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Three-dimensional virtual histology enabled through cytoplasm-specific X-ray stain for microscopic and nanoscopic computed tomography

机译:通过细胞质特异性X射线染色实现的三维虚拟组织学用于显微和纳米计算机断层扫描

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摘要

Many histological methods require staining of the cytoplasm, which provides instrumental details for diagnosis. One major limitation is the production of 2D images obtained by destructive preparation of 3D tissue samples. X-ray absorption micro- and nanocomputed tomography (microCT and nanoCT) allows for a nondestructive investigation of a 3D tissue sample, and thus aids to determine regions of interest for further histological examinations. However, application of microCT and nanoCT to biological samples (e.g., biopsies) is limited by the missing contrast within soft tissue, which is important to visualize morphological details. We describe an eosin-based preparation overcoming the challenges of contrast enhancement and selectivity for certain tissues. The eosin-based staining protocol is suitable for whole-organ staining, which then enables high-resolution microCT imaging of whole organs and nanoCT imaging of smaller tissue pieces retrieved from the original sample. Our results demonstrate suitability of the eosin-based staining method for diagnostic screening of 3D tissue samples without impeding further diagnostics through histological methods.
机译:许多组织学方法要求细胞质染色,这为诊断提供了仪器细节。一个主要限制是通过破坏性制备3D组织样本获得的2D图像的产生。 X射线吸收显微和纳米计算机断层扫描(microCT和nanoCT)可对3D组织样本进行无损检查,因此有助于确定感兴趣的区域,以进行进一步的组织学检查。然而,将microCT和nanoCT应用于生物样品(例如活检组织)受到软组织内缺少对比度的限制,这对于可视化形态学细节很重要。我们描述了一种基于曙红的制剂,该制剂克服了某些组织的对比度增强和选择性的挑战。基于曙红的染色方案适用于全器官染色,然后可以对整个器官进行高分辨率的microCT成像,并可以对从原始样品中回收的较小组织碎片进行nanoCT成像。我们的结果证明了基于曙红的染色方法适用于3D组织样品的诊断筛选,而不会通过组织学方法阻止进一步的诊断。

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