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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Fourier Transform Infrared (FT-IR) Spectromicroscopy to Identify Cell Organelles: Correlation with Fluorescence Staining in MCF-7 Breast Cancer Cells
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Fourier Transform Infrared (FT-IR) Spectromicroscopy to Identify Cell Organelles: Correlation with Fluorescence Staining in MCF-7 Breast Cancer Cells

机译:傅立叶变换红外(FT-IR)光谱显微镜鉴定细胞器:与MCF-7乳腺癌细胞中的荧光染色相关

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Biomolecules display specific vibrational signatures in the infrared (IR) range, and organelles that concentrate these biomolecules can be identified by these IR signatures. Subcellular identification and location of cell organelles using IR signatures is attractive as it does not require the use of any specific trackers and is thus noninvasive and non-destructive. We show here that endogenous IR absorptions are relevant to detecting and imaging the nucleus, the cytoplasm, and the Golgi apparatus/endoplasmic reticulum in MCF-7 breast cancer cells, and we compare these results with our previous work on the HeLa cell line. We correlate maps of fixed and dried cells obtained by synchrotron radiation Fourier transform infrared (SR FT-IR) spectromicroscopy with epifluorescence images using fluorescent trackers for Golgi apparatus and nucleus, namely BODIPY TR C_5-ceramide complexed to BSA and DAPI, respectively. Interestingly, the ratios of the IR bands CH_2:CH_3 (both asymmetric and symmetric) and CO~(ester):amide I were shown to be reliable gauges of the lipidic character of a cellular compartment, the -CH_2 and the CO~(ester) absorptions increasing with the presence of inner membranes like in the Golgi apparatus.
机译:生物分子在红外(IR)范围内显示特定的振动特征,并且可以通过这些IR特征来识别浓缩这些生物分子的细胞器。使用IR信号进行亚细胞的鉴定和细胞器的定位很有吸引力,因为它不需要使用任何特定的跟踪器,因此是非侵入性和非破坏性的。我们在这里表明内源性IR吸收与检测和成像MCF-7乳腺癌细胞的细胞核,细胞质和高尔基体/内质网有关,并将这些结果与我们先前在HeLa细胞系上的工作进行比较。我们将同步加速器辐射傅立叶变换红外(SR FT-IR)光谱学获得的固定和干燥细胞图与使用荧光跟踪仪的高尔基体和核的落射荧光图像相关,即分别与BSA和DAPI复合的BODIPY TR C_5-神经酰胺。有趣的是,IR谱带CH_2:CH_3(不对称和对称)和CO〜(酯):酰胺I的比率被证明是细胞区室,-CH_2和CO〜(酯)脂质特性的可靠量度。 )吸收会随着高尔基仪器中内膜的存在而增加。

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