4.5 Article

Parallel measurement of IFN-γ and IP-10 in QuantiFERON®-TB Gold (QFT) plasma improves the detection of Mycobacterium bovis infection in African buffaloes (Syncerus caffer)

期刊

PREVENTIVE VETERINARY MEDICINE
卷 169, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.prevetmed.2019.104700

关键词

African buffalo; Bovine tuberculosis; Interferon gamma release assay; Interferon gamma-inducible protein 10; Mycobacterium bovis; QuantiFERON (R)-TB Gold

资金

  1. Harry Crossley Foundation
  2. South African government through the South African Medical Research Council
  3. National Research Foundation South African Research Chair Initiative [86949]

向作者/读者索取更多资源

The QuantiFERON (R)-TB Gold (QFT) stimulation platform for cytokine release is a novel approach for diagnosis of bovine tuberculosis in wildlife species. Plasma interferon gamma (IFN-gamma) is routinely measured to detect immune sensitization to Mycobacterium bovis. However, the cytokine interferon gamma-inducible protein 10 (IP-10) has been proposed as an alternative, more sensitive, diagnostic biomarker. In this study, we investigated the use of the QFT system with measurement of IFN-gamma and IP-10 in parallel to identify M bovis-infected African buffaloes. The test results of either biomarker in a cohort of M. bovis-unexposed buffaloes (n = 70) led to calculation of 100% test specificity. Furthermore, in cohorts of M. bovis culture-positive (n = 51) and M. bovis-suspect (n = 22) buffaloes, the IP-10 test results were positive in a greater number of animals than the number based on the IFN-gamma test results. Most notably, when the biomarkers were measured in parallel, the tests identified all M. bovis culture-positive buffaloes, a result neither the single comparative intradermal tuberculin test (SCITT) nor Bovigam (R) IFN-gamma release assay (IGRA) achieved, individually or in parallel. These findings demonstrate the diagnostic potential of this blood-based assay to identify M. bovis-infected African buffaloes and a strategy to maximise the detection of infected animals while maintaining diagnostic specificity and simplifying test procedures.

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