Chimeric Protein Designed by Genome-Scale Immunoinformatics Enhances Serodiagnosis of Bovine Neosporosis
Neosporosis has become a concern since it is associated with abortion in cattle. Currently, diagnosis is determined through anamnesis, evaluation of the history, and perception of the clinical signs of the herd. There is no practical and noninvasive test adapted to a large number of samples, which r...
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Veröffentlicht in: | Journal of clinical microbiology 2020-06, Vol.58 (7) |
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Sprache: | eng |
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Zusammenfassung: | Neosporosis has become a concern since it is associated with abortion in cattle. Currently,
diagnosis is determined through anamnesis, evaluation of the history, and perception of the clinical signs of the herd. There is no practical and noninvasive test adapted to a large number of samples, which represents a gap for the use of new approaches that provide information about infections and the risks of herds. Here, we performed a search in the
genome by linear B-cell epitopes using immunoinformatic tools aiming to develop a chimeric protein with high potential to bind specifically to antibodies from infected cattle samples. An enzyme-linked immunosorbent assay with the new chimeric antigen was developed and tested with sera from natural field
-infected bovines. The cross-reactivity of the new antigen was also evaluated using sera from bovines infected by other abortive pathogens, including
,
sp.,
, and
, and enzootic bovine leucosis caused by bovine leukemia virus, as well as with samples of animals infected with
The assay using the chimeric protein showed 96.6% ± 3.4% of sensitivity in comparison to healthy animal sera. Meanwhile, in relation to false-positive results provided by cross-reactivity with others pathogens, the specificity value was 97.0% ± 2.9%. In conclusion, immunoinformatic tools provide an efficient platform to build an accurate protein to diagnose bovine neosporosis based on serum samples. |
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ISSN: | 0095-1137 1098-660X |
DOI: | 10.1128/JCM.01343-19 |