Lab Essentials Applications Development, Sartorius Stedim Biotech GmbH, Göttingen, Lower Saxony, Germany.
Institute of Technical Chemistry, Leibniz University Hannover, Hannover, Lower Saxony, Germany.
PLoS One. 2021 Jul 15;16(7):e0254739. doi: 10.1371/journal.pone.0254739. eCollection 2021.
The analysis of the infectious titer of the lentiviral vector samples obtained during upstream and downstream processing is of major importance, however, also the most challenging method to be performed. Currently established methods like flow cytometry or qPCR lack the capability of enabling high throughput sample processing while they require a lot of manual handling. To address this limitation, we developed an immunological real-time imaging method to quantify the infectious titer of anti-CD19 CAR lentiviral vectors with a temporal readout using the Incucyte® S3 live-cell analysis system. The infective titers determined with the Incucyte® approach when compared with the flow cytometry-based assay had a lower standard deviation between replicates and a broader linear range. A major advantage of the method is the ability to obtain titer results in real-time, enabling an optimal readout time. The presented protocol significantly decreased labor and increased throughput. The ability of the assay to process high numbers of lentiviral samples in a high throughput manner was proven by performing a virus stability study, demonstrating the effects of temperature, salt, and shear stress on LV infectivity.
分析上游和下游处理过程中获得的慢病毒载体样本的感染滴度非常重要,但也是最具挑战性的方法。目前已建立的方法,如流式细胞术或 qPCR,缺乏高通量样本处理的能力,同时需要大量的手动操作。为了解决这一限制,我们开发了一种免疫实时成像方法,使用 Incucyte® S3 活细胞分析系统进行时间读取,来定量抗 CD19 CAR 慢病毒载体的感染滴度。与基于流式细胞术的测定方法相比,Incucyte®方法确定的感染滴度在重复之间具有更低的标准偏差和更宽的线性范围。该方法的一个主要优势是能够实时获得滴度结果,从而实现最佳的读取时间。该方案大大减少了工作量并提高了通量。通过进行病毒稳定性研究证明了该方法能够以高通量方式处理大量慢病毒样本的能力,该研究证明了温度、盐和剪切应力对 LV 感染力的影响。