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Towards Fourier Interferometry Fluorescence Excitation/Emission Imaging of Malignant Cells combined with Photoacoustic Microscopy

机译:朝向傅里叶干涉测量荧光激发/发射成像与光声显微镜联合

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Dual excitation fluorescence imaging has been used as a first step towards multi-wavelength excitation/emission fluorescence spectral imaging. Target cells are transformed keratinocytes, and osteosarcoma, human breast and colon cancer cells. Mitochondrial membrane potential probes, e.g. TMRM (tetramethylrhodamine methyl ester), Mitotracker Green (Molecular Probes, Inc., Eugene OR, USA) and a recently synthesized mitochondrial oxygen probe, [PRE, (1''-pyrene butyl)-2-rhodamine ester] allow dual excitation in the UV plus in the blue-green spectral regions. Also, using the natural endogenous probe NAD(P)H, preliminary results indicate mitochondrial responses to metabolic challenges (e.g. glucose addition), plus changes in mitochonrial distribution and morphology. In terms of application to biomedicine (for diagnostics, prognostics and drug trials) three parameters have been selected in addition to the natural probe NAD(P)H, i.e. vital fluorescence probing of mitochondria, lysosomes and Golgi apparatus. It is hoped that such a multiparameter approach will allow malignant cell characterization and grading. A new area being introduced is the use of similar methodology for biotechnological applications such as the study of the hydrogen-producing alga Chlamydomonas Reinhardtii, and possible agricultural applications, such as Saccharomyces yeast for oenology. Complementation by Photoacoustic Microscopy is also contemplated, to study the internal conversion component which follows the excitation by photons.
机译:双激发荧光成像已被用作朝向多波长激发/发射荧光光谱成像的第一步。靶细胞被转化的角质形成细胞,骨肉瘤,人乳腺和结肠癌细胞。线粒体膜潜在探针,例如。 TMRM(四甲基溴胺甲酯),MitoTracker Green(Molecular Probes,Inc.,Eugene或,USA)和最近合成的线粒体氧气探针,[pre,(1' - 芘丁基)-2-罗丹明酯]允许双重激发UV加在蓝绿谱区域中。此外,使用天然内源探针NAD(P)H,初步结果表明对代谢挑战的线粒体反应(例如葡萄糖添加),以及线粒体分布和形态的变化。就Biomedicine的申请(用于诊断,预后性和药物试验),除了天然探针NAD(P)H之外还选择了三个参数,即线粒体,溶酶体和GOLGI装置的重要荧光探测。希望这样的多级计方法允许恶性细胞表征和分级。正在介绍的新领域是使用类似的生物技术应用方法,例如研究氢生产藻类骨髓炎植物Reinhardtii,以及可能的农业应用,例如酿酒酵母酵母酵母。还考虑了光声显微镜的互补,研究了通过光子激发的内部转换组分。

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