Cargando…

Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines

There is increasing interest to replace animal-based potency assays used routinely to test vaccines, since they are highly variable, are costly, and present ethical concerns. The development of relevant in vitro assays is part of the solution. Using pertactin (PRN) antigen as an example in DTaP-IPV...

Descripción completa

Detalles Bibliográficos
Autores principales: Szeto, Jason, Beharry, Aruun, Chen, Tricia, Zholumbetov, Eric, Daigneault, Emilie, Ming, Marin, Lounsbury, Iain, Eng, Nelson, Thangavadivel, Nemika, Jin, Robbie, Denis-Jacquot, Aurélie, Azad, Bahram Behnam, Li, Meili, Keizner, Diana, Liu, Marcus, Lee, Sophia S. F., He, Kai, Gajewska, Beata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965796/
https://www.ncbi.nlm.nih.gov/pubmed/36851153
http://dx.doi.org/10.3390/vaccines11020275
_version_ 1784896854800990208
author Szeto, Jason
Beharry, Aruun
Chen, Tricia
Zholumbetov, Eric
Daigneault, Emilie
Ming, Marin
Lounsbury, Iain
Eng, Nelson
Thangavadivel, Nemika
Jin, Robbie
Denis-Jacquot, Aurélie
Azad, Bahram Behnam
Li, Meili
Keizner, Diana
Liu, Marcus
Lee, Sophia S. F.
He, Kai
Gajewska, Beata
author_facet Szeto, Jason
Beharry, Aruun
Chen, Tricia
Zholumbetov, Eric
Daigneault, Emilie
Ming, Marin
Lounsbury, Iain
Eng, Nelson
Thangavadivel, Nemika
Jin, Robbie
Denis-Jacquot, Aurélie
Azad, Bahram Behnam
Li, Meili
Keizner, Diana
Liu, Marcus
Lee, Sophia S. F.
He, Kai
Gajewska, Beata
author_sort Szeto, Jason
collection PubMed
description There is increasing interest to replace animal-based potency assays used routinely to test vaccines, since they are highly variable, are costly, and present ethical concerns. The development of relevant in vitro assays is part of the solution. Using pertactin (PRN) antigen as an example in DTaP-IPV (diphtheria, tetanus, acellular pertussis, and inactivated poliovirus) vaccines, a PRN antigenicity ELISA was developed using two monoclonal antibodies with a high affinity to unique PRN epitopes, relevance to human immune responses, and evidence of functionality. The ELISA measured consistent PRN antigenicity between the vaccine lots and was validated to demonstrate its accuracy, precision, linearity, and specificity. Notably, the PRN antigenicity ELISA was more sensitive than the mouse-based potency test and could more effectively differentiate between degraded and intact vaccine lots compared to the in vivo test. From these studies, the PRN antigenicity ELISA is proposed as an in vitro replacement for the in vivo potency test for PRN in DTaP-IPV-based formulations. Important considerations in this study included comprehensive antibody characterization, testing of multiple vaccine lots, method validation, and comparison to animal-based potency. Together, these factors form part of an overall strategy that ensures reliable and relevant in vitro assays are developed to replace animal tests.
format Online
Article
Text
id pubmed-9965796
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99657962023-02-26 Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines Szeto, Jason Beharry, Aruun Chen, Tricia Zholumbetov, Eric Daigneault, Emilie Ming, Marin Lounsbury, Iain Eng, Nelson Thangavadivel, Nemika Jin, Robbie Denis-Jacquot, Aurélie Azad, Bahram Behnam Li, Meili Keizner, Diana Liu, Marcus Lee, Sophia S. F. He, Kai Gajewska, Beata Vaccines (Basel) Article There is increasing interest to replace animal-based potency assays used routinely to test vaccines, since they are highly variable, are costly, and present ethical concerns. The development of relevant in vitro assays is part of the solution. Using pertactin (PRN) antigen as an example in DTaP-IPV (diphtheria, tetanus, acellular pertussis, and inactivated poliovirus) vaccines, a PRN antigenicity ELISA was developed using two monoclonal antibodies with a high affinity to unique PRN epitopes, relevance to human immune responses, and evidence of functionality. The ELISA measured consistent PRN antigenicity between the vaccine lots and was validated to demonstrate its accuracy, precision, linearity, and specificity. Notably, the PRN antigenicity ELISA was more sensitive than the mouse-based potency test and could more effectively differentiate between degraded and intact vaccine lots compared to the in vivo test. From these studies, the PRN antigenicity ELISA is proposed as an in vitro replacement for the in vivo potency test for PRN in DTaP-IPV-based formulations. Important considerations in this study included comprehensive antibody characterization, testing of multiple vaccine lots, method validation, and comparison to animal-based potency. Together, these factors form part of an overall strategy that ensures reliable and relevant in vitro assays are developed to replace animal tests. MDPI 2023-01-27 /pmc/articles/PMC9965796/ /pubmed/36851153 http://dx.doi.org/10.3390/vaccines11020275 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
Szeto, Jason
Beharry, Aruun
Chen, Tricia
Zholumbetov, Eric
Daigneault, Emilie
Ming, Marin
Lounsbury, Iain
Eng, Nelson
Thangavadivel, Nemika
Jin, Robbie
Denis-Jacquot, Aurélie
Azad, Bahram Behnam
Li, Meili
Keizner, Diana
Liu, Marcus
Lee, Sophia S. F.
He, Kai
Gajewska, Beata
Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title_full Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title_fullStr Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title_full_unstemmed Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title_short Development of an In Vitro Test Method to Replace an Animal-Based Potency Test for Pertactin Antigen in Multivalent Vaccines
title_sort development of an in vitro test method to replace an animal-based potency test for pertactin antigen in multivalent vaccines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965796/
https://www.ncbi.nlm.nih.gov/pubmed/36851153
http://dx.doi.org/10.3390/vaccines11020275
work_keys_str_mv AT szetojason developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT beharryaruun developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT chentricia developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT zholumbetoveric developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT daigneaultemilie developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT mingmarin developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT lounsburyiain developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT engnelson developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT thangavadivelnemika developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT jinrobbie developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT denisjacquotaurelie developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT azadbahrambehnam developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT limeili developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT keiznerdiana developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT liumarcus developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT leesophiasf developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT hekai developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines
AT gajewskabeata developmentofaninvitrotestmethodtoreplaceananimalbasedpotencytestforpertactinantigeninmultivalentvaccines