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用于血小板储存期间去污的抗菌蓝光

Antimicrobial blue light for decontamination of platelets during storage.

作者信息

Lu Min, Dai TianHong, Hu SiSi, Zhang Qi, Bhayana Brijesh, Wang Li, Wu Mei X

机构信息

Department of Dermatology, Harvard Medical School, Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, Massachusetts.

出版信息

J Biophotonics. 2020 Jan;13(1):e201960021. doi: 10.1002/jbio.201960021. Epub 2019 Aug 29.

DOI:10.1002/jbio.201960021
PMID:31407467
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7083650/
Abstract

Platelet (PLT) storage is currently limited to 5 days in clinics in the United States, in part, due to an increasing risk for microbial contamination over time. In light of well-documented antimicrobial activity of blue light (405-470 nm), we investigated potentials to decontaminate microbes during PLT storage by antimicrobial blue light (aBL). We found that PLTs produced no detectable levels of porphyrins or their derivatives, the chromophores that specifically absorb blue light, in marked contrast to microbes that generated porphyrins abundantly. The difference formed a basis with which aBL selectively inactivated contaminated microbes prior to and during the storage, without incurring any harm to PLTs. In accordance with this, when contamination with representative microbes was simulated in PLT concentrates supplemented with 65% of PLT additive solution in a standard storage bag, all "contaminated" microbes tested were completely inactivated after exposure of the bag to 405 nm aBL at 75 J/cm only once. While killing microbes efficiently, this dose of aBL irradiation exerted no adverse effects on the viability, activation or aggregation of PLTs ex vivo and could be used repeatedly during PLT storage. PLT survival in vivo was also unaltered by aBL irradiation after infusion of aBL-irradiated mouse PLTs into mice. The study provides proof-of-concept evidence for a potential of aBL to decontaminate PLTs during storage.

摘要

在美国的临床实践中,血小板(PLT)的储存目前限制在5天,部分原因是随着时间的推移,微生物污染的风险增加。鉴于蓝光(405 - 470nm)具有充分记录的抗菌活性,我们研究了通过抗菌蓝光(aBL)在PLT储存期间对微生物进行去污的潜力。我们发现,与大量产生卟啉的微生物形成鲜明对比的是,PLT不会产生可检测水平的卟啉或其衍生物,而卟啉是专门吸收蓝光的发色团。这种差异构成了一个基础,基于此aBL在储存之前和期间选择性地灭活受污染的微生物,而不会对PLT造成任何损害。据此,当在标准储存袋中用65%的PLT添加剂溶液补充的PLT浓缩物中模拟代表性微生物的污染时,仅将袋子暴露于405nm的aBL,能量密度为75J/cm²一次后,所有测试的“受污染”微生物均被完全灭活。在有效杀灭微生物的同时,这种剂量的aBL照射对体外PLT的活力、活化或聚集没有产生不利影响,并且可以在PLT储存期间重复使用。将经aBL照射的小鼠PLT输注到小鼠体内后,aBL照射也未改变PLT在体内的存活情况。该研究为aBL在储存期间对PLT进行去污的潜力提供了概念验证证据。

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本文引用的文献

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Platelet enhancement of bacterial growth during room temperature storage: mitigation through refrigeration.室温储存期间血小板对细菌生长的促进作用:通过冷藏减轻
Transfusion. 2019 Apr;59(S2):1479-1489. doi: 10.1111/trf.15255.
2
Cryopreservation of UVC pathogen-inactivated platelets.UVC 病原体失活血小板的冷冻保存。
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3
Bacterial contamination of platelets for transfusion: strategies for prevention.血小板输注的细菌污染:预防策略。
Crit Care. 2018 Oct 27;22(1):271. doi: 10.1186/s13054-018-2212-9.
4
A comparison of different methods of red blood cell leukoreduction and additive solutions on the accumulation of neutrophil-priming activity during storage.不同红细胞白细胞去除方法及添加剂溶液对储存期间中性粒细胞启动活性积累的比较。
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Evaluation of 405-nm monochromatic light for inactivation of Tulane virus on blueberry surfaces.评估 405nm 单色光对蓝莓表面图兰病毒的灭活效果。
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Determining the inventory impact of extended-shelf-life platelets with a network simulation model.使用网络模拟模型确定延长保存期限血小板的库存影响。
Transfusion. 2017 Dec;57(12):3001-3008. doi: 10.1111/trf.14305. Epub 2017 Sep 6.
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New Proof-of-Concept in Viral Inactivation: Virucidal Efficacy of 405 nm Light Against Feline Calicivirus as a Model for Norovirus Decontamination.病毒灭活的新概念验证:405纳米光对猫杯状病毒的杀病毒效果作为诺如病毒去污模型
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