Janakiraman Vasantharajan, Forrest William F, Chow Bernard, Seshagiri Somasekar
Department of Molecular Biology, Genentech Inc., 1 DNA Way, South San Francisco, CA 94080, USA.
J Virol Methods. 2006 Mar;132(1-2):48-58. doi: 10.1016/j.jviromet.2005.08.021. Epub 2005 Oct 6.
Baculovirus protein expression system is a powerful tool for producing recombinant proteins. To optimize conditions for efficient recombinant protein expression, it is important to determine titer of virus stock for arriving at an optimal multiplicity of infection (MOI) that maximizes recombinant protein expression. Traditionally plaque assays have been used for titer determination. Other methods such as endpoint dilution, quantitative real-time polymerase chain reaction and flow cytometry have been developed to aid the determination of virus titers. However, most of these methods are time-consuming and labor intensive. In this regard, a simple and rapid method for determination of virus titers based on the cytopathic effects that lead to viable cell size increase following virus infection is presented in this paper. In this study, the Vi-CELL (Beckman Coulter) was used to measure cell-diameter over a range of virus dilutions, following infection. Applying statistical modeling techniques, the viable cell-diameter data was used to estimate the virus titer. The results indicated that the viable cell-diameter based titer estimation to be reliable and comparable to titers determined by the traditional plaque assay.
杆状病毒蛋白表达系统是生产重组蛋白的强大工具。为了优化高效重组蛋白表达的条件,确定病毒储备液的滴度以达到使重组蛋白表达最大化的最佳感染复数(MOI)非常重要。传统上,空斑试验一直用于滴度测定。已经开发了其他方法,如终点稀释法、定量实时聚合酶链反应和流式细胞术来辅助病毒滴度的测定。然而,这些方法大多耗时且 labor intensive。在这方面,本文提出了一种基于病毒感染后导致活细胞大小增加的细胞病变效应来测定病毒滴度的简单快速方法。在本研究中,使用Vi-CELL(贝克曼库尔特公司)在一系列病毒稀释度下测量感染后活细胞的直径。应用统计建模技术,利用活细胞直径数据估计病毒滴度。结果表明,基于活细胞直径的滴度估计是可靠的,并且与传统空斑试验测定的滴度相当。