possibility of using rotavirus as an expression vector for heterologous proteins such as vaccine antigens and therapeutic payloads. Here, we identified three positions in rotavirus genome, the C terminus of NSP1, NSP3 and NSP5, for reporter gene insertion. By using rotavirus expressing GFP, we developed a high-throughput neutralization assay and revealed the pre-existing immunity against rotavirus in human and other animal species. Our work shows the plasticity of rotavirus genome and establishes a high-throughput assay for interrogating humoral immune responses, benefiting the design of next-generation rotavirus vaccines and the development of rotavirus-based expression platforms.

microbiology↗

Assessment of two immunoassays for detection of IgM antibodies to scrub typhus using a serum panel

IntroductionScrub typhus is a vector borne zoonotic disease caused by Orientia tsutsugamushi, endemic to tsutsugamushi triangle. As the characteristic eschar is not always present, laboratory testing especially serological assay are the main stay of diagnosis.\n\nMaterials and methodsA total of 346 well-characterized sera from normals and patients with scrub typhus, malaria, dengue, enteric fever and gram negative septicaemia were tested for IgM antibodies by ST IgM ELISA and ST Ig M ICT\n\nResultsThe sensitivity and specificity of Scrub typhus IgM ICT and ELISA were 98.7, 96.3 and 97.4, 99.3 respectively. The IgM ICT and ELISA had a excellent concordance (99%) and a very high negative predictive value.\n\nConclusionThe findings from this study suggest that IgM ICT and IgM ELISA can be used interchangeably for serodiagnosis of scrub typhus in resource poor settings.

microbiology↗