| Literature DB >> 26956030 |
Esther Blanco1, Beatriz Guerra2, Beatriz G de la Torre3, Sira Defaus3, Aldo Dekker4, David Andreu5, Francisco Sobrino6.
Abstract
Foot-and-mouth disease virus (FMDV) causes a highly contagious disease of cloven-hoofed animals. We have reported (Cubillos et al., 2008) that a synthetic dendrimeric peptide consisting of four copies of a B-cell epitope [VP1(136-154)] linked through thioether bonds to a T-cell epitope [3A(21-35)] of FMDV [B4T(thi)] elicits potent B- and T-cell specific responses and confers solid protection in pigs to type C FMDV challenge. Herein we show that downsized versions of this peptide bearing two copies of a B-cell epitope from a type O isolate and using thioether [B2T(thi)] or maleimide [B2T(mal)] conjugation chemistries for their synthesis elicited in swine similar or higher B and T-cell specific responses than tetravalent B4T(thi). Moreover, while partial protection was observed in animals immunized with B4T(thi) (60%) and B2T(thi) (80%), B2T(mal) conferred full (100%) protection against FMDV challenge, associated to high levels of circulating IgG2 and mucosal IgGA, and entirely prevented virus shedding. Interestingly, B2T(mal) is also the most advantageous option in terms of synthetic practicality. Taken together, the results reported here point out to B2T(mal) as a highly valuable, cost-effective FMDV candidate vaccine.Entities:
Keywords: Foot-and-mouth disease virus; Peptide dendrimers; Protection; Vaccines
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Year: 2016 PMID: 26956030 DOI: 10.1016/j.antiviral.2016.03.005
Source DB: PubMed Journal: Antiviral Res ISSN: 0166-3542 Impact factor: 5.970