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一株无外源因子的克隆细胞系,对口蹄疫病毒高度易感。

An adventitious agent-free clonal cell line that is highly susceptible to foot -and-mouth disease virus.

机构信息

Plum Island Animal Disease Center (PIADC), ARS, NEA, USDA, Greenport, NY, 11944, USA.

Plum Island Animal Disease Center (PIADC), APHIS, USDA, Greenport, NY, 11944, USA.

出版信息

Biologicals. 2021 Jul;72:33-41. doi: 10.1016/j.biologicals.2021.05.003. Epub 2021 Jun 4.

Abstract

Porcine LFBKαVβ6 cells have been successfully used for diagnostics and propagation of all FMDV serotypes/subtypes. Unfortunately, after initial characterization, these cells showed contamination with bovine viral diarrhea virus (BVDV), a non-cytopathic adventitious agent. Persistent infection with BVDV could interfere with diagnostic tests and, also prevent consideration for other uses, i.e., vaccine production. In this study, we developed a three-prong methodology to completely remove BVDV from LFBKαVβ6 cells. Combined treatment with siRNA against BVDV NS5A, porcine interferon alpha and ribavirin resulted in the elimination of BVDV, as determined by immunohistochemistry analysis, quantitative RT-PCR and RNA sequencing. Importantly, elimination of BVDV from LFBKαVβ6 did not affect FMDV growth and plaque phenotype from different serotypes isolated and propagated in the clean cell line, newly named MGPK αVβ6-C5. Additionally, isolation of FMDV from field oro-pharyngeal samples, was successful at the same sensitivity as in BVDV-contaminated LFBKαVβ6 cells. Our results identified a direct method to efficiently eliminate BVDV from porcine cells without altering FMDV permissiveness, diagnostic value, or potential for use in vaccine production. Furthermore, these cells may provide an improved platform for diagnostics and propagation of other viruses of interest in the veterinary field and the virology community at large.

摘要

猪 LFBKαVβ6 细胞已成功用于所有 FMDV 血清型/亚型的诊断和繁殖。不幸的是,在初始特征描述后,这些细胞显示出与牛病毒性腹泻病毒(BVDV)的污染,这是一种非细胞病变的偶然病原体。BVDV 的持续感染可能会干扰诊断测试,并且还可能阻止考虑其他用途,例如疫苗生产。在这项研究中,我们开发了一种三管齐下的方法来从 LFBKαVβ6 细胞中完全去除 BVDV。siRNA 针对 BVDV NS5A、猪干扰素α和利巴韦林的联合处理导致 BVDV 的消除,通过免疫组织化学分析、定量 RT-PCR 和 RNA 测序确定。重要的是,从 LFBKαVβ6 中消除 BVDV 不会影响从清洁细胞系 MGPK αVβ6-C5 中分离和繁殖的不同血清型的 FMDV 生长和蚀斑表型。此外,从田间口咽样本中分离 FMDV 的成功率与在 BVDV 污染的 LFBKαVβ6 细胞中相同。我们的结果确定了一种从猪细胞中有效去除 BVDV 的直接方法,而不会改变 FMDV 的易感性、诊断价值或在疫苗生产中的潜在用途。此外,这些细胞可能为兽医领域和整个病毒学领域中其他感兴趣病毒的诊断和繁殖提供改进的平台。

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