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Compatibility between TOF-SIMS lipid imaging and histological staining on a rat brain section (Conference Paper)

机译:TOF-SIMS脂质成像与大鼠脑切片组织学染色之间的兼容性(会议论文)

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摘要

While ToF-SIMS is typically used to localize elemental ions in inorganic materials, it is also successfully utilized since several years to get images of a large variety of organic compounds, such as lipids (up to m/z 1500) at the surface of biological tissue sections. This technique can be associated with histology for medical diagnosis in order to correlate structural features with ion images. The possibility to use the same tissue section for both histology and mass spectrometry imaging would be a major advantage in terms of sample preparation and precision on the histological structure localization. In this study, on the one hand, rat brain sections were stained with Hematoxylin-Eosin (HE) after a ToF-SIMS surface analysis, and on the other hand, the lipid mapping with ToF-SIMS was performed after the HE staining procedure. In the first case, we evidenced that the high vacuum conditions applied in ToF-SIMS imaging did not disturb the staining neither the recognition of the brain structures. In the second case, a cholesterol fragment ion, chosen for imaging, was still detected in the brain structure after HE staining. However, it has not been possible to totally overlay the optical image before the staining with the ionic images after the staining, likely because of a distention of the tissue.
机译:尽管ToF-SIMS通常用于在无机材料中定位元素离子,但由于几年来它也被成功地用于在生物体表面获取各种有机化合物(例如脂质(最高m / z 1500))的图像。组织切片。该技术可以与用于医学诊断的组织学相关联,以便使结构特征与离子图像相关联。就样品制备和组织学结构定位的精确度而言,将同一组织切片用于组织学和质谱成像的可能性将是一个主要优势。在这项研究中,一方面,在对ToF-SIMS进行表面分析后,用苏木精-曙红(HE)对大鼠的大脑切片进行染色;另一方面,在HE染色过程之后,使用ToF-SIMS对脂质进行了定位。在第一种情况下,我们证明了在ToF-SIMS成像中使用的高真空条件不会干扰染色,也不会干扰大脑结构的识别。在第二种情况下,HE染色后仍在脑部结构中检测到选择用于成像的胆固醇碎片离子。然而,由于组织的膨胀,不可能将染色前的光学图像与染色后的离子图像完全重叠。

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