Hirohata Kiichi, Kino Shinichiro, Yamane Takuya, Bandoh Karin, Bamba Takeshi, Sternisha Shawn M, Torisu Tetsuo, Fukuhara Mitsuko, Yamaguchi Yuki, Uchiyama Susumu
Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Institute of Metabolomics, BYU-Analytica Inc., Suita, Osaka, 565-0871, Japan.
Eur Biophys J. 2025 May 19. doi: 10.1007/s00249-025-01751-1.
Recombinant adeno-associated virus (rAAV) has been widely used as an effective delivery tool in gene therapy. One of the challenges facing the production of high-quality rAAV is optimization of the production and purification methodologies. Cesium chloride density gradient ultracentrifugation (CsCl-DGUC) has been traditionally utilized for rAAV purification; however, few studies have focused on CsCl-DGUC for rAAV purification despite this technique having a great potential for clinical-grade or large-scale rAAV production. In this study, we aimed to explore the unaddressed challenges associated with rAAV purification using CsCl-DGUC. We clarified that AAV capsids assembled by the different stoichiometries of three viral proteins (VP1, VP2, and VP3) showed heterogeneous population in the CsCl density gradient and encapsidated DNA increased the buoyant density differences of these capsids, resulting in the wider distribution. We implemented CsCl-DGUC using a vertical rotor which improved throughput and enhanced the separation of desired AAV particles from impurities. Furthermore, we examined the effect of CsCl exposure during purification, and the presence of residual CsCl in the purified rAAV. This study provides valuable insights into the application of CsCl-DGUC in the manufacturing of rAAV while ensuring adequate efficacy and safety for gene therapy.
重组腺相关病毒(rAAV)已被广泛用作基因治疗中的有效递送工具。生产高质量rAAV面临的挑战之一是优化生产和纯化方法。传统上,氯化铯密度梯度超速离心(CsCl-DGUC)用于rAAV纯化;然而,尽管该技术在临床级或大规模rAAV生产方面具有巨大潜力,但很少有研究关注CsCl-DGUC用于rAAV纯化。在本研究中,我们旨在探索与使用CsCl-DGUC进行rAAV纯化相关的未解决挑战。我们阐明,由三种病毒蛋白(VP1、VP2和VP3)的不同化学计量组装而成的AAV衣壳在CsCl密度梯度中表现出异质性群体,并且衣壳内包裹的DNA增加了这些衣壳的浮力密度差异,导致分布更宽。我们使用垂直转子进行CsCl-DGUC,提高了通量并增强了所需AAV颗粒与杂质的分离。此外,我们研究了纯化过程中CsCl暴露的影响以及纯化的rAAV中残留CsCl的存在。本研究为CsCl-DGUC在rAAV制造中的应用提供了有价值的见解,同时确保了基因治疗的足够疗效和安全性。