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用核黄素和紫外线处理的单采血小板用于病原体灭活的疗效

Efficacy of apheresis platelets treated with riboflavin and ultraviolet light for pathogen reduction.

作者信息

AuBuchon James P, Herschel Louise, Roger Jill, Taylor Harry, Whitley Pamela, Li Junzhi, Edrich Rick, Goodrich Raymond P

机构信息

Dartmouth-Hitchcock Medical Center, Lebanon, New Hampshire, USA.

出版信息

Transfusion. 2005 Aug;45(8):1335-41. doi: 10.1111/j.1537-2995.2005.00202.x.

Abstract

BACKGROUND

Pathogen reduction technologies for platelet (PLT) components offer a means to address continued viral transmission risks and imperfect bacterial detection systems. The efficacy of apheresis PLTs treated with riboflavin (vitamin B2) plus ultraviolet (UV) light (Mirasol, Navigant Biotechnologies) was investigated in a single-blind, crossover study in comparison to untreated PLTs.

STUDY DESIGN AND METHODS

Normal subjects (n = 24) donated PLTs by apheresis on two occasions at least 2 weeks apart. Units were randomized to control or test arms, the latter receiving the addition of 28 mL of 500 micromol per L B2 and exposure to 6.2 J per mL UV light. PLTs were stored for 5 days with biochemical and hematologic analyses performed before and after illumination on Day 0 and at the end of storage. An aliquot of each unit was radiolabeled and returned to determine recovery and survival.

RESULTS

The PLT content of treated units was maintained from Day 0 (4.1 x 10(11) +/- 0.4 x 10(11)) to Day 5 (4.0 x 10(11) +/- 0.4 x 10(11)). Treatment with B2 plus UV light was associated with an increase in lactate production with concomitant increases in glucose consumption. pH (control, 7.38 +/- 0.07; test, 7.02 +/- 0.10) was well maintained throughout storage. Recovery of treated PLTs (50.0 +/- 18.9%) was reduced from that of control PLTs (66.5 +/- 13.4%); survival was similarly shortened (104 +/- 26 hr vs. 142 +/- 26 h; p < 0.001).

CONCLUSIONS

PLTs treated with B2 plus UV light demonstrate some alterations in in vitro measures but retain in vitro and in vivo capabilities similar to pathogen-reduced and licensed PLT components that have been shown to have useful clinical applicability. The recovery, survival, and metabolic properties of Mirasol PLTs should provide sufficient hemostatic support in thrombocytopenia to justify patient clinical trials.

摘要

背景

血小板(PLT)成分的病原体灭活技术为解决持续存在的病毒传播风险和不完善的细菌检测系统提供了一种手段。在一项单盲、交叉研究中,与未处理的血小板相比,研究了用核黄素(维生素B2)加紫外线(UV)光处理的单采血小板(Mirasol,Navigant生物技术公司)的疗效。

研究设计与方法

正常受试者(n = 24)至少间隔2周进行两次单采血小板捐赠。将血袋随机分为对照组或试验组,试验组加入28 mL浓度为500 μmol/L的B2,并暴露于6.2 J/mL的紫外线下。血小板储存5天,在第0天光照前后及储存结束时进行生化和血液学分析。每个血袋取一份等分试样进行放射性标记,然后回输以测定回收率和存活率。

结果

处理组血袋中的血小板含量从第0天(4.1×10¹¹±0.4×10¹¹)维持到第5天(4.0×10¹¹±0.4×10¹¹)。B2加紫外线处理与乳酸生成增加及葡萄糖消耗增加相关。在整个储存过程中,pH值(对照组,7.38±0.07;试验组,7.02±0.10)保持良好。处理后的血小板回收率(50.0±18.9%)低于对照血小板(66.5±13.4%);存活率同样缩短(104±26小时对142±26小时;p < 0.001)。

结论

用B2加紫外线处理的血小板在体外检测中显示出一些改变,但在体外和体内的功能与已证明具有临床应用价值的病原体灭活且已获许可的血小板成分相似。Mirasol血小板的回收率、存活率和代谢特性应能在血小板减少症中提供足够的止血支持,从而证明有必要进行患者临床试验。

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