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Development of a Method to Detect Mycobacterium paratuberculosis in the Blood of Farmed Deer Using Actiphage® Rapid
Anton Kubala1,2, Tania M Perehinec1, Catherine Evans1
1School of Biosciences, University of Nottingham, Loughborough, United Kingdom.
Abstract:
Mycobacterium avium subsp paratuberculosis (MAP) is the causative agent of Johne's disease, which is an economically and clinically relevant pathogen for commercial deer production. The purpose of this study was to develop a method that could be used to rapidly detect MAP infection in deer using the Actiphage Rapid blood test. This test has previously been used to detect MAP in cattle blood following the purification of buffy coat using Ficoll gradients, however this method is quite laborious and costly. The purpose of this study was to develop a simpler method of blood preparation that was also compatible with deer blood and the Actiphage test. Initially differential lysis of RBCs using Ammonium Chloride-Potassium (ACK) blood lysis buffer was compared with the Ficoll gradient centrifugation method using cattle blood samples for compatibility with the Actiphage reagents, and it was found that the simpler ACK method did not have an impact on the Actiphage test reagents, producing an equivalent sensitivity for detection of low levels of MAP. When the two methods were compared using clinical blood samples from farmed deer, the ACK lysis method resulted in a cleaner sample. When a blinded test of 132 animals from 4 different production groups was carried out, the majority of the positive test results were found to be from animals in just one group, with a small number identified in a second group. The test results were found to be reproducible when a small set of positive animals were tested again 1 month after their initial testing. Finally a set of negative animals which had been previously screened using an ELISA test, all animals gave a negative Actiphage result. This study shows that this improved sample preparation method and Actiphage blood testing can be used to test blood samples from deer, and the full diagnostic potential of the method can now be evaluated.
Insights
A new, simpler blood preparation method using Ammonium Chloride-Potassium (ACK) lysis is effective for rapidly detecting Mycobacterium avium subsp paratuberculosis (MAP) in deer blood with the Actiphage test. This advancement offers a more accessible diagnostic tool for Johne's disease in farmed deer.
Area of Science:
- Veterinary Microbiology
- Diagnostic Immunology
- Animal Health
Background:
- Mycobacterium avium subsp paratuberculosis (MAP) causes Johne's disease, a significant concern in commercial deer farming.
- Current MAP detection in cattle blood involves laborious and costly Ficoll gradient purification.
- A simplified, deer-compatible blood preparation method is needed for rapid MAP diagnostics.
Purpose of the Study:
- To develop a simpler blood preparation technique for deer compatible with the Actiphage Rapid blood test.
- To evaluate the efficacy of the Ammonium Chloride-Potassium (ACK) lysis buffer method compared to Ficoll gradients for MAP detection in deer.
Main Methods:
- Compared ACK lysis buffer with Ficoll gradient centrifugation using cattle blood for Actiphage reagent compatibility.
- Assessed ACK lysis method on clinical farmed deer blood samples for sample quality.
- Conducted a blinded test on 132 deer from four production groups using the optimized ACK lysis and Actiphage method.
Main Results:
- ACK lysis demonstrated equivalent sensitivity to Ficoll gradients for low-level MAP detection and yielded cleaner deer blood samples.
- A blinded test identified positive MAP cases predominantly in one production group, with fewer in a second.
- Test results were reproducible, and negative animals screened by ELISA also tested negative with Actiphage.
Conclusions:
- The improved ACK lysis method is suitable for deer blood preparation for Actiphage testing.
- This optimized method facilitates rapid and accessible diagnostics for MAP in farmed deer.
- Further evaluation of the full diagnostic potential of this method is warranted.
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