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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Flow path system of ultraviolet C irradiation from xenon flash to reduce bacteria survival in platelet products containing a platelet additive solution
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Flow path system of ultraviolet C irradiation from xenon flash to reduce bacteria survival in platelet products containing a platelet additive solution

机译:Xenon Flash的紫外线辐射流动路径系统降低含有血小板添加剂溶液的血小板产品中的细菌存活

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BACKGROUND Our previous study showed that ultraviolet C (UVC) from xenon (Xe) flash without any photoreactive compounds inactivated bacteria in platelet concentrates (PCs) with less damage to platelets (PLTs) as compared with Xe flash containing ultraviolet A, ultraviolet B, and visible light. Here, we report a UVC irradiation system for PCs under flow conditions consisting of a flow path–irradiation sheet, a peristaltic pump, and a collection bag. STUDY DESIGN AND METHODS Platelet concentrates containing Ringer?s solution (R‐PCs) inoculated with bacteria were injected into a flow path sheet using a peristaltic pump, being irradiated with UVC from Xe flash. The quality of the irradiated PCs containing platelet additive solution (PAS‐PCs) was assessed based on PC variables, PLT surface markers, and aggregation ability. RESULTS Streptococcus dysgalactiae (12 tests) and Escherichia coli (11) were all negative on bacterial culture, while Staphylococcus aureus (12) and Klebsiella pneumoniae (14) grew in one and two R‐PCs, respectively. Bacillus cereus spores were inactivated in 7 of 12 R‐PCs. PC variables became significantly different between irradiated and nonirradiated PAS‐PCs. P‐selectin, first procaspase‐activating compound (PAC‐1) binding, and phosphatidylserine increased by irradiation. Aggregability stimulated by adenosine diphosphate, collagen, or thromboxane A 2 increased in the irradiated PAS‐PCs, while that by thrombin became smaller compared with nonirradiated controls. CONCLUSION This newly developed system inactivated bacteria including spores in R‐PCs. PAS‐PCs irradiated by this system retained acceptable in vitro quality and aggregability. Usage of a peristaltic pump instead of agitator during irradiation may enable this system to be directly combined with an apheresis blood cell separator.
机译:背景技术我们以前的研究表明,与含有紫外线A,紫外线A,紫外线A,紫外线A,紫外线A,紫外线A,紫外线A,紫外线A,紫外线A,紫外线和可见光。这里,我们在流动路径照射片,蠕动泵和收集袋组成的流动条件下,我们报告了用于PCS的UVC辐射系统。研究设计和方法使用蠕动泵将接种用细菌接种的林氏菌液(R-PC)的血小板浓缩物注入流动路径片中,用UVC从XE闪光辐射。基于PC变量,PLT表面标记和聚集能力评估含有血小板添加剂溶液(PAS-PC)的辐射PC的质量。结果渗透可渗透(12次测试)和大肠杆菌(11)对细菌培养物都是阴性的,而金黄色葡萄球菌(12)和Klebsiella肺炎(14)分别在一个和两个R-PC中增长。芽孢杆菌孢子在12克PCS中的7个中灭活。 PC变量在照射和非存量PAS-PC之间变得显着差异。 P-SELETIN,首批PROCASPASE-活化化合物(PAC-1)结合和磷脂酰丝氨酸通过辐射增加。在照射的PAS-PC中增加了通过腺苷二磷酸,胶原或血栓素A 2刺激的可聚合物,而通过凝血酶与非辐射对照相比,通过凝血酶变得更小。结论这种新开发的系统灭活细菌,包括R-PC中的孢子。通过该系统照射的PAS-PC保留了可接受的体外质量和可聚合性。在照射期间使用蠕动泵代替搅拌器可以使该系统直接与采血血细胞分离器直接组合。

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