Lin L, Wiesehahn G P, Morel P A, Corash L
Diamond Scientific Company, Des Moines.
Blood. 1989 Jul;74(1):517-25.
Transmission of viral diseases through blood products remains an unsolved problem in transfusion medicine. We have developed a psoralen photochemical system for decontamination of platelet concentrates in which platelets are treated with long wavelength ultraviolet radiation (UVA, 320-400 nm) in the presence of 8-methoxypsoralen (8-MOP). Bacteria, RNA viruses, and DNA viruses ranging in genome size from 1.2 x 10(6) daltons, encompassing the size range of human pathogens, were inoculated into platelet concentrates and subjected to treatment. This system inactivated 25 to 30 logs/h of bacteria Escherichia coli or Staphylococcus aureus, 6 logs/h of bacteriophage fd, 0.9 log/h of bacteriophage R17 and 1.1 logs/h of feline leukemia virus (FeLV) in platelet concentrates maintained in standard storage bags. Platelet integrity and in vitro function before, immediately following photochemical treatment, and during prolonged storage after treatment, were evaluated by measuring: (1) extracellular pH; (2) platelet yields; (3) extracellular lactate dehydrogenase (LDH) levels; (4) platelet morphology; (5) platelet aggregation responsiveness; (6) thromboxane beta-2 (TXB-2) production; (7) dense body secretion; and (8) alpha granule secretion. These assays demonstrated that this photochemical inactivation system inactivated bacteria and viruses in platelet concentrates with minimal adverse effects on the in vitro function of platelets in comparison to untreated control concentrates maintained under current, standard blood bank conditions.
通过血液制品传播病毒性疾病仍是输血医学中一个尚未解决的问题。我们开发了一种补骨脂素光化学系统用于浓缩血小板的去污处理,该系统是在8-甲氧基补骨脂素(8-MOP)存在的情况下,用长波长紫外线(UVA,320 - 400纳米)处理血小板。将基因组大小从1.2×10⁶道尔顿不等、涵盖人类病原体大小范围的细菌、RNA病毒和DNA病毒接种到浓缩血小板中并进行处理。在标准储存袋保存的浓缩血小板中,该系统每小时能灭活25至30个对数级的大肠杆菌或金黄色葡萄球菌、6个对数级的fd噬菌体、0.9个对数级的R17噬菌体以及1.1个对数级的猫白血病病毒(FeLV)。通过测量以下指标评估光化学处理前、处理后即刻以及处理后长期储存期间血小板的完整性和体外功能:(1)细胞外pH值;(2)血小板回收率;(3)细胞外乳酸脱氢酶(LDH)水平;(4)血小板形态;(5)血小板聚集反应性;(6)血栓素β-2(TXB-2)生成;(7)致密体分泌;以及(8)α颗粒分泌。这些检测表明,与在当前标准血库条件下保存的未处理对照浓缩血小板相比,这种光化学灭活系统能灭活浓缩血小板中的细菌和病毒,同时对血小板的体外功能产生最小的不利影响。