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光学活检进展——利用拉曼显微光谱成像对原发性脑肿瘤的恶性程度和细胞密度进行相关性分析。

Advances in optical biopsy--correlation of malignancy and cell density of primary brain tumors using Raman microspectroscopic imaging.

机构信息

Institute of Photonic Technology, Albert-Einstein-Str 9, 07745 Jena, Germany.

出版信息

Analyst. 2012 Dec 7;137(23):5533-7. doi: 10.1039/c2an36083g. Epub 2012 Oct 10.

DOI:10.1039/c2an36083g
PMID:23050263
Abstract

Raman spectroscopy is a promising tool towards biopsy under vision as it provides label-free image contrast based on intrinsic vibrational spectroscopic fingerprints of the specimen. The current study applied the spectral unmixing algorithm vertex component analysis (VCA) to probe cell density and cell nuclei in Raman images of primary brain tumor tissue sections. Six Raman images were collected at 785 nm excitation that consisted of 61 by 61 spectra at a step size of 2 micrometers. After data acquisition the samples were stained with hematoxylin and eosin for comparison. VCA abundance plots coincided well with histopathological findings. Raman spectra of high grade tumor cells were found to contain more intense spectral contributions of nucleic acids than those of low grade tumor cells. Similarly, VCA endmember signatures of Raman images from high grade gliomas showed increased nucleic acid bands. Further abundance plots and endmember spectra were assigned to tissue containing proteins and lipids, and cholesterol microcrystals. Since no sample preparation is required, an important advantage of the Raman imaging methodology is that all tissue components can be observed - even those that may be lost in sample staining steps. The results demonstrate how morphology and chemical composition obtained by Raman imaging correlate with histopathology and provide complementary, diagnostically relevant information at the cellular level.

摘要

拉曼光谱是一种很有前途的在视觉引导下进行活检的工具,因为它提供了基于样本固有振动光谱指纹的无标记图像对比。本研究应用光谱解混算法顶点成分分析(VCA)来探测原发性脑肿瘤组织切片的拉曼图像中的细胞密度和细胞核。在 785nm 激发下收集了 6 张拉曼图像,每个图像包含 61x61 个光谱,步长为 2 微米。数据采集后,对样本进行了苏木精和伊红染色以作对比。VCA 丰度图与组织病理学发现非常吻合。发现高级别肿瘤细胞的拉曼光谱含有比低级别肿瘤细胞更强烈的核酸光谱贡献。同样,高级别神经胶质瘤的拉曼图像的 VCA 端元特征显示出增加的核酸带。进一步的丰度图和端元光谱被分配给含有蛋白质、脂质和胆固醇微晶的组织。由于不需要进行样品制备,拉曼成像方法的一个重要优势是可以观察到所有组织成分——即使是那些在样品染色步骤中可能丢失的成分。结果表明,拉曼成像获得的形态和化学成分如何与组织病理学相关联,并提供细胞水平上互补的、有诊断意义的信息。

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