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用于人用黄热病活疫苗特性鉴定和质量控制的创新细胞内方法替代体内神经毒力试验:一项初步研究。

Innovative in cellulo method as an alternative to in vivo neurovirulence test for the characterization and quality control of human live Yellow Fever virus vaccines: A pilot study.

作者信息

da Costa Anaelle, Prehaud Christophe, Khou Cecile, Pardigon Nathalie, Saulnier Aure, Nougarede Nolwenn, Lafon Monique

机构信息

Institut Pasteur, CNRS UMR 3569, Unité de Neuroimmunologie Virale, 25 Rue du Dr Roux, 75724, Paris Cedex 15, France; Sanofi Pasteur, Plateforme de Caractérisation Immunologique et Microbiologique, Département Analytique de la R&D, 1541 Avenue Marcel Mérieux, 69280, Marcy l'Etoile, France.

Institut Pasteur, CNRS UMR 3569, Unité de Neuroimmunologie Virale, 25 Rue du Dr Roux, 75724, Paris Cedex 15, France.

出版信息

Biologicals. 2018 May;53:19-29. doi: 10.1016/j.biologicals.2018.03.004. Epub 2018 Mar 24.

Abstract

Live attenuated vaccines have proved to be mostly valuable in the prevention of infectious diseases in humans, especially in developing countries. The safety and potency of vaccine, and the consistency of vaccine batch-to-batch manufacturing, must be proven before being administrated to humans. For now, the tests used to control vaccine safety largely involve animal testing. For live viral vaccines, regulations require suppliers to demonstrate the absence of neurovirulence in animals, principally in non-human primates and mice. In a search to reduce the use of animals and embracing the 3Rs principles (Replacement, Reduction, Refinement in the use of laboratory animals), we developed a new Blood-Brain Barrier Minibrain (BBB-Minibrain) in cellulo device to evaluate the neuroinvasiveness/neurovirulence of live Yellow Fever virus (YFV) vaccines. A pilot study was performed using the features of two distinct YFV strains, with the ultimate goal of proposing a companion test to characterize YFV neurovirulence. Here, we demonstrate that the BBB-Minibrain model is a promising alternative to consider for future replacement of YFV vaccine in vivo neurovirulence testing (see graphical abstract).

摘要

减毒活疫苗已被证明在预防人类传染病方面极具价值,尤其是在发展中国家。疫苗的安全性和效力以及批次间生产的一致性,在用于人体之前必须得到证实。目前,用于控制疫苗安全性的测试主要涉及动物试验。对于活病毒疫苗,法规要求供应商证明在动物(主要是非人灵长类动物和小鼠)中不存在神经毒性。为了减少动物使用并遵循3R原则(实验动物使用中的替代、减少、优化),我们开发了一种新型的体外血脑屏障微型脑(BBB-微型脑)装置,以评估黄热病毒(YFV)活疫苗的神经侵袭性/神经毒性。利用两种不同YFV毒株的特性进行了一项初步研究,最终目的是提出一项配套试验来表征YFV神经毒性。在此,我们证明BBB-微型脑模型是未来替代YFV疫苗体内神经毒性测试的一个有前景的选择(见图摘要)。

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