National Institute of Biology, Department for Biotechnology and Systems Biology, Večna Pot 111, 1000 Ljubljana, Slovenia.
J Chromatogr A. 2013 Jan 11;1272:33-40. doi: 10.1016/j.chroma.2012.11.058. Epub 2012 Nov 29.
Obtaining pure virus suspensions is an essential step in many applications, such as vaccine production, antibody production, sample preparation for procedures requiring enrichment in viruses and other in vitro characterizations. Purification procedures usually consist of complex, long lasting and tedious protocols involving several ultracentrifugation steps. Such complexity is particularly evident in the case of plant viruses, where the virus needs to be isolated from the complex plant tissue matrix. Convective Interaction Media (CIM) monoliths are chromatographic supports that have been successfully utilized for the purification of large bio-molecules such as viruses, virus like particles and plasmids from various matrixes. In this study a CIM monolith based procedure was developed for the fast purification from plant tissue of the filamentous Potato virus Y (PVY) (virion size, 740 nm × 11 nm), which is one of the most important plant viruses causing great economical losses in potato production. Different mobile phases, chemistries and sample preparation strategies were tested. The presence of the virus in the chromatographic fraction was monitored with viral RNA quantification (RT-qPCR), viral protein purity estimation (SDS-PAGE) and viral particle integrity observation (transmission electron microscopy). The optimized procedure involves initial clarification steps, followed by chromatography using CIM quaternary amine (QA) monolithic disk column. In comparison to classical purification procedure involving ultracentrifugation through sucrose and caesium chloride, the developed CIM-QA purification achieved comparable yield, concentration and purity. Plant nucleic acids were successfully removed. Purification showed good reproducibility and moreover it reduced the purification time from four working days required for classic purification to a day and a half. This is the first study where a filamentous virus was purified using CIM monolithic supports. The advantages of this new purification procedure make it an attractive method in serological diagnostic tool production, which requires purified viruses for the immunization step. Moreover, the outcome of this study could serve as starting point for the improvement of the purification methods of other important filamentous viruses.
获得纯净的病毒悬浮液是许多应用的重要步骤,例如疫苗生产、抗体生产、需要富集病毒的样本制备以及其他体外特性。纯化程序通常包括复杂、耗时且繁琐的协议,涉及多个超速离心步骤。这种复杂性在植物病毒的情况下尤为明显,因为病毒需要从复杂的植物组织基质中分离出来。对流相互作用介质(CIM)整体式是一种色谱支持物,已成功用于从各种基质中纯化大型生物分子,如病毒、类病毒颗粒和质粒。在这项研究中,开发了一种基于 CIM 整体式的程序,用于快速从植物组织中纯化丝状马铃薯 Y 病毒(PVY)(病毒大小为 740nm×11nm),这是导致马铃薯生产中造成巨大经济损失的最重要的植物病毒之一。测试了不同的流动相、化学物质和样品制备策略。通过病毒 RNA 定量(RT-qPCR)、病毒蛋白纯度估计(SDS-PAGE)和病毒颗粒完整性观察(透射电子显微镜)监测色谱馏分中病毒的存在。优化的程序包括初始澄清步骤,然后使用 CIM 季铵(QA)整体式磁盘柱进行色谱分离。与涉及蔗糖和铯氯化物超速离心的经典纯化程序相比,开发的 CIM-QA 纯化可达到相当的产量、浓度和纯度。成功去除了植物核酸。纯化显示出良好的重现性,此外,它将经典纯化所需的四天工作时间缩短至一天半。这是首次使用 CIM 整体式支持物纯化丝状病毒。这种新的纯化程序的优点使其成为血清学诊断工具生产的一种有吸引力的方法,该方法需要纯化的病毒进行免疫步骤。此外,这项研究的结果可以作为改进其他重要丝状病毒的纯化方法的起点。