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Detecting Closer to Care: Combining Phage and LAMP to Detect Tuberculosis, Bovine TB and Johne’s Disease (2024)
Journal Article
Shield, C. G., Bartlett, A. E. M., Haldar, P., & Swift, B. M. C. (in press). Detecting Closer to Care: Combining Phage and LAMP to Detect Tuberculosis, Bovine TB and Johne’s Disease. Applied Microbiology, 4(1), 341-353. https://doi.org/10.3390/applmicrobiol4010023

Mycobacterial diseases impact millions in the human and veterinary fields each year. Their diagnosis is long and laborious, often only sensitive in the late stages of disease. This has created an unmet need for new diagnostics that are effective in t... Read More about Detecting Closer to Care: Combining Phage and LAMP to Detect Tuberculosis, Bovine TB and Johne’s Disease.

Tuberculosis in badgers where the bovine tuberculosis epidemic is expanding in cattle in England (2021)
Journal Article
Swift, B. M. C., Sandoval Barron, E., Christley, R., Corbetta, D., Grau-Roma, L., Jewell, C., …Bennett, M. (2021). Tuberculosis in badgers where the bovine tuberculosis epidemic is expanding in cattle in England. Scientific Reports, https://doi.org/10.1038/s41598-021-00473-6

Bovine tuberculosis (bTB) is an important animal health and economic problem for the cattle industry and a potential zoonotic threat. Wild badgers (Meles meles) play a role on its epidemiology in some areas of high prevalence in cattle, particularly... Read More about Tuberculosis in badgers where the bovine tuberculosis epidemic is expanding in cattle in England.

Development of a Method to Detect Mycobacterium paratuberculosis in the Blood of Farmed Deer Using Actiphage® Rapid (2021)
Journal Article
Kubala, A., Perehinec, T. M., Evans, C., Pirovano, A., Swift, B. M. C., & Rees, C. E. D. (2021). Development of a Method to Detect Mycobacterium paratuberculosis in the Blood of Farmed Deer Using Actiphage® Rapid. Frontiers in Veterinary Science, 8, https://doi.org/10.3389/fvets.2021.665697

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... Read More about Development of a Method to Detect Mycobacterium paratuberculosis in the Blood of Farmed Deer Using Actiphage® Rapid.

The Application of Bacteriophage Diagnostics for Bacterial Pathogens in the Agricultural Supply Chain: From Farm-to-Fork (2020)
Journal Article
Jones, H. J., Shield, C. G., & Swift, B. M. (2020). The Application of Bacteriophage Diagnostics for Bacterial Pathogens in the Agricultural Supply Chain: From Farm-to-Fork. PHAGE Therapy, Applications, and Research, 1(4), 176-188. https://doi.org/10.1089/phage.2020.0042

Bacteriophages (phages) have great potential not only as therapeutics but as diagnostics. Indeed, they have been developed and used to diagnose and detect bacterial infections, primarily in human clinical settings. The ability to rapidly detect and c... Read More about The Application of Bacteriophage Diagnostics for Bacterial Pathogens in the Agricultural Supply Chain: From Farm-to-Fork.

A study of tuberculosis in road traffic-killed badgers on the edge of the British bovine TB epidemic area (2018)
Journal Article
Sandoval Barron, E., Swift, B. M. C., Chantrey, J., Christley, R., Gardner, R., Jewell, C., …Bennett, M. (2018). A study of tuberculosis in road traffic-killed badgers on the edge of the British bovine TB epidemic area. https://doi.org/10.1038/s41598-018-35652-5

The role of badgers in the geographic expansion of the bovine tuberculosis (bTB) epidemic in England is unknown: indeed there have been few published studies of bTB in badgers outside of the Southwest of England where the infection is now endemic in... Read More about A study of tuberculosis in road traffic-killed badgers on the edge of the British bovine TB epidemic area.

Anthropogenic environmental drivers of antimicrobial resistance in wildlife (2018)
Journal Article
Swift, B. M. C., Bennett, M., Waller, K., Dodd, C., Murray, A., Gomes, R. L., …Arnold, K. E. (2018). Anthropogenic environmental drivers of antimicrobial resistance in wildlife. Science of the Total Environment, 649, 12-20. https://doi.org/10.1016/j.scitotenv.2018.08.180

The isolation of antimicrobial resistant bacteria (ARB) from wildlife living adjacent to humans has led to the suggestion that such antimicrobial resistance (AMR) is anthropogenically driven by exposure to antimicrobials and ARB. However, ARB have al... Read More about Anthropogenic environmental drivers of antimicrobial resistance in wildlife.