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EDTA 可在采血和处理过程中稳定血小板衍生细胞外囊泡的浓度。

EDTA stabilizes the concentration of platelet-derived extracellular vesicles during blood collection and handling.

机构信息

Department of Neurology, Amsterdam UMC, University of Amsterdam, The Netherlands.

Biomedical Engineering & Physics, Amsterdam UMC, University of Amsterdam, The Netherlands.

出版信息

Platelets. 2022 Jul 4;33(5):764-771. doi: 10.1080/09537104.2021.1991569. Epub 2021 Oct 26.

Abstract

Citrate is the recommended anticoagulant for studies on plasma extracellular vesicles (EVs). Because citrate incompletely blocks platelet activation and the release of platelet-derived EVs, we compared EDTA and citrate in that regard. Blood from healthy individuals (n = 7) was collected and incubated with thrombin receptor-activating peptide-6 (TRAP-6) to activate platelets, subjected to pneumatic tube transportation (n = 6), a freeze-thaw cycle (n = 10), and stored before plasma preparation (n = 6). Concentrations of EVs from platelets (CD61), activated platelets (-selectin), erythrocytes (CD235a), and leukocytes (CD45) were measured by flow cytometry. Concentrations of EVs from platelets and activated platelets increased 1.4-fold and 1.9-fold in EDTA blood upon platelet activation, and 4.2-fold and 9.6-fold in citrate blood. Platelet EV concentrations were unaffected by pneumatic tube transport in EDTA blood but increased in citrate blood, and EV concentrations of erythrocytes and leukocytes were comparable. The stability of EVs during a freeze-thaw cycle was comparable for both anticoagulants. Finally, the concentration of platelet EVs was stable during storage of EDTA blood for six hours, whereas this concentration increased 1.5-fold for citrate blood. Thus, EDTA improves the robustness of studies on plasma EVs.

摘要

柠檬酸盐是研究血浆细胞外囊泡(EVs)的推荐抗凝剂。由于柠檬酸盐不能完全抑制血小板的激活和血小板衍生 EVs 的释放,因此我们在这方面比较了 EDTA 和柠檬酸盐。采集健康个体的血液(n=7),用血栓酶受体激活肽-6(TRAP-6)孵育以激活血小板,进行气动管运输(n=6)、冻融循环(n=10),并在血浆制备前储存(n=6)。通过流式细胞术测量血小板(CD61)、活化血小板(-选择素)、红细胞(CD235a)和白细胞(CD45)来源的 EV 浓度。在血小板激活后,EDTA 血液中的血小板和活化血小板来源的 EV 浓度分别增加了 1.4 倍和 1.9 倍,而在柠檬酸盐血液中分别增加了 4.2 倍和 9.6 倍。在 EDTA 血液中,气动管运输对血小板 EV 浓度没有影响,但在柠檬酸盐血液中增加,红细胞和白细胞的 EV 浓度相当。两种抗凝剂在冻融循环过程中 EVs 的稳定性相当。最后,在 EDTA 血液储存 6 小时期间,血小板 EV 浓度稳定,而在柠檬酸盐血液中,浓度增加了 1.5 倍。因此,EDTA 提高了血浆 EVs 研究的稳健性。

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