ten23 health AG, Mattenstrasse 22, 4058 Basel, Switzerland; Institute of Pharmaceutical Technology, Goethe University Frankfurt, Max-von-Laue-Strasse 9, 60438 Frankfurt am Main, Germany.
ten23 health AG, Mattenstrasse 22, 4058 Basel, Switzerland; Institute of Pharmaceutical Technology, Goethe University Frankfurt, Max-von-Laue-Strasse 9, 60438 Frankfurt am Main, Germany; Department Pharmaceutical Sciences, University of Basel, Klingelbergstrasse 50, 4056 Basel, Switzerland.
Eur J Pharm Biopharm. 2024 Oct;203:114427. doi: 10.1016/j.ejpb.2024.114427. Epub 2024 Jul 31.
Biological drug substance (DS) is typically stored frozen to increase stability. However, freezing and thawing (F/T) of DS can impact product quality and therefore F/T processes need to be controlled. Because active F/T systems for DS bottles are lacking, freezing is often performed uncontrolled in conventional freezers, and thawing at ambient temperature or using water baths. In this study, we evaluated a novel device for F/T of DS in bottles, which can be operated in conventional freezers, generating a directed air stream around bottles. We characterized the F/T geometry and process performance in comparison to passive F/T using temperature mapping and analysis of concentration gradients. The device was able to better control the F/T process by inducing directional bottom-up F/T. As a result, it reduced cryo-concentration during freezing as well as ice mound formation. However, freezing with the device was dependent on freezer performance, i.e. prolonged process times in a highly loaded freezer were accompanied by increased cryo-concentrations. Thawing was faster compared to without the device, but had no impact on concentration gradients and was slower compared to thawing in a water bath. High-performance freezers might be required to fully exploit the potential of directional freezing with this device and allow F/T process harmonization and scaling across sites.
生物药物物质(DS)通常储存在冷冻状态下以提高稳定性。然而,DS 的冷冻和解冻(F/T)会影响产品质量,因此需要控制 F/T 过程。由于缺乏用于 DS 瓶的主动 F/T 系统,因此通常在常规冷冻器中不受控制地进行冷冻,并且在环境温度下或使用水浴进行解冻。在这项研究中,我们评估了一种用于 DS 瓶 F/T 的新型设备,该设备可以在常规冷冻器中运行,在瓶子周围产生定向气流。我们通过温度映射和浓度梯度分析来比较被动 F/T 来描述 F/T 几何形状和工艺性能。该设备通过诱导定向自下而上的 F/T 更好地控制了 F/T 过程。结果,它减少了冷冻过程中的冷冻浓缩以及冰丘的形成。然而,使用该设备进行冷冻取决于冷冻器的性能,即在负载较高的冷冻器中延长处理时间会导致冷冻浓缩增加。与没有该设备相比,解冻速度更快,但对浓度梯度没有影响,并且比在水浴中解冻速度更慢。可能需要高性能的冷冻器来充分利用该设备的定向冷冻潜力,并允许在各个站点实现 F/T 过程的协调和扩展。