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应用扫描透射 X 射线显微镜鉴定人血小板中的富含钙致密颗粒。

Identification of Ca-rich dense granules in human platelets using scanning transmission X-ray microscopy.

机构信息

Department of Chemistry, College of Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea.

Center for Next Generation Cytometry, Hanyang University, Seoul 04763, Republic of Korea.

出版信息

J Synchrotron Radiat. 2020 May 1;27(Pt 3):720-724. doi: 10.1107/S1600577520002702. Epub 2020 Mar 16.

Abstract

Whole-mount (WM) platelet preparation followed by transmission electron microscopy (TEM) observation is the standard method currently used to assess dense granule (DG) deficiency (DGD). However, due to the electron-density-based contrast mechanism in TEM, other granules such as α-granules might cause false DG detection. Here, scanning transmission X-ray microscopy (STXM) was used to identify DGs and minimize false DG detection of human platelets. STXM image stacks of human platelets were collected at the calcium (Ca) L absorption edge and then converted to optical density maps. Ca distribution maps, obtained by subtracting the optical density maps at the pre-edge region from those at the post-edge region, were used to identify DGs based on the Ca richness. DGs were successfully detected using this STXM method without false detection, based on Ca maps for four human platelets. Spectral analysis of granules in human platelets confirmed that DGs contain a richer Ca content than other granules. The Ca distribution maps facilitated more effective DG identification than TEM which might falsely detect DGs. Correct identification of DGs would be important to assess the status of platelets and DG-related diseases. Therefore, this STXM method is proposed as a promising approach for better DG identification and diagnosis, as a complementary tool to the current WM TEM approach.

摘要

全血小板(WM)制备后进行透射电子显微镜(TEM)观察是目前评估致密颗粒(DG)缺乏症(DGD)的标准方法。然而,由于 TEM 中基于电子密度的对比机制,其他颗粒,如α颗粒,可能会导致错误的 DG 检测。在这里,扫描透射 X 射线显微镜(STXM)被用于鉴定 DG 并最大限度地减少人血小板中错误的 DG 检测。在钙(Ca)L 吸收边缘收集人血小板的 STXM 图像堆栈,然后将其转换为光密度图。通过从后边缘区域的光密度图中减去前边缘区域的光密度图来获得 Ca 分布图,基于 Ca 的丰富度来鉴定 DG。使用这种 STXM 方法成功地检测到了 DG,而没有假阳性检测,基于四个人类血小板的 Ca 图。对人血小板中颗粒的光谱分析证实,DG 比其他颗粒含有更丰富的 Ca 含量。与 TEM 相比,Ca 分布图更有利于有效的 DG 鉴定,因为 TEM 可能会错误地检测 DG。正确识别 DG 对于评估血小板和 DG 相关疾病的状况非常重要。因此,该 STXM 方法被提议作为一种有前途的方法,用于更好地鉴定 DG,并作为对当前 WM TEM 方法的补充工具。

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