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首页> 外文期刊>Blood coagulation & fibrinolysis: an international journal in haemostasis and thrombosis >Microparticle counts in platelet-rich and platelet-free plasma, effect of centrifugation and sample-processing protocols
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Microparticle counts in platelet-rich and platelet-free plasma, effect of centrifugation and sample-processing protocols

机译:富血小板和无血小板血浆中的微粒计数,离心作用和样品处理方案的影响

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This study provides the first estimates of microparticle numbers in platelet-rich plasma (PRP) from normal individuals, closer to in-vivo levels, using higher-resolution flow cytometry. We measured platelet (CD41+) and annexin V+ microparticles in fresh and frozen aliquots of PRP, platelet-poor plasma, platelet-free plasma (PFP), and microparticles isolated by high-speed centrifugation. PRP from healthy individuals contained 730a?? 000/??l total microparticles based on light-scattering measurements. A median of 27a??000/??l microparticles in PRP were of platelet origin and 120a??000/??l annexin V+, and of these, 24a??000/??l were dual-positive procoagulant platelet microparticles. Double centrifugation of PRP removed 99% of platelets, but also 80% of annexin V+ CD41+, 93% of annexin V+ CD41-, and 58% of annexin V- CD41+ microparticles. Loss of microparticles with centrifugation varied from individual to individual. Microparticle counts after isolation by centrifugation and double washing were not significantly different than counts in the original PFP sample, but lower than in PRP. Freeze-thawing of PFP had no effect on platelet microparticle counts, but slightly increased annexin V+, CD41- counts. Freeze-thawing of isolated washed microparticles resulted in a 30-50% increase in annexin V+ microparticles. PRP contains large numbers of cellular microparticles, including platelet and annexin V+ microparticles, which are lost to varying degrees when PRP is double centrifuged to remove platelets. Microparticles remaining in PFP can be recovered by high-speed centrifugation without loss compared to the original PFP sample. Freeze-thawing has variable effects on microparticle counts depending on the sample preparation used. ? 2013 Wolters Kluwer Health Lippincott Williams & Wilkins.
机译:这项研究使用更高分辨率的流式细胞术提供了来自正常个体的更接近体内水平的富血小板血浆(PRP)中微粒数量的首次估计。我们在新鲜和冷冻的PRP等分试样,贫血小板血浆,无血小板血浆(PFP)和通过高速离心分离的微粒中测量了血小板(CD41 +)和膜联蛋白V +微粒。来自健康个体的PRP含有730a?基于光散射测量的总微粒为000 /?l。 PRP中的中位数为27a ?? 000 /?l的微粒是血小板起源的,中位数为120a ?? 000 /?l的膜联蛋白V +,其中24a?000000 /?l的是双重阳性促凝血小板微粒。 PRP的双重离心去除了99%的血小板,但也去除了80%的膜联蛋白V + CD41 +,93%的膜联蛋白V + CD41-和58%的膜联蛋白V- CD41 +微粒。离心损失的微粒因个体而异。通过离心和两次清洗分离后的微粒计数与原始PFP样品中的计数没有显着差异,但低于PRP中的计数。 PFP的冻融对血小板微粒计数没有影响,但是膜联蛋白V +和CD41-计数略有增加。分离的洗涤过的微粒的冻融导致膜联蛋白V +微粒增加30-50%。 PRP包含大量细胞微粒,包括血小板和膜联蛋白V +微粒,当将PRP双重离心以除去血小板时,它们会以不同程度丢失。与原始PFP样品相比,可以通过高速离心回收保留在PFP中的微粒而不会损失。冻融对微粒数量的影响取决于所使用的样品制备方法。 ? 2013 Wolters Kluwer Health Lippincott Williams&Wilkins。

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