Department of Chemical Engineering, University of Birmingham, Birmingham, B15 2TT, UK.
Cytotechnology. 2002 Jan;38(1-3):87-97. doi: 10.1023/A:1021106116887.
There is a constant and growing interest in exploitingadenoviruses as vectors for gene therapy when transientexpression of a therapeutic protein is necessary. Therequirement for an increased viral titre has prompted asearch for techniques by which this virus may be assayedwith greater speed and simplicity. Conventional plaqueassay for quantification of adenoviral vectors titre incurrent use is laborious and time-consuming (up to 14days). We report herein a method for the monitoring ofadenovirus expressing green fluorescent protein thatincorporates rapid and easy sample handling by means offlow cytometric analysis. Cells (HEK293) were infectedwith adenovirus at various multiplicity of infection(MOI), harvested 17 to 20 h post infection and analysedby flow cytometry. Assumptions were made that onefluorescent cell was infected by a single infectiousparticle at a relatively low MOI. The adenoviral titrewas subsequently estimated from cell analysis in arelatively short time. The results obtained with an E1-complementing cell line (HEK293) were compared with thatobtained using a non-complementing cell line (A549). APoisson distribution successfully modelled the profile ofinfection as a function of MOI. This provided a betterunderstanding of adenoviral infection at the earlieststage possible. Monitoring of GFP fluorescence and viruspropagation in a batch culture of infected cells wassubsequently used as a practical application of thevalidated method.
当需要瞬时表达治疗性蛋白时,人们对利用腺病毒作为基因治疗载体产生了持续且不断增长的兴趣。对病毒滴度增加的需求促使人们寻找更快速、更简单的方法来检测这种病毒。目前使用的常规噬菌斑法来定量腺病毒载体的效价既繁琐又耗时(长达 14 天)。我们在此报告了一种监测表达绿色荧光蛋白的腺病毒的方法,该方法通过流式细胞术分析快速且易于处理样本。将细胞(HEK293)以不同的感染复数(MOI)感染腺病毒,在感染后 17 至 20 小时收获并进行流式细胞术分析。假设在相对较低的 MOI 下,一个荧光细胞被一个感染性颗粒感染。随后,根据细胞分析在相对较短的时间内估算腺病毒效价。用 E1 互补细胞系(HEK293)获得的结果与用非互补细胞系(A549)获得的结果进行了比较。泊松分布成功地将感染模式作为 MOI 的函数进行了建模。这使得在尽可能早的阶段就能更好地理解腺病毒感染。随后,将受感染细胞的批量培养中 GFP 荧光的监测和病毒繁殖用作该方法的实际应用。