Training Study to Characterize Biomarkers to Chickenpox and Yellow Fever Vaccines
Summary
It is thought that vaccines trigger innate inflammatory responses to induce antigenspecific adaptive immunity (the desired effect), but excessive inflammation may lead to serious inflammatory complications or unwanted side effects. Currently there is a lack of reliable biomarkers (a measurable biological response that predicts something) able to predict severe inflammation and this has resulted in the development of several vaccines being terminated and the withdrawal of some licensed vaccines which were associated with inflammatory complications. This study is part of the BIOVACSAFE project which is a 5year €30M project funded by the Innovative Medicine Initiative. The project involves a series of clinical studies using licensed vaccines as benchmarks to generate clinical data on inflammation and identify biomarkers that can be used to predict acceptable reactogenicity. The target is to identify biomarkers that can predict the occurrence of beneficial and detrimental effects in response to a vaccine. Such biomarkers could be used in future vaccine development programs to optimize selection of vaccine candidates with a profile that will be unlikely to generate worrisome safety signals once they are in generalized use. This study is one in a series of "training" studies which will each use different licensed vaccines that are prototypical representatives of a class of vaccine used in a particular target population. Forty eight subjects will be randomised into three groups to receive: A) Varicella zoster vaccine (n = 20), B) Yellow Fever vaccine (n = 20), C) Saline placebo (n = 8). Following a screening visit, participants will undergo a seven day residential visit which will include immunization and intensive monitoring of physiological (e.g. heart rate, oral temperature, blood pressure) metabolic and immune (innate and adaptive) parameters. This visit will be followed up by four outpatient visits with further monitoring and blood samples.
Timeline
- Start
- 2013-09
- Primary completion
- 2014-01
- Completion
- 2014-01
Publications
- Mantel N, Piras-Douce F, Chautard E, Marcos-Lopez E, Bodinham CL, Cosma A, Courtois V, Dhooge N, Gautheron S, Kaufmann SHE, Pizzoferro K, Lewis DJM, Martinon F, Pagnon A, Raynal F, Dereuddre-Bosquet N, Le Grand R. Cynomolgus macaques as a translational model of human immune responses to yellow fever 17D vaccination. J Virol. 2024 May 14;98(5):e0151623. doi: 10.1128/jvi.01516-23. Epub 2024 Apr 3.
- Weiner J, Lewis DJM, Maertzdorf J, Mollenkopf HJ, Bodinham C, Pizzoferro K, Linley C, Greenwood A, Mantovani A, Bottazzi B, Denoel P, Leroux-Roels G, Kester KE, Jonsdottir I, van den Berg R, Kaufmann SHE, Del Giudice G. Characterization of potential biomarkers of reactogenicity of licensed antiviral vaccines: randomized controlled clinical trials conducted by the BIOVACSAFE consortium. Sci Rep. 2019 Dec 30;9(1):20362. doi: 10.1038/s41598-019-56994-8.
- Muturi-Kioi V, Lewis D, Launay O, Leroux-Roels G, Anemona A, Loulergue P, Bodinham CL, Aerssens A, Groth N, Saul A, Podda A. Neutropenia as an Adverse Event following Vaccination: Results from Randomized Clinical Trials in Healthy Adults and Systematic Review. PLoS One. 2016 Aug 4;11(8):e0157385. doi: 10.1371/journal.pone.0157385. eCollection 2016.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Varilrix | Vaccine | — | Subcutaneous |
| Subject | Yellow Fever Vaccine | Vaccine | — | Subcutaneous |
Indications
No indication recorded.