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通过悬浮转染可扩展生产2型腺相关病毒载体。

Scalable production of adeno-associated virus type 2 vectors via suspension transfection.

作者信息

Park Joon Young, Lim Byung-Pil, Lee Kyuhyun, Kim Young-Gun, Jo Eui-Cheol

机构信息

MOGAM Biotechnology Research Institute, 341 Pojung-Ri Koosung-Eup Yongin, Kyonggi-Do 449-913, Republic of Korea.

出版信息

Biotechnol Bioeng. 2006 Jun 20;94(3):416-30. doi: 10.1002/bit.20776.

Abstract

Vectors derived from adeno-associated virus type 2 (AAV2) are promising gene delivery vehicles, but it is still challenging to get the large number of recombinant adeno-associated virus (rAAV) particles required for large animal and clinical studies. Current transfection technology requires adherent cultures of HEK 293 cells that can only be expanded by preparing multiple culture plates. A single large-scale suspension culture could replace these multiple culture preparations, but there is currently no effective co-transfection scheme for generating rAAV from cells in suspension culture. Here, we weaned HEK 293 cells to suspension culture using hydrogel-coated six-well culture plates and established an efficient transfection strategy suitable for these cells. Then the cultures were gradually scaled up. We used linear polyethylenimine (PEI) to mediate transfection and obtained high transfection efficiencies ranging from 54% to 99%, thereby allowing efficient generation of rAAV vectors. Up to 10(13) rAAV particles and, more importantly, up to 10(11) infectious particles were generated from a 2-L bioreactor culture. The suspension-transfection strategy of this study facilitates the homogeneous preparation of rAAV at a large scale, and holds further potential as the basis for establishing a manufacturing process in a larger bioreactor.

摘要

源自2型腺相关病毒(AAV2)的载体是很有前景的基因递送工具,但要获得大型动物和临床研究所需的大量重组腺相关病毒(rAAV)颗粒仍具有挑战性。当前的转染技术需要HEK 293细胞的贴壁培养,而这只能通过制备多个培养板来扩大规模。单一的大规模悬浮培养可以替代这些多次培养制备,但目前尚无有效的共转染方案用于从悬浮培养的细胞中产生rAAV。在此,我们使用水凝胶包被的六孔培养板将HEK 293细胞适应于悬浮培养,并建立了适用于这些细胞的高效转染策略。然后逐步扩大培养规模。我们使用线性聚乙烯亚胺(PEI)介导转染,获得了54%至99%的高转染效率,从而能够高效产生rAAV载体。从2-L生物反应器培养中可产生多达10^13个rAAV颗粒,更重要的是,可产生多达10^11个感染性颗粒。本研究的悬浮转染策略有助于大规模均匀制备rAAV,并作为在更大生物反应器中建立生产工艺的基础具有进一步的潜力。

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