Grzelak Adam W, Jeffkins Sarah, Luo Lan, Stilwell James, Hathcock James
Pall Europe, 5 Harbourgate Business Park, Southampton Road, Portsmouth, PO6 4BQ, UK.
Pall Corporation, 20 Walkup Dr, Westborough, Massachusetts, 01581, USA.
Biotechnol Prog. 2023 Jul-Aug;39(4):e3339. doi: 10.1002/btpr.3339. Epub 2023 Mar 20.
Irradiation sterilization of polymeric pharmaceutical processing systems and medical devices, an essential healthcare technology, is facing critical business continuity challenges, driving the need to qualify equivalent alternative irradiation technologies, such as X-ray. Whereas the underlying there is a paucity of cross-industry published data evaluating X-ray irradiation effects on plastics as compared to gamma irradiation. That leads to regulatory uncertainty in the levels of costly validation data regulators will require and overall apprehension in the rate of X-ray irradiation adoption. The present study evaluates the impact of X-ray versus gamma irradiation on a wide range of polymers with more than 36 single-use (SU) components, using a comprehensive set of industry aligned methods for characterization of bioprocess polymers. Whereas many of these techniques readily demonstrate changes in polymer properties following irradiation, all of the polymers evaluated demonstrated that the impact of X-ray irradiation was to the same degree or less as compared to gamma. Increased publication of studies evaluating the impact to polymers of X-ray versus gamma irradiation is critical to leveraging extensive, existing validation packages on bioprocess systems and medical devices obtained following gamma irradiation, and essential in qualifying X-ray irradiation as an equivalent technology (i.e., materials are impacted to the same extent or less than gamma) that can overcome business continuity challenges to ensure continued availability of critical patient therapies.
聚合物制药加工系统和医疗设备的辐照灭菌是一项重要的医疗保健技术,正面临着关键的业务连续性挑战,这促使人们需要对等效的替代辐照技术进行鉴定,例如X射线。然而,与伽马辐照相比,目前缺乏跨行业公开数据来评估X射线辐照对塑料的影响。这导致监管机构在所需的昂贵验证数据水平方面存在不确定性,以及对X射线辐照采用率的总体担忧。本研究使用一套全面的行业标准方法来表征生物工艺聚合物,评估了X射线与伽马辐照对36种以上一次性(SU)组件的多种聚合物的影响。虽然这些技术中的许多都很容易证明辐照后聚合物性能的变化,但所有评估的聚合物都表明,与伽马辐照相比,X射线辐照的影响程度相同或更小。增加评估X射线与伽马辐照对聚合物影响的研究发表,对于利用伽马辐照后获得的生物工艺系统和医疗设备上广泛的现有验证包至关重要,并且对于将X射线辐照鉴定为一种等效技术(即材料受到的影响程度与伽马辐照相同或更小)以克服业务连续性挑战以确保关键患者治疗的持续供应至关重要。