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Biologicals. 2024 May;86:101771. doi: 10.1016/j.biologicals.2024.101771. Epub 2024 May 19.
In the past few years NGS has become the technology of choice to replace animal-based virus safety methods and this has been strengthened by the recent revision to the ICHQ5A virus safety chapter. Here we describe the validation of an NGS method using an agnostic analysis to detect and identify RNA virus and actively replicating DNA virus contaminants in cell banks. We report the results of the validation of each step in the sequencing process that established quality criteria to ensure consistent sequencing data. Furthermore, the validation of the analysis algorithm designed to identify virus specific sequences is described along with steps undertaken to ensure the integrity of the sequencing data from generation to analysis. Lastly, the validated sequencing and analysis systems were used to establish a limit of detection (LOD) for model viruses in cells that are commonly used in biomanufacturing. The LOD from these studies ranged from 1E+03 to 1E+04 genome copies and were dependent on the virus type with little variability between the different cell types. Thus, the validation of the NGS method for adventitious agent testing and the establishment of a general LOD for cell-based samples provides a suitable alternative to traditional virus detection methods.
在过去的几年中,NGS 已成为替代基于动物的病毒安全性方法的首选技术,ICHQ5A 病毒安全性章节的最近修订进一步加强了这一点。在这里,我们描述了一种使用不可知分析来检测和鉴定细胞库中 RNA 病毒和活跃复制的 DNA 病毒污染物的 NGS 方法的验证。我们报告了在建立确保一致测序数据的质量标准的测序过程的每个步骤的验证结果。此外,还描述了设计用于识别病毒特异性序列的分析算法的验证,以及为确保从生成到分析的测序数据完整性而采取的步骤。最后,使用经过验证的测序和分析系统来确定常用于生物制造的细胞中模型病毒的检测限 (LOD)。这些研究的 LOD 范围从 1E+03 到 1E+04 基因组拷贝,并且取决于病毒类型,不同细胞类型之间的变化很小。因此,NGS 方法用于检测外来病原体的验证以及建立基于细胞的样本的一般 LOD 为传统病毒检测方法提供了合适的替代方法。