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Reporter cell lines for detection of pertussis toxin in acellular pertussis vaccines as a functional animal-free alternative to the in vivo histamine sensitization test.
Hoonakker, Marieke E; Verhagen, Lisa M; van der Maas, Larissa; Sloots, Arjen; Hendriksen, Coenraad F M.
Afiliação
  • Hoonakker ME; Institute for Translational Vaccinology (Intravacc), P.O. Box 457, 3720 AL Bilthoven, The Netherlands. Electronic address: Marieke.Hoonakker@intravacc.nl.
  • Verhagen LM; Institute for Translational Vaccinology (Intravacc), P.O. Box 457, 3720 AL Bilthoven, The Netherlands.
  • van der Maas L; Institute for Translational Vaccinology (Intravacc), P.O. Box 457, 3720 AL Bilthoven, The Netherlands.
  • Sloots A; Institute for Translational Vaccinology (Intravacc), P.O. Box 457, 3720 AL Bilthoven, The Netherlands.
  • Hendriksen CFM; Institute for Translational Vaccinology (Intravacc), P.O. Box 457, 3720 AL Bilthoven, The Netherlands; Department of Animals in Science and Society, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 2, 3508 TD Utrecht, The Netherlands.
Vaccine ; 35(8): 1152-1160, 2017 02 22.
Article em En | MEDLINE | ID: mdl-28129894
ABSTRACT
Detoxified pertussis toxin (pertussis toxoid) is a major antigen in acellular pertussis vaccines. Testing these vaccines on the presence of residual pertussis toxin (PTx) and reversion to toxicity is performed by the regulatory required in vivo Histamine Sensitization test (HIST). Lack of mechanistic understanding of the HIST, technical handicaps and animal welfare concerns, have promoted the development of alternative methods. As the majority of the cellular effects of PTx depend on its ability to activate intracellular pathways involving cAMP, the in vitro cAMP-PTx assay was developed. Although this assay could be used to detect PTx activity, it lacked sensitivity and robustness for use in a quality control setting. In the present study, novel reporter cell lines (CHO-CRE and A10-CRE) were generated that stably express a reporter construct responsive to changes in intracellular cAMP levels. These reporter cell lines were able to detect PTx in a concentration-dependent manner when combined with fixed amounts of forskolin. The CHO-CRE cell line enabled detection of PTx in the context of a multivalent vaccine containing aP, with a sensitivity equal to the HIST. However, the sensitivity of the A10-CRE cells was insufficient for this purpose. The experiments also suggest that the CHO-CRE reporter cell line might be suitable for assessment of cellular effects of PTd reverted to PTx. The CHO-CRE reporter cell line provides a platform that meets the criteria for specificity and sensitivity and is a promising in vitro model with potential to replace the HIST.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bioensaio / Vacina contra Coqueluche / Efeito Fundador / Elementos de Resposta / Toxina Pertussis Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bioensaio / Vacina contra Coqueluche / Efeito Fundador / Elementos de Resposta / Toxina Pertussis Idioma: En Ano de publicação: 2017 Tipo de documento: Article