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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Novel test for microparticles in platelet-rich plasma and platelet concentrates using dynamic light scattering.
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Novel test for microparticles in platelet-rich plasma and platelet concentrates using dynamic light scattering.

机译:使用动态光散射对富含血小板的血浆和浓缩血小板中的微粒进行新颖测试。

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BACKGROUND: The level and clinical importance of platelet (PLT)-derived microparticles (PMPs) in PLT-rich plasma (PRP) and PLT transfusions is largely unknown due to the lack of technology to routinely determine the number and size of PMP in PLT samples. Dynamic light scattering (DLS) is ideally suited to measure particles of submicron size but has previously been limited to the analysis of PLT-free samples. STUDY DESIGN AND METHODS: PMPs were enumerated in 81 PRP and 79 apheresis PLT concentrate (APC) samples from the same donors using ThromboLUX (LightIntegra Technology, Inc.), a new DLS PLT quality test. The ThromboLUX results were compared with flow cytometry. Phase contrast and differential interference contrast (DIC) microscopy were used to qualitatively determine PMP levels. RESULTS: The relative counts of PMPs measured by flow cytometry strongly correlated with the relative light scattering intensities of the PMP determined by ThromboLUX in both PRP (R = 0.7596, p < 0.0001) and APC (R = 0.6572, p < 0.0001) samples. High or low PMP levels in PLT samples were confirmed by phase contrast and DIC microscopy. The mean PMP radius measured with ThromboLUX, an absolute sizing technology, was 117.1 +/- 77.6 nm as determined from the distribution of PMP content in all PLT samples investigated in this study. CONCLUSIONS: Correlation with flow cytometry and microscopy showed that ThromboLUX is well suited to measure PMP concentration and size distribution in PLT concentrate samples. In combination with noninvasive sampling, ThromboLUX could provide routine microparticle enumeration of PLT-containing samples.
机译:背景:富含PLT血浆(PRP)和PLT输血的血小板(PLT)微粒(PMP)的水平和临床重要性由于缺乏常规确定PLT样品中PMP数量和大小的技术而广为人知。动态光散射(DLS)非常适合测量亚微米尺寸的颗粒,但以前仅限于无PLT样品的分析。研究设计和方法:使用新的DLS PLT质量测试ThromboLUX(LightIntegra Technology,Inc.)在来自相同供体的81个PRP和79个单采血液成分PLT浓缩物(APC)样品中列举了PMP。将ThromboLUX结果与流式细胞仪进行比较。相差显微镜和微分干涉对比(DIC)显微镜用于定性确定PMP水平。结果:在PRP(R = 0.7596,p <0.0001)和APC(R = 0.6572,p <0.0001)样品中,通过流式细胞仪测量的PMP的相对计数与通过ThromomboLUX确定的PMP的相对光散射强度密切相关。通过相衬和DIC显微镜确认PLT样品中PMP含量高低。由绝对定径技术ThromboLUX测量的平均PMP半径为117.1 +/- 77.6 nm,这是根据本研究中研究的所有PLT样品中PMP含量的分布确定的。结论:流式细胞仪和显微镜检查的相关性表明ThromboLUX非常适合测量PLT浓缩样品中的PMP浓度和大小分布。结合无创采样,ThrombLUX可以对含PLT的样品进行常规的微粒计数。

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