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Photodynamic pathogen inactivation in red cell concentrates with the silicon phthalocyanine Pc 4

机译:用硅酞菁PC 4中红细胞浓缩物中的光动力病原体灭活

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The silicon phthalocyanine Pc 4, a photosensitizer activated with red light, has been studied for pathogen inactivation in red blood cell concentrates (RBCC). Pc 4 targets the envelope of pathogenic viruses such as HIV. To protect RBC during the process two main approaches are used: 1) Inclusion of quenches of reactive oxygen species produced during treatment. Tocopherol succinate was found to be most effective for this purpose. 2) Formulation of Pc 4, a lipophilic compound, in liposomes that reduce its binding to RBC but not to viruses. As a light source we used a light emitting diode array emitting at 660-680 nm. An efficient mixing device ensures homogeneous light exposure during treatment of intact RBCC. Treatment of RBCC with 5 $mu@M Pc 4 a d light results in the inactivation of $GREQ 5.5 log$- 10$/ HIV, $GREQ 6.6 log$-10$/ VSV, and $GREQ 5 log$-10$/ of PRV and BVDV. Parasites that can be transmitted by blood transfusion are even more sensitive than viruses. Following treatment, RBCC can be stored for 28 days at 4 degrees C with hemolysis below 1 percent. Baboon RBC circulate with an acceptable 24 hour recovery and half-life. Genetic toxicological studies of Pc 4 with or without light exposure are negative. We conclude that a process using Pc 4 and red light can potentially reduce the risk of transmitting pathogens in RBCC used for transfusion.
机译:已经研究了红细胞浓缩物(RBCC)的病原体失活的硅酞菁PC 4,用红光激活的光敏剂。 PC 4针对致病病毒如艾滋病毒的包络。为了保护RBC在过程中,使用两种主要方法:1)包含在处理期间产生的反应性氧物种的淬火。发现生育酚琥珀酸盐对此目的是最有效的。 2)PC 4的配方,脂质体,脂质体,减少其与RBC的结合但不是病毒。作为光源,我们使用了在660-680nm发射的发光二极管阵列。一种有效的混合装置可确保在处理完整的RBCC期间均匀的曝光。 RBCC处理5 $ MU @ M PC 4 AD光导致$ GREQ 5.5日志$ - 10 $ / HIV,$ GREQ 6.6日志$ -10 $ / VSV,以及$ GREQ 5日志$ -10 $ / PRV和BVDV。可以通过输血传递的寄生虫比病毒更敏感。处理后,RBCC可以在4℃下储存28天,溶血低于1%。狒狒rbc循环,伴随着可接受的24小时恢复和半衰期。 PC 4的遗传毒理学研究有或没有曝光的曝光率为阴性。我们得出结论,使用PC 4和红光的过程可能会降低用于输血的RBCC中传输病原体的风险。

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