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光学光热红外显微光谱法首次在组织病理学载玻片上区分不同类型的肺细胞。

Optical Photothermal Infrared Microspectroscopy Discriminates for the First Time Different Types of Lung Cells on Histopathology Glass Slides.

机构信息

Photothermal Spectroscopy Corp., 325 Chapala Street, Santa Barbara, California 93101, United States.

School of Pharmacy and Bioengineering, Guy Hilton Research Centre, Keele University, Stoke-on-Trent ST4 7QB, U.K.

出版信息

Anal Chem. 2021 Aug 17;93(32):11081-11088. doi: 10.1021/acs.analchem.1c00309. Epub 2021 Aug 6.

Abstract

The debate of whether a glass substrate can be used in Fourier transform infrared spectroscopy is strongly linked to its potential clinical application. Histopathology glass slides of 1 mm thickness absorb the mid-IR spectrum in the rich fingerprint spectral region. Thus, it is important to assess whether emerging IR techniques can be employed to study biological samples placed on glass substrates. For this purpose, we used optical photothermal infrared (O-PTIR) spectroscopy to study for the first time malignant and non-malignant lung cells with the purpose of identifying IR spectral differences between these cells placed on standard pathology glass slides. The data in this feasibility study showed that O-PTIR can be used to obtain good-quality IR spectra from cells from both the lipid region (3000-2700 cm) and the fingerprint region between 1770 and 950 cm but with glass contributions from 1350 to 950 cm. A new single-unit dual-range (C-H/FP) quantum cascade laser (QCL) IR pump source was applied for the first time, delivering a clear synergistic benefit to the classification results. Furthermore, O-PTIR is able to distinguish between lung cancer cells and non-malignant lung cells both in the lipid and fingerprint regions. However, when these two spectral ranges are combined, classification accuracies are enhanced with Random Forest modeling classification accuracy results ranging from 96 to 99% across all three studied cell lines. The methodology described here for the first time with a single-unit dual-range QCL for O-PTIR on glass is another step toward its clinical application in pathology.

摘要

关于能否在傅里叶变换红外光谱学中使用玻璃基质的争论,与它的潜在临床应用密切相关。1 毫米厚的组织病理学玻璃载玻片在丰富的指纹光谱区域吸收中红外光谱。因此,评估新兴的红外技术是否可以用于研究放置在玻璃基质上的生物样本非常重要。为此,我们首次使用光学光热红外(O-PTIR)光谱学来研究恶性和非恶性肺细胞,目的是确定放置在标准病理玻璃载玻片上的这些细胞的红外光谱差异。这项可行性研究的数据表明,O-PTIR 可用于从脂质区域(3000-2700cm)和指纹区域(1770-950cm)获得高质量的细胞红外光谱,但玻璃在 1350-950cm 处有贡献。首次应用新型单单元双范围(C-H/FP)量子级联激光器(QCL)红外泵浦源,为分类结果带来明显的协同效益。此外,O-PTIR 能够区分脂质和指纹区域中的肺癌细胞和非恶性肺细胞。然而,当将这两个光谱范围结合使用时,随机森林模型的分类准确性会增强,所有三种研究细胞系的分类准确率均在 96%至 99%之间。本文首次描述了一种用于 O-PTIR 在玻璃上的单单元双范围 QCL 的方法,这是其在病理学中临床应用的又一步。

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