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A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats

Cytauxzoonosis is caused by Cytauxzoon felis (C. felis), a tick-borne parasite that causes severe disease in domestic cats in the United States. Currently, there is no vaccine to prevent this fatal disease, as traditional vaccine development strategies have been limited by the inability to culture t...

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Autores principales: Weerarathne, Pabasara, Maker, Rebekah, Huang, Chaoqun, Taylor, Brianne, Cowan, Shannon R., Hyatt, Julia, Tamil Selvan, Miruthula, Shatnawi, Shoroq, Thomas, Jennifer E., Meinkoth, James H., Scimeca, Ruth, Birkenheuer, Adam, Liu, Lin, Reichard, Mason V., Miller, Craig A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058880/
https://www.ncbi.nlm.nih.gov/pubmed/36992157
http://dx.doi.org/10.3390/vaccines11030573
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author Weerarathne, Pabasara
Maker, Rebekah
Huang, Chaoqun
Taylor, Brianne
Cowan, Shannon R.
Hyatt, Julia
Tamil Selvan, Miruthula
Shatnawi, Shoroq
Thomas, Jennifer E.
Meinkoth, James H.
Scimeca, Ruth
Birkenheuer, Adam
Liu, Lin
Reichard, Mason V.
Miller, Craig A.
author_facet Weerarathne, Pabasara
Maker, Rebekah
Huang, Chaoqun
Taylor, Brianne
Cowan, Shannon R.
Hyatt, Julia
Tamil Selvan, Miruthula
Shatnawi, Shoroq
Thomas, Jennifer E.
Meinkoth, James H.
Scimeca, Ruth
Birkenheuer, Adam
Liu, Lin
Reichard, Mason V.
Miller, Craig A.
author_sort Weerarathne, Pabasara
collection PubMed
description Cytauxzoonosis is caused by Cytauxzoon felis (C. felis), a tick-borne parasite that causes severe disease in domestic cats in the United States. Currently, there is no vaccine to prevent this fatal disease, as traditional vaccine development strategies have been limited by the inability to culture this parasite in vitro. Here, we used a replication-defective human adenoviral vector (AdHu5) to deliver C. felis-specific immunogenic antigens and induce a cell-mediated and humoral immune response in cats. Cats (n = 6 per group) received either the vaccine or placebo in two doses, 4 weeks apart, followed by experimental challenge with C. felis at 5 weeks post-second dose. While the vaccine induced significant cell-mediated and humoral immune responses in immunized cats, it did not ultimately prevent infection with C. felis. However, immunization significantly delayed the onset of clinical signs and reduced febrility during C. felis infection. This AdHu5 vaccine platform shows promising results as a vaccination strategy against cytauxzoonosis.
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spelling pubmed-100588802023-03-30 A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats Weerarathne, Pabasara Maker, Rebekah Huang, Chaoqun Taylor, Brianne Cowan, Shannon R. Hyatt, Julia Tamil Selvan, Miruthula Shatnawi, Shoroq Thomas, Jennifer E. Meinkoth, James H. Scimeca, Ruth Birkenheuer, Adam Liu, Lin Reichard, Mason V. Miller, Craig A. Vaccines (Basel) Article Cytauxzoonosis is caused by Cytauxzoon felis (C. felis), a tick-borne parasite that causes severe disease in domestic cats in the United States. Currently, there is no vaccine to prevent this fatal disease, as traditional vaccine development strategies have been limited by the inability to culture this parasite in vitro. Here, we used a replication-defective human adenoviral vector (AdHu5) to deliver C. felis-specific immunogenic antigens and induce a cell-mediated and humoral immune response in cats. Cats (n = 6 per group) received either the vaccine or placebo in two doses, 4 weeks apart, followed by experimental challenge with C. felis at 5 weeks post-second dose. While the vaccine induced significant cell-mediated and humoral immune responses in immunized cats, it did not ultimately prevent infection with C. felis. However, immunization significantly delayed the onset of clinical signs and reduced febrility during C. felis infection. This AdHu5 vaccine platform shows promising results as a vaccination strategy against cytauxzoonosis. MDPI 2023-03-02 /pmc/articles/PMC10058880/ /pubmed/36992157 http://dx.doi.org/10.3390/vaccines11030573 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Weerarathne, Pabasara
Maker, Rebekah
Huang, Chaoqun
Taylor, Brianne
Cowan, Shannon R.
Hyatt, Julia
Tamil Selvan, Miruthula
Shatnawi, Shoroq
Thomas, Jennifer E.
Meinkoth, James H.
Scimeca, Ruth
Birkenheuer, Adam
Liu, Lin
Reichard, Mason V.
Miller, Craig A.
A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title_full A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title_fullStr A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title_full_unstemmed A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title_short A Novel Vaccine Strategy to Prevent Cytauxzoonosis in Domestic Cats
title_sort novel vaccine strategy to prevent cytauxzoonosis in domestic cats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058880/
https://www.ncbi.nlm.nih.gov/pubmed/36992157
http://dx.doi.org/10.3390/vaccines11030573
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