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用于嵌合黄病毒疫苗生产的C6/36细胞系无血清悬浮培养

Serum-Free Suspension Culture of the C6/36 Cell Line for Chimeric Orthoflavivirus Vaccine Production.

作者信息

Dawurung Joshua S, Harrison Jessica J, Modhiran Naphak, Hall Roy A, Hobson-Peters Jody, de Malmanche Henry

机构信息

School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, QLD 4072, Australia.

Australian Infectious Diseases Research Centre, The University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

Viruses. 2025 Feb 12;17(2):250. doi: 10.3390/v17020250.

Abstract

Chimeric orthoflaviviruses derived from the insect-specific Binjari virus (BinJV) offer a promising basis for safe orthoflavivirus vaccines. However, these vaccines have so far only been produced using adherent C6/36 mosquito cell cultures grown in serum-supplemented media, limiting their scalable manufacture. To address this, we adapted C6/36 cells for serum-free suspension culture using Sf900-III medium, achieving high peak cell densities (up to 2.5 × 10 cells/mL). Higher agitation rates reduced cell aggregation, and cryopreservation and direct-to-suspension revival were successful, confirming the adapted line's stability for research and industrial applications. Despite this, BinJV-based chimeric orthoflaviviruses, including BinJV/WNV, a candidate vaccine for West Nile virus, and similar vaccines (BinJV/DENV2 and BinJV/JEV) for dengue 2 virus and Japanese encephalitis virus, respectively, exhibited substantially reduced titres in C6/36 cultures infected in Sf900-III, a phenomenon attributed to the medium's acidic pH. Switching to the more alkaline, serum-free CD-FortiCHO medium enhanced the replication of these chimeric viruses to peak titres between 1.7 × 10 and 7.6 × 10 infectious units per mL whilst preserving viral integrity. These findings suggest that suspension-adapted C6/36 cultures in CD-FortiCHO medium can support high-yield vaccine production for various orthoflaviviruses and highlight the important role of cell culture media pH for orthoflavivirus bioprocessing. This scalable mosquito cell-based system could reduce production costs and improve vaccine accessibility, supporting efforts to combat arbovirus-related public health challenges.

摘要

源自昆虫特异性宾贾里病毒(BinJV)的嵌合黄病毒为安全的黄病毒疫苗提供了一个有前景的基础。然而,迄今为止,这些疫苗仅使用在补充血清的培养基中生长的贴壁C6/36蚊细胞培养物生产,限制了它们的规模化制造。为了解决这个问题,我们使用Sf900-III培养基使C6/36细胞适应无血清悬浮培养,实现了高峰细胞密度(高达2.5×10个细胞/毫升)。更高的搅拌速率减少了细胞聚集,冷冻保存和直接悬浮复苏均成功,证实了适应株系在研究和工业应用中的稳定性。尽管如此,基于BinJV的嵌合黄病毒,包括西尼罗河病毒候选疫苗BinJV/WNV,以及分别针对登革热2型病毒和日本脑炎病毒的类似疫苗(BinJV/DENV2和BinJV/JEV),在Sf900-III中感染的C6/36培养物中滴度大幅降低,这种现象归因于培养基的酸性pH值。改用碱性更强的无血清CD-FortiCHO培养基可增强这些嵌合病毒的复制,使其达到每毫升1.7×10至7.6×10个感染单位的峰值滴度,同时保持病毒完整性。这些发现表明,在CD-FortiCHO培养基中适应悬浮培养的C6/36培养物可以支持多种黄病毒的高产疫苗生产,并突出了细胞培养基pH值在黄病毒生物加工中的重要作用。这种基于蚊细胞的可扩展系统可以降低生产成本并提高疫苗可及性,支持应对虫媒病毒相关公共卫生挑战的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b96d/11860912/d23321ace3cf/viruses-17-00250-g001.jpg

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