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Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle
East Coast fever (ECF), caused by Theileria parva, is the most important tick-borne disease of cattle in sub-Saharan Africa. Practical disadvantages associated with the currently used live-parasite vaccine could be overcome by subunit vaccines. An 80-aa polypeptide derived from the C-terminal portio...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
AAI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7851744/ https://www.ncbi.nlm.nih.gov/pubmed/33419770 http://dx.doi.org/10.4049/jimmunol.2000442 |
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author | Lacasta, Anna Mody, Karishma T. De Goeyse, Ine Yu, Chengzhong Zhang, Jun Nyagwange, James Mwalimu, Stephen Awino, Elias Saya, Rosemary Njoroge, Thomas Muriuki, Robert Ndiwa, Nicholas Poole, Elisabeth Jane Zhang, Bing Cavallaro, Antonino Mahony, Timothy J. Steinaa, Lucilla Mitter, Neena Nene, Vishvanath |
author_facet | Lacasta, Anna Mody, Karishma T. De Goeyse, Ine Yu, Chengzhong Zhang, Jun Nyagwange, James Mwalimu, Stephen Awino, Elias Saya, Rosemary Njoroge, Thomas Muriuki, Robert Ndiwa, Nicholas Poole, Elisabeth Jane Zhang, Bing Cavallaro, Antonino Mahony, Timothy J. Steinaa, Lucilla Mitter, Neena Nene, Vishvanath |
author_sort | Lacasta, Anna |
collection | PubMed |
description | East Coast fever (ECF), caused by Theileria parva, is the most important tick-borne disease of cattle in sub-Saharan Africa. Practical disadvantages associated with the currently used live-parasite vaccine could be overcome by subunit vaccines. An 80-aa polypeptide derived from the C-terminal portion of p67, a sporozoite surface Ag and target of neutralizing Abs, was the focus of the efforts on subunit vaccines against ECF and subjected to several vaccine trials with very promising results. However, the vaccination regimen was far from optimized, involving three inoculations of 450 μg of soluble p67C (s-p67C) Ag formulated in the Seppic adjuvant Montanide ISA 206 VG. Hence, an improved formulation of this polypeptide Ag is needed. In this study, we report on two nanotechnologies that enhance the bovine immune responses to p67C. Individually, HBcAg-p67C (chimeric hepatitis B core Ag virus-like particles displaying p67C) and silica vesicle (SV)–p67C (s-p67C adsorbed to SV-140-C(18), octadecyl-modified SVs) adjuvanted with ISA 206 VG primed strong Ab and T cell responses to p67C in cattle, respectively. Coimmunization of cattle (Bos taurus) with HBcAg-p67C and SV-p67C resulted in stimulation of both high Ab titers and CD4 T cell response to p67C, leading to the highest subunit vaccine efficacy we have achieved to date with the p67C immunogen. These results offer the much-needed research depth on the innovative platforms for developing effective novel protein-based bovine vaccines to further the advancement. |
format | Online Article Text |
id | pubmed-7851744 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | AAI |
record_format | MEDLINE/PubMed |
spelling | pubmed-78517442021-02-04 Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle Lacasta, Anna Mody, Karishma T. De Goeyse, Ine Yu, Chengzhong Zhang, Jun Nyagwange, James Mwalimu, Stephen Awino, Elias Saya, Rosemary Njoroge, Thomas Muriuki, Robert Ndiwa, Nicholas Poole, Elisabeth Jane Zhang, Bing Cavallaro, Antonino Mahony, Timothy J. Steinaa, Lucilla Mitter, Neena Nene, Vishvanath J Immunol Immunotherapy and Vaccines East Coast fever (ECF), caused by Theileria parva, is the most important tick-borne disease of cattle in sub-Saharan Africa. Practical disadvantages associated with the currently used live-parasite vaccine could be overcome by subunit vaccines. An 80-aa polypeptide derived from the C-terminal portion of p67, a sporozoite surface Ag and target of neutralizing Abs, was the focus of the efforts on subunit vaccines against ECF and subjected to several vaccine trials with very promising results. However, the vaccination regimen was far from optimized, involving three inoculations of 450 μg of soluble p67C (s-p67C) Ag formulated in the Seppic adjuvant Montanide ISA 206 VG. Hence, an improved formulation of this polypeptide Ag is needed. In this study, we report on two nanotechnologies that enhance the bovine immune responses to p67C. Individually, HBcAg-p67C (chimeric hepatitis B core Ag virus-like particles displaying p67C) and silica vesicle (SV)–p67C (s-p67C adsorbed to SV-140-C(18), octadecyl-modified SVs) adjuvanted with ISA 206 VG primed strong Ab and T cell responses to p67C in cattle, respectively. Coimmunization of cattle (Bos taurus) with HBcAg-p67C and SV-p67C resulted in stimulation of both high Ab titers and CD4 T cell response to p67C, leading to the highest subunit vaccine efficacy we have achieved to date with the p67C immunogen. These results offer the much-needed research depth on the innovative platforms for developing effective novel protein-based bovine vaccines to further the advancement. AAI 2021-02-15 2021-01-08 /pmc/articles/PMC7851744/ /pubmed/33419770 http://dx.doi.org/10.4049/jimmunol.2000442 Text en Copyright © 2021 The Authors https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the CC BY 4.0 Unported license. |
spellingShingle | Immunotherapy and Vaccines Lacasta, Anna Mody, Karishma T. De Goeyse, Ine Yu, Chengzhong Zhang, Jun Nyagwange, James Mwalimu, Stephen Awino, Elias Saya, Rosemary Njoroge, Thomas Muriuki, Robert Ndiwa, Nicholas Poole, Elisabeth Jane Zhang, Bing Cavallaro, Antonino Mahony, Timothy J. Steinaa, Lucilla Mitter, Neena Nene, Vishvanath Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title | Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title_full | Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title_fullStr | Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title_full_unstemmed | Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title_short | Synergistic Effect of Two Nanotechnologies Enhances the Protective Capacity of the Theileria parva Sporozoite p67C Antigen in Cattle |
title_sort | synergistic effect of two nanotechnologies enhances the protective capacity of the theileria parva sporozoite p67c antigen in cattle |
topic | Immunotherapy and Vaccines |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7851744/ https://www.ncbi.nlm.nih.gov/pubmed/33419770 http://dx.doi.org/10.4049/jimmunol.2000442 |
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