Wang Qi, Luo Jian, Li Beibei, Ye Qian, Xu Wenting, Gao Feixia, Zhou Linting, Lu Wenyue, Tan Wen-Song, Li Xiuling
Department of Virus and Vaccine, Shanghai Institute of Biological Products, Shanghai 200052, China.
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, China.
Vaccines (Basel). 2024 Mar 9;12(3):287. doi: 10.3390/vaccines12030287.
Compared with the traditional vaccine produced in embryonated chicken eggs, cell-based manufacturing represented by the Madin-Darby canine kidney (MDCK) cell line has a larger production scale and reduces the risk of egg shortage in a pandemic. Establishing a culture system that enables high production of the influenza virus is a key issue in influenza vaccine production. Here, a serum-free suspension culture of MDCK (sMDCK) cells was obtained from adherent MDCK (aMDCK) cells by direct adaptation. Viral infection experiments showed that viral yields of influenza A/B virus in sMDCK cells were higher than in aMDCK cells. Transcriptome analysis revealed that numerous interferon-stimulated genes (ISGs) exhibited reduced expression in sMDCK cells. To further clarify the mechanism of high viral production in sMDCK cells, we demonstrated the antiviral role of RIG-I and IFIT3 in MDCK cells by knockdown and overexpression experiments. Furthermore, suppression of the JAK/STAT pathway enhances the viral accumulation in aMDCK cells instead of sMDCK cells, suggesting the reduction in the JAK/STAT pathway and ISGs promotes viral replication in sMDCK cells. Taken together, we elucidate the relationship between the host innate immune response and the high viral productive property of sMDCK cells, which helps optimize cell production processes and supports the production of cell-based influenza vaccines.
与在鸡胚中生产的传统疫苗相比,以马-达二氏犬肾(MDCK)细胞系为代表的细胞培养生产方式具有更大的生产规模,并降低了大流行期间鸡蛋短缺的风险。建立一种能够高效生产流感病毒的培养系统是流感疫苗生产中的关键问题。在此,通过直接适应从贴壁MDCK(aMDCK)细胞获得了MDCK(sMDCK)细胞的无血清悬浮培养物。病毒感染实验表明,甲型/乙型流感病毒在sMDCK细胞中的病毒产量高于aMDCK细胞。转录组分析显示,许多干扰素刺激基因(ISG)在sMDCK细胞中的表达降低。为了进一步阐明sMDCK细胞中病毒高产的机制,我们通过敲低和过表达实验证明了RIG-I和IFIT3在MDCK细胞中的抗病毒作用。此外,抑制JAK/STAT途径会增强aMDCK细胞而非sMDCK细胞中的病毒积累,这表明JAK/STAT途径和ISG的减少促进了sMDCK细胞中的病毒复制。综上所述,我们阐明了宿主先天免疫反应与sMDCK细胞高病毒生产特性之间的关系,这有助于优化细胞生产过程并支持基于细胞的流感疫苗生产。