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首页> 外文期刊>Bulletin of the Korean Chemical Society >Synchrotron-based Transmission X-ray Microscopy (TXM) Observations of Fully Hydrated Blood Platelets and Their Activation Process
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Synchrotron-based Transmission X-ray Microscopy (TXM) Observations of Fully Hydrated Blood Platelets and Their Activation Process

机译:完全水合血小板的基于同步加速器的透射X射线显微镜(TXM)观察及其激活过程

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摘要

Platelets are anuclear discoid-shaped blood cells with key roles in human body. To understand the mechanisms of their activation process, it is required to have analytical imaging techniques capable of acquiring platelet images under fully hydrated conditions. Herein, for the first time, we demonstrate the capability of synchrotron-based transmission X-ray microscopy (TXM) to study platelets (resting and ADP activated) under hydrated and air-dried conditions. To confirm the biological imaging capability of TXM, fixed platelets were imaged and compared with whole mount electron microscopy (EM) images. TXM provided morphological information with sufficient spatial resolution with simple and quick sample preparation procedure. We also observed temporal changes during the platelet activation, which initially had a discoid shape (0 s), formed pseudopodia (30 s) and generated a network of fibrin (5 min). Our results clearly demonstrate the potential of TXM technique to study fully hydrated biological samples under in situ conditions.
机译:血小板是无核盘状血细胞,在人体中起关键作用。为了了解其激活过程的机制,需要具有能够在完全水合条件下获取血小板图像的分析成像技术。在此,我们首次展示了基于同步加速器的透射X射线显微镜(TXM)在水合和风干条件下研究血小板(静息和ADP活化)的能力。为了确认TXM的生物成像能力,对固定的血小板成像并与全电子显微镜(EM)图像进行比较。 TXM提供了具有足够空间分辨率的形态信息,并具有简单,快速的样品制备程序。我们还观察到了血小板活化过程中的时间变化,该过程最初是盘状形状(0 s),形成了伪足(30 s)并产生了纤维蛋白网络(5分钟)。我们的结果清楚地证明了TXM技术在原位条件下研究完全水合的生物样品的潜力。

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