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Biochemistry, Biophysics, and Structural Biology Commons

Open Access. Powered by Scholars. Published by Universities.®

Cell and Developmental Biology

Series

2018

Bovine respiratory disease

Articles 1 - 2 of 2

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Efficacy Of Oral Administration Of Sodium Iodide To Prevent Bovine Respiratory Disease Complex, B. M. Shoemake, B. L. Vander Ley, B. W. Newcomer, M. C. Heller Jan 2018

Efficacy Of Oral Administration Of Sodium Iodide To Prevent Bovine Respiratory Disease Complex, B. M. Shoemake, B. L. Vander Ley, B. W. Newcomer, M. C. Heller

School of Veterinary and Biomedical Sciences: Faculty Publications

Background: The prevention of bovine respiratory disease complex (BRD) in beef cattle is important to maintaining health and productivity of calves in feeding operations.

Objective: Determine whether BRD bacterial and viral pathogens are susceptible to the lactoperoxidase/hydrogen peroxide/ iodide (LPO/H2O2/I-) system in vitro and to determine whether the oral administration of sodium iodide (NaI) could achieve sufficient concentrations of iodine (I) in the respiratory secretions of weaned beef calves to inactivate these pathogens in vivo.

Animals: Sixteen weaned, apparently healthy, commercial beef calves from the University of Missouri, College of Veterinary Medicine teaching herd. …


Development Of A Multiplex Real-Time Pcr Assay Using Two Thermocycling Platforms For Detection Of Major Bacterial Pathogens Associated With Bovine Respiratory Disease Complex From Clinical Samples, John Dustin Loy, Laura Leger, Aspen M. Workman, Michael L. Clawson, Ece Bulut, Bing Wang Jan 2018

Development Of A Multiplex Real-Time Pcr Assay Using Two Thermocycling Platforms For Detection Of Major Bacterial Pathogens Associated With Bovine Respiratory Disease Complex From Clinical Samples, John Dustin Loy, Laura Leger, Aspen M. Workman, Michael L. Clawson, Ece Bulut, Bing Wang

School of Veterinary and Biomedical Sciences: Faculty Publications

Bovine respiratory disease complex (BRDC) is one of the most significant diseases of cattle. Bacterial pathogens involved in BRDC include Mannheimia haemolytica, Mycoplasma bovis, Histophilus somni, and Pasteurella multocida. We developed and evaluated a multiplexed real-time hydrolysis probe (rtPCR) assay using block-based Peltier and rotary-based thermocycling on lung tissue, nasal swabs, and deep nasopharyngeal swabs. The rtPCR results were compared to culture or a gel-based M. bovis PCR using statistical analysis to determine optimum quantification cycle (Cq) cutoffs to maximize agreement. The limits of detection were 1.2–12 CFU/reaction for each pathogen. M. haemolytica was the most prevalent organism detected …