Mouse models of Japanese encephalitis virus infection: A systematic review and meta-analysis using a meta-regression approach

Author:

Bharucha TehminaORCID,Cleary BenORCID,Farmiloe AliceORCID,Sutton ElizabethORCID,Hayati HanifahORCID,Kirkwood PeggyORCID,Al Hamed LayalORCID,van Ginneken Nadja,Subramaniam Krishanthi S.ORCID,Zitzmann Nicole,Davies GerryORCID,Turtle Lance

Abstract

Background Japanese encephalitis (JE) virus (JEV) remains a leading cause of neurological infection across Asia. The high lethality of disease and absence of effective therapies mean that standardised animal models will be crucial in developing therapeutics. However, published mouse models are heterogeneous. We performed a systematic review, meta-analysis and meta-regression of published JEV mouse experiments to investigate the variation in model parameters, assess homogeneity and test the relationship of key variables against mortality. Methodology/ Principal findings A PubMed search was performed up to August 2020. 1991 publications were identified, of which 127 met inclusion criteria, with data for 5026 individual mice across 487 experimental groups. Quality assessment was performed using a modified CAMARADES criteria and demonstrated incomplete reporting with a median quality score of 10/17. The pooled estimate of mortality in mice after JEV challenge was 64.7% (95% confidence interval 60.9 to 68.3) with substantial heterogeneity between experimental groups (I^2 70.1%, df 486). Using meta-regression to identify key moderators, a refined dataset was used to model outcome dependent on five variables: mouse age, mouse strain, virus strain, virus dose (in log10PFU) and route of inoculation. The final model reduced the heterogeneity substantially (I^2 38.9, df 265), explaining 54% of the variability. Conclusion/ Significance This is the first systematic review of mouse models of JEV infection. Better adherence to CAMARADES guidelines may reduce bias and variability of reporting. In particular, sample size calculations were notably absent. We report that mouse age, mouse strain, virus strain, virus dose and route of inoculation account for much, though not all, of the variation in mortality. This dataset is available for researchers to access and use as a guideline for JEV mouse experiments.

Funder

University of Oxford and the Medical Research Council

wellcome trust

NIHR Health Protection Research Unit in emerging and zoonotic infections

Oxford Glycobiology endowment

Publisher

Public Library of Science (PLoS)

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health

Reference19 articles.

1. Japanese Encephalitis Surveillance and Immunization—Asia and Western Pacific Regions, 2016;JD Heffelfinger;MMWR Morb Mortal Wkly Rep,2017

2. A need to raise the bar—A systematic review of temporal trends in diagnostics for Japanese encephalitis virus infection, and perspectives for future research;T Bharucha;Int J Infect Dis,2020

3. Japanese encephalitis: the vectors, ecology and potential for expansion;JC Pearce;J Travel Med,2018

4. Estimates of the global burden of Japanese encephalitis and the impact of vaccination from 2000–2015;TM Quan;eLife,2020

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