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揭示人类肾细胞癌的三维微观结构。

Revealing the Microscopic Structure of Human Renal Cell Carcinoma in Three Dimensions.

出版信息

IEEE Trans Med Imaging. 2020 May;39(5):1494-1500. doi: 10.1109/TMI.2019.2952028. Epub 2019 Nov 6.

Abstract

For fully characterizing renal cell carcinoma (RCC), information about the 3D tissue microstructure is essential. Histopathology, which represents the current diagnostic gold standard, is destructive and only provides 2D information. 3D X-ray histology endeavors to overcome these limitations by generating 3D data. In a laboratory environment, most techniques struggle with limited resolution and the weak X-ray attenuation contrast of soft tissue. We recently developed a laboratory-based method combining nanoscopic X-ray CT with a cytoplasm-specific X-ray stain. Here, we present the application of this method to human RCC biopsies. The NanoCT slices enable pathological characterization of crucial structures by reproducing tissue morphology with a similar detail level as corresponding histological light microscopy images. Beyond that, our data offer deeper insights into the 3D configuration of the tumor. By demonstrating the compatibility of the X-ray stain with standard pathological stains, we highlight the feasibility of integrating staining based NanoCT into the pathological routine.

摘要

为了全面描述肾细胞癌(RCC),有关 3D 组织微观结构的信息是必不可少的。组织病理学是目前的诊断金标准,但它具有破坏性,只能提供 2D 信息。3D 射线组织学通过生成 3D 数据来努力克服这些限制。在实验室环境中,大多数技术都受到分辨率有限和软组织 X 射线衰减对比度弱的困扰。我们最近开发了一种基于实验室的方法,将纳米级 X 射线 CT 与细胞质特异性 X 射线染色相结合。在这里,我们将该方法应用于人类 RCC 活检。纳米 CT 切片通过以与相应的组织学明场图像相似的细节水平再现组织形态,实现了对关键结构的病理特征描述。除此之外,我们的数据还提供了对肿瘤 3D 形态的更深入了解。通过证明 X 射线染色与标准病理染色的兼容性,我们强调了将基于染色的纳米 CT 纳入病理常规的可行性。

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