A Recombinant Chimera Vaccine Composed of LTB and IMycoplasma hyopneumoniae/I Antigens P97R1, mhp390 and P46 Elicits Cellular Immunologic Response in Mice

Mycoplasma hyopneumoniae is the etiological agent of porcine enzootic pneumonia (EP), leading to a mild and chronic pneumonia in swine. Relative control has been attained through active vaccination programs, but porcine enzootic pneumonia remains a significant economic challenge in the swine industr...

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Veröffentlicht in:Vaccines (Basel) 2023-07, Vol.11 (8)
Hauptverfasser: Liu, Wei, Jiang, Peizhao, Song, Tao, Yang, Keli, Yuan, Fangyan, Gao, Ting, Liu, Zewen, Li, Chang, Guo, Rui, Xiao, Shaobo, Tian, Yongxiang, Zhou, Danna
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Sprache:eng
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Zusammenfassung:Mycoplasma hyopneumoniae is the etiological agent of porcine enzootic pneumonia (EP), leading to a mild and chronic pneumonia in swine. Relative control has been attained through active vaccination programs, but porcine enzootic pneumonia remains a significant economic challenge in the swine industry. Cellular immunity plays a key role in the prevention and control of porcine enzootic pneumonia. Therefore, the development of a more efficient vaccine that confers a strong immunity against M. hyopneumoniae is necessary. In this study, a multi-antigen chimera (L9m6) was constructed by combining the heat-labile enterotoxin B subunit (LTB) with three antigens of M. hyopneumoniae (P97R1, mhp390, and P46), and its immunogenic and antigenic properties were assessed in a murine model. In addition, we compared the effect of individual administration and multiple-fusion of these antigens. The chimeric multi-fusion vaccine induced significant cellular immune responses and high production of IgG and IgM antibodies against M. hyopneumoniae. Collectively, our data suggested that rL9m6 chimera exhibits potential as a viable vaccine candidate for the prevention and control of porcine enzootic pneumonia.
ISSN:2076-393X
2076-393X
DOI:10.3390/vaccines11081291