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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Asymmetrical flow field-flow fractionation in purification of an enveloped bacteriophage ?6
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Asymmetrical flow field-flow fractionation in purification of an enveloped bacteriophage ?6

机译:纯化包膜噬菌体的不对称流场 - 流动分级?6

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Basic and applied virus research requires specimens that are purified to high homogeneity. Thus, there is much interest in the efficient production and purification of viruses and their subassemblies. Advances in the production steps have shifted the bottle neck of the process to the purification. Nonetheless, the development of purification techniques for different viruses is challenging due to the complex biological nature of the infected cell cultures as well as the biophysical and -chemical differences in the virus particles. We used bacteriophage ?6 as a model virus in our attempts to provide a new purification method for enveloped viruses. We compared asymmetrical flow field-flow fractionation (AF4)-based virus purification method to the well-established ultracentrifugation-based purification of ?6. In addition, binding of ?6 virions to monolithic anion exchange columns was tested to evaluate their applicability in concentrating the AF4 purified specimens. Our results show that AF4 enables one-hour purification of infectious enveloped viruses with specific infectivity of ~1?×?1013?PFU/mg of protein and ~65–95% yields. Obtained purity was comparable with that obtained using ultracentrifugation, but the yields from AF4 purification were 2–3-fold higher. Importantly, high quality virus preparations could be obtained directly from crude cell lysates. Furthermore, when used in combination with in-line light scattering detectors, AF4 purification could be coupled to simultaneous quality control of obtained virus specimen.
机译:基本和应用的病毒研究需要纯化以高均匀性的标本。因此,对病毒及其子组件的有效生产和纯化有很多兴趣。生产步骤的进步已经将该方法的瓶颈转移到纯化。尽管如此,由于感染细胞培养物的复杂生物学以及病毒颗粒的生物物理和化学差异,不同病毒的纯化技术的开发是挑战性的。我们使用噬菌体?6作为模型病毒,我们试图为包膜病毒提供新的净化方法。与基于良好的超速离心纯化的基于良好的超速离心的纯化,比较了非对称的流动场流量分馏(AF4)的病毒净化方法。此外,测试了α6病毒粒子的结合,以评估它们在浓缩AF4纯化标本时的适用性。我们的研究结果表明,AF4使1小时纯化感染性包膜病毒具有特异性感染性〜1?×1013?PFU / Mg蛋白质和〜65-95%的产率。获得的纯度与使用超速离心的纯度相当,但AF4净化的产率高为2-3倍。重要的是,可以直接从粗细胞裂解物获得高质量的病毒制剂。此外,当与在线光散射探测器结合使用时,AF4纯化可以偶联与获得的病毒样本的同时质量控制。

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