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下一代减毒活黄热病疫苗候选株的表型和遗传特征。

Phenotypic and genetic characterization of a next generation live-attenuated yellow fever vaccine candidate.

机构信息

Analytical Sciences, Sanofi, Marcy l'Etoile, France.

Research and External Innovation, Sanofi, Marcy l'Etoile, France.

出版信息

Vaccine. 2022 Sep 9;40(38):5641-5650. doi: 10.1016/j.vaccine.2022.07.043. Epub 2022 Aug 23.

Abstract

We assessed the genetic and phenotypic characteristics of a yellow fever vaccine candidate, which was cloned from a YF-VAX substrain selected for growth in Vero cells (vYF-247), during the manufacturing process from the master seed lot (MSL) and working seed lot (WSL) through to the drug substance (DS) stage. There were nine minor nucleotide variants observed from the MSL to the DS stage, of which five led to amino acid changes. The variant positions were, however, not known risks for any virulence modification. vYF-247 exhibits a homogenous plaque size profile (as expected for a cloned vaccine candidate) composed of small plaques (<1 mm) that remained consistent throughout the manufacturing process. In addition, there was no change in the viral replication rate. Of note, the DS sequences across the two manufacturing campaigns (2018 and 2019) were very similar suggesting a high batch-to-batch consistency. All MSL, WSL and DS batches exhibited similar neurovirulence profiles in mice and had a more attenuated neurovirulence phenotype than the YF-VAX (egg-based vaccine) comparator. Overall, the neurovirulence phenotype of vYF-247 does not change from MSL, WSL to DS. These data collectively support the safety and genetic stability of vYF-247 during the production process.

摘要

我们评估了黄热病疫苗候选物的遗传和表型特征,该候选物是从在 Vero 细胞中生长选择的 YF-VAX 亚系(vYF-247)中克隆出来的,在从主种子批(MSL)到工作种子批(WSL)再到药物物质(DS)阶段的生产过程中。从 MSL 到 DS 阶段观察到九个小核苷酸变异,其中五个导致氨基酸变化。然而,这些变异位置并不是任何毒力修饰的已知风险。vYF-247 表现出均匀的蚀斑大小分布(如预期的克隆疫苗候选物),由小蚀斑(<1 毫米)组成,在整个生产过程中保持一致。此外,病毒复制率没有变化。值得注意的是,两个生产批次(2018 年和 2019 年)的 DS 序列非常相似,表明批次间的一致性很高。所有 MSL、WSL 和 DS 批次在小鼠中表现出相似的神经毒力特征,并且比 YF-VAX(基于鸡蛋的疫苗)对照具有更衰减的神经毒力表型。总体而言,vYF-247 的神经毒力表型从 MSL、WSL 到 DS 不变。这些数据共同支持 vYF-247 在生产过程中的安全性和遗传稳定性。

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