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An Innovative Platform Merging Elemental Analysis and Ftir Imaging for Breast Tissue Analysis

机译:结合元素分析和Ftir成像的创新平台用于乳腺组织分析

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摘要

Histopathology and immunohistology remain the gold standard for breast cancer diagnostic. Yet, these approaches do not usually provide a sufficiently detailed characterization of the pathology. The purpose of this work is to demonstrate for the first time that elemental analysis and Fourier transform infrared spectroscopy microscopic examination of breast tissue sections can be merged into one dataset to provide a single set of markers based on both organic molecules and inorganic trace elements. For illustrating the method, 6 mammary tissue sections were used. Fourier transform infrared (FTIR) spectroscopy images reported a fingerprint of the organic molecules present in the tissue section and laser ablation elemental analysis (LA-ICP-MS) images brought inorganic element profiles. The 6 tissue sections provided 31 106 and 150,000 spectra for FTIR and LA-ICP-MS spectra respectively. The results bring the proof of concept that breast tissue can be analyzed simultaneously by FTIR spectroscopy and laser ablation elemental analysis (LA-ICP-MS) to provide in both case reasonably high resolution images. We show how to bring the images obtained by the two methods to a same spatial resolution and how to use image registration to analyze the data originating from both techniques as one block of data. We finally demonstrates the elemental analysis is orthogonal to all FTIR markers as no significant correlation is found between FTIR and LA-ICP-MS data. Combining FTIR and LA-ICP-MS imaging becomes possible, providing two orthogonal methods which can bring an unprecedented diversity of information on the tissue. This opens a new avenue of tissue section analyses providing unprecedented diagnostic potential.
机译:组织病理学和免疫组织学仍然是乳腺癌诊断的金标准。然而,这些方法通常不能提供足够详细的病理学特征。这项工作的目的是首次证明可以将乳腺组织切片的元素分析和傅里叶变换红外光谱显微镜检查合并为一个数据集,以提供基于有机分子和无机痕量元素的单一标记集。为了说明该方法,使用了6个乳腺组织切片。傅里叶变换红外(FTIR)光谱图像报告了组织切片中存在的有机分子的指纹,激光烧蚀元素分析(LA-ICP-MS)图像带来了无机元素的分布。 6个组织切片分别提供FTIR和LA-ICP-MS光谱的31个10 6 和150,000个光谱。结果带来了概念证明,即可以通过FTIR光谱和激光消融元素分析(LA-ICP-MS)同时分析乳房组织,以在两种情况下均提供合理的高分辨率图像。我们展示了如何将通过这两种方法获得的图像带到相同的空间分辨率,以及如何使用图像配准来分析源自这两种技术的数据作为一个数据块。最后,我们证明了元素分析与所有FTIR标记正交,因为在FTIR和LA-ICP-MS数据之间未发现显着相关性。结合FTIR和LA-ICP-MS成像成为可能,提供了两种正交方法,可以在组织上带来前所未有的信息多样性。这开辟了组织切片分析的新途径,提供了前所未有的诊断潜力。

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