Dept. of Process Development Engineering, Genentech, 1 DNA Way, South San Francisco, CA, 94080.
Biotechnol Prog. 2013 Nov-Dec;29(6):1535-49. doi: 10.1002/btpr.1802. Epub 2013 Sep 30.
The use of disposable bags for cell culture media storage has grown significantly in the past decade. Some of the key advantages of using disposable bags relative to non-disposable containers include increased product throughput, decreased cleaning validation costs, reduced risk of cross contamination and lower facility costs. As the scope of use of disposable bags for cell culture applications increases, problematic bags and scenarios should be identified and addressed to continue improving disposables technologies and meet the biotech industry's needs. In this article, we examine a cell culture application wherein media stored in disposable bags is warmed at 37°C before use for cell culture operations. A problematic bag film was identified through a prospective and retrospective cell culture investigation. The investigation provided information on the scope and variation of the issue with respect to different Chinese hamster ovary (CHO) cell lines, cell culture media, and application-specific parameters. It also led to the development of application-specific test methods and enabled a strategy for disposable bag film testing. The strategy was implemented for qualifying an alternative bag film for use in our processes. In this test strategy, multiple lots of 13 bag film types, encompassing eight vendors were evaluated using a three round, cell culture-based test strategy. The test strategy resulted in the determination of four viable bag film options based on the technical data. The results of this evaluation were used to conclude that a volatile or air-quenched compound, likely generated by gamma irradiation of the problematic bag film, negatively impacted cell culture performance.
在过去的十年中,一次性袋子在细胞培养基储存方面的使用显著增加。与非一次性容器相比,使用一次性袋子的一些主要优点包括提高产品通量、降低清洗验证成本、降低交叉污染风险和降低设施成本。随着一次性袋子在细胞培养应用中的使用范围的扩大,应该识别和解决有问题的袋子和情况,以继续改进一次性技术并满足生物技术行业的需求。在本文中,我们研究了一种细胞培养应用,其中在用于细胞培养操作之前,将储存在一次性袋子中的培养基在 37°C 下加热。通过前瞻性和回顾性细胞培养调查,确定了一个有问题的袋子薄膜。该调查提供了关于不同中国仓鼠卵巢(CHO)细胞系、细胞培养基和特定应用参数的问题范围和变化的信息。它还导致了特定应用测试方法的开发,并为一次性袋子薄膜测试制定了策略。该策略已用于为我们的工艺中使用替代的袋子薄膜进行资格认证。在这个测试策略中,使用基于细胞培养的三轮测试策略评估了 13 种袋子薄膜类型的多个批次,涵盖了 8 个供应商。该测试策略根据技术数据确定了四个可行的袋子薄膜选择。该评估的结果用于得出结论,挥发性或空气淬火化合物,可能是由有问题的袋子薄膜的伽马辐照产生的,对细胞培养性能产生负面影响。