1. Design and production of antibodies for the detection of Streptococcus uberis
- Author
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Toonika Rinken, Kairi Kivirand, D. Peedel, M. Utt, K. Mihklepp, and M. Nikopensius
- Subjects
Protein Conformation, alpha-Helical ,0301 basic medicine ,Mastitis in dairy cattle ,Bioengineering ,Biosensing Techniques ,01 natural sciences ,Applied Microbiology and Biotechnology ,Biochemistry ,Microbiology ,03 medical and health sciences ,Bacterial Proteins ,Affinity chromatography ,Antibody Specificity ,Streptococcal Infections ,medicine ,Animals ,Amino Acid Sequence ,Adhesins, Bacterial ,Mastitis, Bovine ,Pathogen ,Streptococcus uberis ,Antiserum ,Antigens, Bacterial ,biology ,010401 analytical chemistry ,Streptococcus ,biology.organism_classification ,medicine.disease ,Antibodies, Bacterial ,0104 chemical sciences ,Mastitis ,Milk ,030104 developmental biology ,biology.protein ,Cattle ,Female ,Rabbits ,Antibody ,Peptides ,Bacteria ,Biotechnology - Abstract
Streptococcus uberis (S. uberis ) is an important environmental pathogen causing mastitis in dairy cattle. Mastitis or mammary gland infection is the most common disease in milking cows and cause significant economic burden to farmers due to the reduction of the amount of milk and its quality. The development of rapid analytical methods for the determination of mastitis-causing pathogens in milk is of utmost importance for the early identification of the causes of mastitis and the beginning of timely treatment of cows. Combining in silico bioinformatic analysis and solid phase peptide synthesis using Fmoc chemistry, we have made two different peptides to mimic the adhesion protein of S. uberis, which is promoting the attachment of bacteria to epithelial cells. After purification with RP-HPLC, the peptides were conjugated with a larger carrier protein (KLH) and used for immunization of rabbits to produce specific antibodies. The separation of anti- S. uberis antibodies from rabbit blood antisera was carried out with affinity chromatography, using the synthetic peptides as affinity ligands. The purified antibodies showed high affinity and specificity towards S. uberis and were used for rapid bio-recognition and identification of S. uberis with an immunobiosensing system.
- Published
- 2017
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