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首页> 外文期刊>Biotechnology Progress >A Generalized Purification Step for Viral Particles Using Mannitol Flocculation
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A Generalized Purification Step for Viral Particles Using Mannitol Flocculation

机译:使用甘露醇絮凝的病毒颗粒的广义纯化步骤

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摘要

Vaccine manufacturing has conventionally been performed by the developed world using traditional unit operations like filtration and chromatography. There is currently a shift in the manufacturing of vaccines to the less developed world, requiring unit operations that reduce costs, increase recovery, and are amenable to continuous manufacturing. This work demonstrates that mannitol can be used as a flocculant for an enveloped and nonenveloped virus and can purify the virus from protein contaminants after microfiltration. The recovery of the virus ranges from 58 to 96% depending on virus, the filter pore size, and the starting concentration of the virus. Protein removal of 80% was achieved for the small nonenveloped virus using a 0.1 mu m filter because proteins were not flocculated with the virus and flowed through the filter. It is hypothesized that mannitol dehydrates the viral surface by controlling the water structure surrounding the virus. Without the ability to become compact, as occurs with proteins, the virus aggregates in the presence of osmolytes and proteins do not. Osmolyte flocculation is a scalable process using high flux microfilters. It has been applied to both an enveloped and nonenveloped virus, making this process friendly to a variety of vaccine and gene therapy products. (C) 2018 American Institute of Chemical Engineers
机译:疫苗制造通常由发达国家使用传统单元操作进行,如过滤和色谱。目前在制造疫苗到较少发达的世界的转变,需要单位操作,降低成本,增加恢复,并且可连续制造。这项工作表明,甘露醇可以用作包膜和不开发病毒的絮凝剂,并且可以在微滤后从蛋白质污染物中净化病毒。根据病毒,过滤孔径和病毒的起始浓度,病毒的恢复范围为58至96%。使用0.1μm过滤器对小的非细胞病毒实现蛋白质去除80%,因为蛋白质没有用病毒絮凝并流过过滤器。假设甘露醇通过控制病毒周围的水结构来脱水面脱水面。没有能够变得紧凑的能力,如蛋白质发生的那样,病毒在渗透物和蛋白质存在下的病毒聚集。 Osmolyte絮凝是使用高通量微滤池的可扩展过程。它已被应用于封闭和不共处的病毒,使这一过程友好地友好地患有各种疫苗和基因治疗产品。 (c)2018美国化学工程研究所

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