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Detection of cathelicidin-1 in the milk as an early indicator of mastitis in ewes

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Auteur
Katsafadou A.I., Tsangaris G.T., Vasileiou N.G.C., Ioannidi K.S., Anagnostopoulos A.K., Billinis C., Fragkou I.A., Papadopoulos E., Mavrogianni V.S., Michael C.K., Filippa Addis M., Fthenakis G.C.
Date
2019
Language
en
DOI
10.3390/pathogens8040270
Sujet
biological marker
cathelicidin
animal experiment
animal model
animal tissue
Article
bacterial strain
bacterium isolation
biopsy
clinical examination
comparative study
controlled study
diagnostic accuracy
early diagnosis
ewe
female
gel electrophoresis
histology
Mannheimia haemolytica
mastitis
matrix assisted laser desorption ionization time of flight mass spectrometry
nonhuman
peptide mass fingerprinting
predictive value
protein analysis
protein content
protein expression
proteomics
sensitivity and specificity
sheep milk
MDPI AG
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Résumé
The objective of the study was the investigation of the behaviour of cathelicidin-1 in the milk after experimental infection with two prominent bacterial pathogens (experiment 1: Mannheimia haemolytica, experiment 2: M. haemolytica and Staphylococcus chromogenes) as a potential early indicator for diagnosis of mastitis in sheep. In two experiments, after bacterial inoculation into the udder of ewes, bacteriological and cytological examinations of milk samples as well as proteomics examinations [two-dimensional gel electrophoresis analysis (2-DE) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometer (MALDI-TOF MS) analysis] were performed sequentially. Cathelicidin-1 was detected and spot densities obtained from PDQuest v.8.0 were recorded. Associations were calculated between cell content and spot densities as well as between presence of mastitis in a mammary gland at a given time-point and detection of cathelicidin-1 in the respective milk sample. All inoculated mammary glands developed mastitis, confirmed by the consistent bacterial isolation from mammary secretion and increased leucocyte content therein. Spot density of cathelicidin-1 in samples from inoculated glands increased 3 h post-inoculation; spot density of cathelicidin-1 in samples from inoculated glands was higher than in samples from uninoculated controls. There was clear evidence of correlation between cell content and cathelicidin-1 spot densities in milk samples. There was significant association between presence of mastitis in the mammary gland and detection of cathelicidin-1 in the respective milk sample; overall accuracy was 0.818—this was significantly greater during the first 24 h post-challenge (0.903) than after the first day (0.704). In conclusion, detection of cathelicidin-1 in milk was significantly associated with presence of mastitis in ewes. The associations were stronger during the first 24 h post-infection than after the first day. Cathelicidin-1 has the advantage that it can be a non-specific biomarker, as simply a “positive” / “negative” assessment would be sufficient. © 2019 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/11615/74602
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