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A New Proof of Concept in Bacterial Reduction: Antimicrobial Action of Violet-Blue Light (405 nm) in Ex Vivo Stored Plasma

机译:减少细菌的新概念证明:体外存储血浆中的紫蓝光(405 nm)的抗菌作用

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摘要

Bacterial contamination of injectable stored biological fluids such as blood plasma and platelet concentrates preserved in plasma at room temperature is a major health risk. Current pathogen reduction technologies (PRT) rely on the use of chemicals and/or ultraviolet light, which affects product quality and can be associated with adverse events in recipients. 405 nm violet-blue light is antibacterial without the use of photosensitizers and can be applied at levels safe for human exposure, making it of potential interest for decontamination of biological fluids such as plasma. As a pilot study to test whether 405 nm light is capable of inactivating bacteria in biological fluids, rabbit plasma and human plasma were seeded with bacteria and treated with a 405 nm light emitting diode (LED) exposure system (patent pending). Inactivation was achieved in all tested samples, ranging from low volumes to prebagged plasma. 99.9% reduction of low density bacterial populations (≤103 CFU mL−1), selected to represent typical “natural” contamination levels, was achieved using doses of 144 Jcm−2. The penetrability of 405 nm light, permitting decontamination of prebagged plasma, and the nonrequirement for photosensitizing agents provide a new proof of concept in bacterial reduction in biological fluids, especially injectable fluids relevant to transfusion medicine.
机译:室温下保存在血浆中的可注射存储的生物液体(例如血浆和浓缩血小板)的细菌污染是主要的健康风险。当前的病原体减少技术(PRT)依赖于化学药品和/或紫外线的使用,这会影响产品质量,并可能与接受者的不良事件相关。 405 nm的紫蓝光无需使用光敏剂即可具有抗菌作用,并且可以以对人体暴露无害的水平使用,使其成为对诸如血浆等生物流体进行净化的潜在关注点。为了测试405 nm的光是否能够使生物液体中的细菌失活,该实验为兔子血浆和人血浆注入了细菌,并用405 nm发光二极管(LED)曝光系统进行了处理(专利申请中)。从低容量到预先装袋的血浆,所有测试样品均实现了灭活。低剂量细菌种群(≤10 3 CFU mL -1 )减少了99.9%,被选择为典型的“自然”污染水平,使用144 Jcm < sup> -2 。 405 nm光的穿透性允许对预先装袋的血浆进行净化,并且无需使用光敏剂,这为减少生物液体(尤其是与输注药物有关的可注射液体)中的细菌提供了新的概念证明。

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