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THERAFLEX UV-Platelets 病原体灭活系统对血小板浓缩物的细菌灭活作用。

Bacterial inactivation of platelet concentrates with the THERAFLEX UV-Platelets pathogen inactivation system.

机构信息

German Red Cross Blood Service NSTOB, Institute Springe, Springe, Germany.

出版信息

Transfusion. 2019 Apr;59(4):1324-1332. doi: 10.1111/trf.15119. Epub 2018 Dec 26.

Abstract

BACKGROUND

The THERAFLEX UV-Platelets system (Maco Pharma) uses ultraviolet C (UVC) light for pathogen inactivation (PI) of platelet concentrates (PCs) without any additional photoactive compound. The aim of the study was to systematically investigate bacterial inactivation with this system under conditions of intended use.

STUDY DESIGN AND METHODS

The robustness of the system was evaluated by assessing its capacity to inactivate high concentrations of different bacterial species in accordance with World Health Organization guidelines. The optimal use of the PI system was explored in time-to-treatment experiments by testing its ability to sterilize PCs contaminated with low levels of bacteria on the day of manufacture (target concentration, 100 colony-forming units/unit). The bacteria panel used for spiking experiments in this study included the World Health Organization International Repository Platelet Transfusion Relevant Reference Strains (n = 14), commercially available strains (n = 13), and in-house clinical isolates (n = 2).

RESULTS

Mean log reduction factors after UVC treatment ranged from 3.1 to 7.5 and varied between different strains of the same species. All PCs (n = 12/species) spiked with up to 200 colony-forming units/bag remained sterile until the end of storage when UVC treated 6 hours after spiking. UVC treatment 8 hours after spiking resulted in single breakthrough contaminations with the fast-growing species Escherichia coli and Streptococcus pyogenes.

CONCLUSION

The UVC-based THERAFLEX UV-Platelets system efficiently inactivates transfusion-relevant bacterial species in PCs. The comprehensive data from this study may provide a valuable basis for the optimal use of this UVC-based PI system.

摘要

背景

THERAFLEX UV-Platelets 系统(Maco Pharma)使用紫外线 C(UVC)光对血小板浓缩物(PCs)进行病原体灭活(PI),而无需任何额外的光活性化合物。本研究的目的是在预期使用条件下系统地研究该系统对细菌的灭活效果。

研究设计和方法

按照世界卫生组织的指南评估该系统的鲁棒性,评估其灭活高浓度不同细菌物种的能力。通过测试其在制造当天对低水平污染的 PCs 进行灭菌的能力,探索 PI 系统的最佳使用方法,目标浓度为 100 个菌落形成单位/单位。本研究中用于接种实验的细菌面板包括世界卫生组织国际血小板输血相关参考菌株库(n = 14)、市售菌株(n = 13)和内部临床分离株(n = 2)。

结果

UVC 处理后的平均对数减少因子范围为 3.1 至 7.5,且在同一物种的不同菌株之间有所差异。当 UVC 在接种后 6 小时处理时,所有接种高达 200 个菌落形成单位/袋的 PCs(n = 12/物种)在储存结束时仍保持无菌。当 UVC 在接种后 8 小时处理时,快速生长的细菌物种大肠杆菌和化脓性链球菌会出现单个突破污染。

结论

基于 UVC 的 THERAFLEX UV-Platelets 系统可有效灭活 PCs 中的输血相关细菌物种。本研究的全面数据可为最佳使用该基于 UVC 的 PI 系统提供有价值的基础。

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