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将稳定昆虫细胞系与杆状病毒介导的表达相结合,用于生产多 HA 流感 VLPs。

Combining stable insect cell lines with baculovirus-mediated expression for multi-HA influenza VLP production.

机构信息

IBET, Instituto de Biologia Experimental e Tecnológica, Apartado 12, 2780-901 Oeiras, Portugal; ITQB NOVA-Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Av. Da República, 2780-157 Oeiras, Portugal.

IBET, Instituto de Biologia Experimental e Tecnológica, Apartado 12, 2780-901 Oeiras, Portugal; Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Monte da Caparica, Portugal.

出版信息

Vaccine. 2018 May 24;36(22):3112-3123. doi: 10.1016/j.vaccine.2017.02.043. Epub 2017 Mar 11.

Abstract

Safer and broadly protective vaccines are needed to cope with the continuous evolution of circulating influenza virus strains and promising approaches based on the expression of multiple hemagglutinins (HA) in a virus-like particle (VLP) have been proposed. However, expression of multiple genes in the same vector can lead to its instability due to tandem repetition of similar sequences. By combining stable with transient expression systems we can rationally distribute the number of genes to be expressed per platform and thus mitigate this risk. In this work, we developed a modular system comprising stable and baculovirus-mediated expression in insect cells for production of multi-HA influenza enveloped VLPs. First, a stable insect High Five cell population expressing two different HA proteins from subtype H3 was established. Infection of this cell population with a baculovirus vector encoding three other HA proteins from H3 subtype proved to be as competitive as traditional co-infection approaches in producing a pentavalent H3 VLP. Aiming at increasing HA expression, the stable insect cell population was infected at increasingly higher cell concentrations (CCI). However, cultures infected at CCI of 3×10cells/mL showed lower HA titers per cell in comparison to standard CCI of 2×10cells/mL, a phenomenon named "cell density effect". To lessen the negative impact of this phenomenon, a tailor-made refeed strategy was designed based on the exhaustion of key nutrients during cell growth. Noteworthy, cultures supplemented and infected at a CCI of 4×10cells/mL showed comparable HA titers per cell to those of CCI of 2×10cells/mL, thus leading to an increase of up to 4-fold in HA titers per mL. Scalability of the modular strategy herein proposed was successfully demonstrated in 2L stirred tank bioreactors with comparable HA protein levels observed between bioreactor and shake flasks cultures. Overall, this work demonstrates the suitability of combining stable with baculovirus-mediated expression in insect cells as an efficient platform for production of multi-HA influenza VLPs, surpassing the drawbacks of traditional co-infection strategies and/or the use of larger, unstable vectors.

摘要

需要更安全、更广泛保护的疫苗来应对不断演变的流感病毒株,基于在病毒样颗粒(VLP)中表达多种血凝素(HA)的有前途的方法已经被提出。然而,由于相似序列的串联重复,在同一载体中表达多个基因可能导致其不稳定。通过将稳定表达系统与瞬时表达系统相结合,我们可以合理地分配每个平台要表达的基因数量,从而降低这种风险。在这项工作中,我们开发了一个模块化系统,该系统由昆虫细胞中的稳定和杆状病毒介导的表达组成,用于生产多 HA 流感包膜 VLPs。首先,建立了一个稳定的昆虫 High Five 细胞群体,该细胞群体表达来自 H3 亚型的两种不同的 HA 蛋白。用编码来自 H3 亚型的另外三种 HA 蛋白的杆状病毒载体感染该细胞群体,其产生五价 H3 VLP 的竞争能力与传统的共感染方法相当。为了提高 HA 的表达量,稳定的昆虫细胞群体以越来越高的细胞浓度(CCI)进行感染。然而,与标准 CCI 为 2×10cells/ml 相比,CCI 为 3×10cells/ml 的感染细胞培养物中每个细胞的 HA 滴度较低,这种现象称为“细胞密度效应”。为了减轻这种现象的负面影响,根据细胞生长过程中关键营养物质的消耗情况,设计了一种定制的再补给策略。值得注意的是,补充和感染 CCI 为 4×10cells/ml 的培养物与 CCI 为 2×10cells/ml 的培养物相比,每个细胞的 HA 滴度相当,因此每个毫升的 HA 滴度增加了 4 倍。在所提出的模块化策略中,在 2L 搅拌罐生物反应器中成功证明了其可扩展性,在生物反应器和摇瓶培养物中观察到相似的 HA 蛋白水平。总的来说,这项工作表明,将稳定表达与昆虫细胞中的杆状病毒介导表达相结合作为生产多 HA 流感 VLPs 的有效平台是合适的,克服了传统共感染策略和/或使用更大、不稳定载体的缺点。

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