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Characterization of procoagulant extracellular vesicles and platelet membrane disintegration in DMSO-cryopreserved platelets

机译:DMSO冷冻保存的血小板中促凝性细胞外囊泡的特征和血小板膜的崩解

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Background Freezing is promising for extended platelet (PLT) storage for transfusion. 6% DMSO cryopreserved PLTs (CPPs) are currently in clinical development. CPPs contain significant amount of platelet membrane vesicles (PMVs). PLT-membrane changes and PMV release in CPP are poorly understood, and haemostatic effects of CPP PMVs are not fully elucidated. This study aims to investigate PLT-membrane alterations in CPPs and provide comprehensive characterization of CPP PMVs, and their contribution to procoagulant activity (PCA) of CPPs. Methods CPPs and corresponding liquid-stored PLTs (LSPs) were characterized by flow cytometry (FC), fluorescence polarization (FP), nanoparticle tracking analysis (NTA), electron microscopy (SEM, TEM), atomic force microscopy (AFM) and thrombin-generation (TG) test. Results SEM and TEM revealed disintegration and vesiculation of the PLT-plasma membrane and loss of intracellular organization in 60% PLTs in CPPs. FP demonstrated that 6% DMSO alone and with freezing–thawing caused marked increase in PLT-membrane fluidity. The FC counts of annexin V-binding PMVs and CD41a~(+)PMVs were 68- and 56-folds higher, respectively, in CPPs than in LSPs. The AFM and NTA size distribution of PMVs in CPPs indicated a peak diameter of 100 nm, corresponding to exosome-size vesicles. TG-based PCA of CPPs was 2- and 9-folds higher per PLT and per volume, respectively, compared to LSPs. Differential centrifugation showed that CPP supernatant contributed 26% to CPP TG-PCA, mostly by the exosome-size PMVs and their TG-PCA was phosphatidylserine dependent. Conclusions Major portion of CPPs does not show activation phenotype but exhibits grape-like membrane disintegration with significant increase of membrane fluidity induced by 6% DMSO alone and further aggravated by freezing–thawing process. DMSO cryopreservation of PLTs is associated with the release of PMVs and marked increase of TG-PCA, as compared to LSPs. Exosome-size PMVs have significant contribution to PCA of CPPs.
机译:背景技术冷冻技术有望用于延长血小板(PLT)的输血保存。 6%DMSO低温保存的PLT(CPP)目前正在临床开发中。 CPP含有大量的血小板膜囊泡(PMV)。人们对CPP中PLT膜的变化和PMV的释放了解甚少,并且CPP PMV的止血作用尚未得到充分阐明。这项研究旨在调查CPPs中PLT膜的变化,并全面表征CPP PMV,及其对CPPs促凝活性(PCA)的贡献。方法通过流式细胞仪(FC),荧光偏振(FP),纳米颗粒跟踪分析(NTA),电子显微镜(SEM,TEM),原子力显微镜(AFM)和凝血酶-凝血酶对CPPs和相应的液体存储的PLT(LSP)进行表征。世代(TG)测试。结果SEM和TEM显示CPPs中60%PLTs中PLT质膜的崩解和囊泡化以及细胞内组织的丧失。 FP证明单独使用6%的DMSO并进行冻融会显着增加PLT膜的流动性。 CPP中膜联蛋白V结合PMV和CD41a〜(+)PMV的FC计数分别比LSP高68倍和56倍。 CPP中PMV的AFM和NTA大小分布表明峰直径为100 nm,对应于囊泡大小的囊泡。与LSP相比,CPP的基于TG的PCA分别高出2倍和9倍。差速离心显示,CPP上清液对CPP TG-PCA的贡献为26%,主要是由外来体大小的PMV引起的,其TG-PCA是磷脂酰丝氨酸依赖性的。结论CPP的大部分未显示活化表型,但表现为葡萄状膜崩解,仅6%DMSO引起膜流动性显着增加,而冻融过程进一步加剧。与LSP相比,DMSO的PLT冷冻保存与PMV的释放和TG-PCA的显着增加有关。外来体大小的PMV对CPP的PCA有重要贡献。

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