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Altered Spatial and Temporal Gait Parameters in Mice Infected with Ross River Virus.
Abeyratne, Eranga; Reshamwala, Ronak; Shelper, Todd; Liu, Xiang; Zaid, Ali; Mahalingam, Suresh; Taylor, Adam.
Afiliación
  • Abeyratne E; Menzies Health Institute Queensland, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Reshamwala R; Global Virus Network Centre of Excellence in Arboviruses, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Shelper T; School of Pharmacy and Medical Sciences, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Liu X; Menzies Health Institute Queensland, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Zaid A; School of Pharmacy and Medical Sciences, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Mahalingam S; Griffith Institute for Drug Discovery, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
  • Taylor A; Clem Jones Centre for Neurobiology and Stem Cell Research, Griffith Universitygrid.1022.1, Gold Coast Campus, Southport, QLD, Australia.
mSphere ; 6(5): e0065921, 2021 10 27.
Article en En | MEDLINE | ID: mdl-34585962
Infection with mosquito-borne arthritogenic alphaviruses, such as Ross River virus (RRV) and Barmah Forest virus (BFV), can lead to long-lasting rheumatic disease. Existing mouse models that recapitulate the disease signs and immunopathogenesis of acute RRV and BFV infection have consistently shown relevance to human disease. However, these mouse models, which chiefly model hindlimb dysfunction, may be prone to subjective interpretation when scoring disease. Assessment is therefore time-consuming and requires experienced users. The DigiGait system provides video-based measurements of movement, behavior, and gait dynamics in mice and small animals. Previous studies have shown DigiGait to be a reliable system to objectively quantify changes in gait in other models of pain and inflammation. Here, for the first time, we determine measurable differences in the gait of mice with infectious arthritis using the DigiGait system. Statistically significant differences in paw area and paw angle were detected during peak disease in RRV-infected mice. Significant differences in temporal gait parameters were also identified during the period of peak disease in RRV-infected mice. These trends were less obvious or absent in BFV-infected mice, which typically present with milder disease signs than RRV-infected mice. The DigiGait system therefore provides an objective model of variations in gait dynamics in mice acutely infected with RRV. DigiGait is likely to have further utility for murine models that develop severe forms of infectious arthritis resulting in hindlimb dysfunction like RRV. IMPORTANCE Mouse models that accurately replicate the immunopathogenesis and clinical disease of alphavirus infection are vital to the preclinical development of therapeutic strategies that target alphavirus infection and disease. Current models rely on subjective scoring made through experienced observation of infected mice. Here, we demonstrate how the DigiGait system, and interventions on mice to use this system, can make an efficient objective assessment of acute disease progression and changes in gait in alphavirus-infected mice. Our study highlights the importance of measuring gait parameters in the assessment of models of infectious arthritis.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Virus del Río Ross / Artritis Infecciosa / Infecciones por Alphavirus / Análisis de la Marcha Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: MSphere Año: 2021 Tipo del documento: Article País de afiliación: Australia

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Virus del Río Ross / Artritis Infecciosa / Infecciones por Alphavirus / Análisis de la Marcha Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: MSphere Año: 2021 Tipo del documento: Article País de afiliación: Australia