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通过切向流超滤法纯化浓核症病毒。

Purification of densonucleosis virus by tangential flow ultrafiltration.

作者信息

Grzenia David L, Carlson Jonathan O, Czermak Peter, Han Binbing, Specht Rachel K, Wickramasinghe S Ranil

机构信息

Institute of Biopharmaceutical Technology, University of Applied Sciences, Giessen-Friedberg, 35390 Giessen, Germany.

出版信息

Biotechnol Prog. 2006 Sep-Oct;22(5):1346-53. doi: 10.1021/bp060077c.

Abstract

Purification at commercial scale of viruses and virus vectors for gene therapy applications and viral vaccines is a major separations challenge. Tangential flow ultrafiltration has been developed for protein purification. Here tangential flow ultrafiltration of parvoviruses has been investigated. Because these virus particles are small (18-26 nm), removal of host cell proteins will be challenging. The results obtained here indicate that 30, 50, and 100 kDa membranes reject the virus particles, whereas 300 kDa membranes allow some virus particles to pass into the permeate. The decrease in permeate flux for the 300 kDa ultrafiltration membrane is much greater than for the 30, 50, and 100 kDa membranes, indicating possible entrapment of virus particle in the membrane pores. The permeate flux and level of protein rejection is strongly affected by the cell culture growth medium. The results indicate that when developing a new process, it is essential that the cell culture and purification operations be developed in parallel.

摘要

用于基因治疗应用和病毒疫苗的病毒及病毒载体的大规模纯化是一项重大的分离挑战。切向流超滤已被开发用于蛋白质纯化。在此对细小病毒的切向流超滤进行了研究。由于这些病毒颗粒很小(18 - 26纳米),去除宿主细胞蛋白将具有挑战性。此处获得的结果表明,30、50和100千道尔顿的膜会截留病毒颗粒,而300千道尔顿的膜会使一些病毒颗粒进入渗透液。300千道尔顿超滤膜的渗透通量下降幅度远大于30、50和100千道尔顿的膜,这表明病毒颗粒可能被困在膜孔中。渗透通量和蛋白质截留水平受细胞培养生长培养基的强烈影响。结果表明,在开发新工艺时,细胞培养和纯化操作必须并行开展。

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