A prime-boost combination of a three-protein cocktail and multiepitopic MVA as a vaccine against Babesia bigemina elicits neutralizing antibodies and a Th1 cellular immune response in mice
In the intraerythrocytic protozoan parasites of the genus Babesia both innate and adaptive immune responses are necessary to confer protection against clinical disease. In particular, the adaptive immune response involves the production of neutralizing antibodies as well as the presentation of paras...
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Veröffentlicht in: | Ticks and tick-borne diseases 2022-09, Vol.13 (5), p.101991-101991, Article 101991 |
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creator | Montenegro, V.N. Jaramillo-Ortiz, J.M. Paoletta, M.S. Gravisaco, M.J. Del Médico Zajac, M.P. Garanzini, D.P. Valenzano, M.N. Calamante, G. Wilkowsky, S.E. |
description | In the intraerythrocytic protozoan parasites of the genus Babesia both innate and adaptive immune responses are necessary to confer protection against clinical disease. In particular, the adaptive immune response involves the production of neutralizing antibodies as well as the presentation of parasite antigens to CD4+ T lymphocytes by professional antigen-presenting cells. Therefore, the development of alternative vaccines that replace the use of live attenuated strains should include relevant epitopes targeting both B and T cell responses. The aim of this study was to design new Babesia bigemina immunogens and evaluate the humoral and cellular responses in mice. To achieve this, three B. bigemina recombinant antigens called Apical Membrane Antigen 1 (AMA-1), Rhoptry Associated Protein 1 (RAP-1) and the Thrombospondin Related Anonymous Protein 1 (TRAP-1) were obtained. Besides, two recombinant modified vaccinia virus Ankara vectors coding for chimeric constructs containing bioinformatically predicted B and T cell epitopes from the same three antigens were generated. These immunogens were evaluated in prime-boost heterologous schemes. Among the combinations tested, priming with a cocktail of the three proteins followed by a booster immunization with a mix of both viruses induced the highest activation of IFN-γ+ CD4+ and CD8+ antigen-specific T cell responses. Remarkably, all vaccine schemes containing antigen cocktails also induced antibodies that were capable of neutralizing merozoite invasion of bovine erythrocytes in vitro at a level comparable to an anti B. bigemina hyperimmune bovine serum. Our results offer a new perspective for vaccines against B. bigemina combining bioinformatics predictions and prime-boost immunization regimes for future control measures against bovine babesiosis. |
doi_str_mv | 10.1016/j.ttbdis.2022.101991 |
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In particular, the adaptive immune response involves the production of neutralizing antibodies as well as the presentation of parasite antigens to CD4+ T lymphocytes by professional antigen-presenting cells. Therefore, the development of alternative vaccines that replace the use of live attenuated strains should include relevant epitopes targeting both B and T cell responses. The aim of this study was to design new Babesia bigemina immunogens and evaluate the humoral and cellular responses in mice. To achieve this, three B. bigemina recombinant antigens called Apical Membrane Antigen 1 (AMA-1), Rhoptry Associated Protein 1 (RAP-1) and the Thrombospondin Related Anonymous Protein 1 (TRAP-1) were obtained. Besides, two recombinant modified vaccinia virus Ankara vectors coding for chimeric constructs containing bioinformatically predicted B and T cell epitopes from the same three antigens were generated. These immunogens were evaluated in prime-boost heterologous schemes. Among the combinations tested, priming with a cocktail of the three proteins followed by a booster immunization with a mix of both viruses induced the highest activation of IFN-γ+ CD4+ and CD8+ antigen-specific T cell responses. Remarkably, all vaccine schemes containing antigen cocktails also induced antibodies that were capable of neutralizing merozoite invasion of bovine erythrocytes in vitro at a level comparable to an anti B. bigemina hyperimmune bovine serum. 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In particular, the adaptive immune response involves the production of neutralizing antibodies as well as the presentation of parasite antigens to CD4+ T lymphocytes by professional antigen-presenting cells. Therefore, the development of alternative vaccines that replace the use of live attenuated strains should include relevant epitopes targeting both B and T cell responses. The aim of this study was to design new Babesia bigemina immunogens and evaluate the humoral and cellular responses in mice. To achieve this, three B. bigemina recombinant antigens called Apical Membrane Antigen 1 (AMA-1), Rhoptry Associated Protein 1 (RAP-1) and the Thrombospondin Related Anonymous Protein 1 (TRAP-1) were obtained. Besides, two recombinant modified vaccinia virus Ankara vectors coding for chimeric constructs containing bioinformatically predicted B and T cell epitopes from the same three antigens were generated. These immunogens were evaluated in prime-boost heterologous schemes. Among the combinations tested, priming with a cocktail of the three proteins followed by a booster immunization with a mix of both viruses induced the highest activation of IFN-γ+ CD4+ and CD8+ antigen-specific T cell responses. Remarkably, all vaccine schemes containing antigen cocktails also induced antibodies that were capable of neutralizing merozoite invasion of bovine erythrocytes in vitro at a level comparable to an anti B. bigemina hyperimmune bovine serum. Our results offer a new perspective for vaccines against B. bigemina combining bioinformatics predictions and prime-boost immunization regimes for future control measures against bovine babesiosis.</description><subject>Babesia bigemina</subject><subject>Heterologous prime-boost immunization</subject><subject>Multi-epitope vaccine</subject><subject>Recombinant modified vaccinia virus Ankara</subject><subject>Recombinant protein</subject><issn>1877-959X</issn><issn>1877-9603</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNp9kc-O1SAUxhujiZPrvIELlm56BUoL3ZhcJ_5LxrgZjTsC9PTOubZQgU6iz-bDSa1uPRtODny_fJyvqp4zemSUdS8vx5ztgOnIKefbqO_Zo-qKKSnrvqPN43992399Wl2ndKGlGiaU5FfVrxNZIs5Q2xBSJi7MFr3JGDwJIzEk30eAeokhA_py7b5lgxMxfiDzOmWEBXNY0JGPX07EpKJ4MM6hB2LOBn1BvjYWEhpi8QxzYROY0GFOxMOao5nwJ_pzAWa0YUBIf9iG3N0z4mCa1slEgvO8FmSEtASfgBQrMzp4Vj0ZzZTg-u95qD6_fXN3876-_fTuw83ptnacqVy7jipnoen7kStwqrUDl1zZFmSvjFCubZixVDDBm2bspWiZ5G1vRDdKKUbRHKoXO7fs4fsKKesZ02bOeAhr0rxTrRCSFv2hEvtTF0NKEUa9rdfEH5pRveWlL3rPS2956T2vInu1y6B84wEh6uQQvIMBI7ish4D_B_wGSHmjMg</recordid><startdate>202209</startdate><enddate>202209</enddate><creator>Montenegro, V.N.</creator><creator>Jaramillo-Ortiz, J.M.</creator><creator>Paoletta, M.S.</creator><creator>Gravisaco, M.J.</creator><creator>Del Médico Zajac, M.P.</creator><creator>Garanzini, D.P.</creator><creator>Valenzano, M.N.</creator><creator>Calamante, G.</creator><creator>Wilkowsky, S.E.</creator><general>Elsevier GmbH</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>202209</creationdate><title>A prime-boost combination of a three-protein cocktail and multiepitopic MVA as a vaccine against Babesia bigemina elicits neutralizing antibodies and a Th1 cellular immune response in mice</title><author>Montenegro, V.N. ; Jaramillo-Ortiz, J.M. ; Paoletta, M.S. ; Gravisaco, M.J. ; Del Médico Zajac, M.P. ; Garanzini, D.P. ; Valenzano, M.N. ; Calamante, G. ; Wilkowsky, S.E.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c218t-c608cbe399f28ec85bd2728b5e798a48c531ab0414233f974517259a46f774f43</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>Babesia bigemina</topic><topic>Heterologous prime-boost immunization</topic><topic>Multi-epitope vaccine</topic><topic>Recombinant modified vaccinia virus Ankara</topic><topic>Recombinant protein</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Montenegro, V.N.</creatorcontrib><creatorcontrib>Jaramillo-Ortiz, J.M.</creatorcontrib><creatorcontrib>Paoletta, M.S.</creatorcontrib><creatorcontrib>Gravisaco, M.J.</creatorcontrib><creatorcontrib>Del Médico Zajac, M.P.</creatorcontrib><creatorcontrib>Garanzini, D.P.</creatorcontrib><creatorcontrib>Valenzano, M.N.</creatorcontrib><creatorcontrib>Calamante, G.</creatorcontrib><creatorcontrib>Wilkowsky, S.E.</creatorcontrib><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><jtitle>Ticks and tick-borne diseases</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Montenegro, V.N.</au><au>Jaramillo-Ortiz, J.M.</au><au>Paoletta, M.S.</au><au>Gravisaco, M.J.</au><au>Del Médico Zajac, M.P.</au><au>Garanzini, D.P.</au><au>Valenzano, M.N.</au><au>Calamante, G.</au><au>Wilkowsky, S.E.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>A prime-boost combination of a three-protein cocktail and multiepitopic MVA as a vaccine against Babesia bigemina elicits neutralizing antibodies and a Th1 cellular immune response in mice</atitle><jtitle>Ticks and tick-borne diseases</jtitle><date>2022-09</date><risdate>2022</risdate><volume>13</volume><issue>5</issue><spage>101991</spage><epage>101991</epage><pages>101991-101991</pages><artnum>101991</artnum><issn>1877-959X</issn><eissn>1877-9603</eissn><abstract>In the intraerythrocytic protozoan parasites of the genus Babesia both innate and adaptive immune responses are necessary to confer protection against clinical disease. In particular, the adaptive immune response involves the production of neutralizing antibodies as well as the presentation of parasite antigens to CD4+ T lymphocytes by professional antigen-presenting cells. Therefore, the development of alternative vaccines that replace the use of live attenuated strains should include relevant epitopes targeting both B and T cell responses. The aim of this study was to design new Babesia bigemina immunogens and evaluate the humoral and cellular responses in mice. To achieve this, three B. bigemina recombinant antigens called Apical Membrane Antigen 1 (AMA-1), Rhoptry Associated Protein 1 (RAP-1) and the Thrombospondin Related Anonymous Protein 1 (TRAP-1) were obtained. Besides, two recombinant modified vaccinia virus Ankara vectors coding for chimeric constructs containing bioinformatically predicted B and T cell epitopes from the same three antigens were generated. These immunogens were evaluated in prime-boost heterologous schemes. Among the combinations tested, priming with a cocktail of the three proteins followed by a booster immunization with a mix of both viruses induced the highest activation of IFN-γ+ CD4+ and CD8+ antigen-specific T cell responses. Remarkably, all vaccine schemes containing antigen cocktails also induced antibodies that were capable of neutralizing merozoite invasion of bovine erythrocytes in vitro at a level comparable to an anti B. bigemina hyperimmune bovine serum. Our results offer a new perspective for vaccines against B. bigemina combining bioinformatics predictions and prime-boost immunization regimes for future control measures against bovine babesiosis.</abstract><pub>Elsevier GmbH</pub><doi>10.1016/j.ttbdis.2022.101991</doi><tpages>1</tpages></addata></record> |
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subjects | Babesia bigemina Heterologous prime-boost immunization Multi-epitope vaccine Recombinant modified vaccinia virus Ankara Recombinant protein |
title | A prime-boost combination of a three-protein cocktail and multiepitopic MVA as a vaccine against Babesia bigemina elicits neutralizing antibodies and a Th1 cellular immune response in mice |
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