AI Article Synopsis

  • The study addresses the limitations of existing diagnostic tests for goat diseases like brucellosis and paratuberculosis, which usually can only test for one disease at a time, increasing costs and reducing efficiency.
  • Researchers developed a multiplex assay that can detect antibodies against three different diseases simultaneously, using specific recombinant proteins and antigens for the test.
  • The assay showed high sensitivity (84%) and specificity (95%), proving its effectiveness for disease detection in goats and providing a more efficient option for veterinary health management.

Article Abstract

Background And Aim: Brucellosis, paratuberculosis (PTb), and infections caused by small ruminant lentivirus (SRLV), formerly known as caprine arthritis encephalitis virus (CAEV), adversely affect goat production systems. Nonetheless, commonly used diagnostic tests can only determine one analyte at a time, increasing disease surveillance costs, and limiting their routine use. This study aimed to design and validate a multiplex assay for antibody detection against these three diseases simultaneously.

Materials And Methods: Two recombinant proteins from the SRLV (p16 and gp38), the native hapten of , and the paratuberculosis-protoplasmic antigen 3 from subsp. paratuberculosis (MAP) were used to devise and assess a multiplex assay. Conditions for the Luminex multiplex test were established and validated by sensitivity, specificity, repeatability, and reproducibility parameters. Cut-off points for each antigen were also established.

Results: The 3-plex assay had high sensitivity (84%) and specificity (95%). The maximum coefficients of variation were 23.8% and 20.5% for negative and positive control samples, respectively. The p16 and gp38 SRLV antigens are 97% and 95%, similar to the CAEV sequence found in GenBank, respectively.

Conclusion: The multiplex test can be effectively used for the simultaneous detection of antibodies against SRLV, MAP and in goats.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10206977PMC
http://dx.doi.org/10.14202/vetworld.2023.704-710DOI Listing

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