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Biomolecular Consequences of Platelet Pathogen Inactivation Methods

机译:血小板病原体灭活方法的生物分子后果

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Pathogen inactivation (PI) for platelet concentrates (PC) is a fairly recent development in transfusion medicine that is intended to decrease infectious disease transmission from the donor to the receiving patient Effective inactivation of viruses, bacteria and eukaryotic parasites adds a layer of safety, protecting the blood supply against customary and emerging pathogens. Three PI methods have been described for platelets. These are based on photochemical damage of nucleic acids which prevents replication of most infectious pathogens and contaminating donor leukocytes. Because platelets do not replicate, the collateral damage to platelet function is considered low to non-existing. This is disputable however because photochemistry is not specific for nucleic acids and significantly affects platelet biomolecules as well. The impact of these biomolecular changes on platelet function and hemostasis is not well understood, but is increasingly being studied. The results of these studies can help explain current and future clinical observations with PI platelets, including the impact on transfusion yield and bleeding. This review summarizes the biomolecular effects of PI treatment on platelets. We conclude that despite a comparable principle of photochemical inactivation, all three methods affect platelets in different ways. This knowledge can help blood banks and transfusion specialists to guide their choice when considering the implementation or clinical use of PI treated platelets. (C) 2018 The Authors. Published by Elsevier Inc.
机译:用于血小板浓缩物(PC)的病原体灭活(PI)是输血药物的相当近期发育,旨在降低来自供体的传染病传播到接受患者的病毒,细菌和真核生物寄生虫添加一层安全性,保护血液供应对抗习惯性和新兴病原体。已经针对血小板描述了三种PI方法。这些是基于核酸的光化学损伤,这防止了最传染性病原体和污染的供体白细胞的复制。因为血小板没有复制,所以对血小板函数的抵消损坏被认为是不存在的。然而,这是争议的,因为光化学不是特异性的核酸并且也显着影响血小板生物分子。这些生物分子变化对血小板函数和止血的影响尚不清楚,但越来越多地研究。这些研究的结果可以帮助解释具有PI血小板的当前和未来的临床观察,包括对输血产量和出血的影响。本综述总结了PI治疗对血小板的生物分子效应。我们得出结论,尽管采用光化学灭活原理,但所有三种方法都会以不同方式影响血小板。这些知识可以帮助血库和输血专家指导他们的选择,以便在考虑PI处理的血小板的实施或临床上使用时。 (c)2018作者。 elsevier公司发布

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