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Biological applications of confocal fluorescence polarization microscopy.

机译:共聚焦荧光偏振显微镜的生物学应用。

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摘要

Fluorescence polarization microscopy is a powerful modality capable of sensing changes in the physical properties and local environment of fluorophores. In this thesis we present new applications for the technique in cancer diagnosis and treatment and explore the limits of the modality in scattering media.; We describe modifications to our custom-built confocal fluorescence microscope that enable dual-color imaging, optical fiber-based confocal spectroscopy and fluorescence polarization imaging. Experiments are presented that indicate the performance of the instrument for all three modalities.; The limits of confocal fluorescence polarization imaging in scattering media are explored and the microscope parameters necessary for accurate polarization images in this regime are determined. A Monte Carlo routine is developed to model the effect of scattering on images. Included in it are routines to track the polarization state of light using the Mueller-Stokes formalism and a model for fluorescence generation that includes sampling the excitation light polarization ellipse, Brownian motion of excited-state fluorophores in solution, and dipole fluorophore emission. Results from this model are compared to experiments performed on a fluorophore-embedded polymer rod in a turbid medium consisting of polystyrene microspheres in aqueous suspension.; We demonstrate the utility of the fluorescence polarization imaging technique for removal of contaminating autofluorescence and for imaging photodynamic therapy drugs in cell monolayers. Images of cells expressing green fluorescent protein are extracted from contaminating fluorescein emission. The distribution of meta-tetrahydroxypheny1chlorin in an EMT6 cell monolayer is also presented.; A new technique for imaging enzyme activity is presented that is based on observing changes in the anisotropy of fluorescently-labeled substrates. Proof-of-principle studies are performed in a model system consisting of fluorescently labeled bovine serum albumin attached to sepharose beads. The action of trypsin and proteinase K on the albumin is monitored to demonstrate validity of the technique. Images of the processing of the albumin in J774 murine macrophages are also presented indicating large intercellular differences in enzyme activity. Future directions for the technique are also presented, including the design of enzyme probes specific for prostate specific antigen based on fluorescently-labeled dendrimers. A technique for enzyme imaging based on extracellular autofluorescence is also proposed.
机译:荧光偏振显微镜是一种功能强大的设备,能够检测荧光团的物理性质和局部环境的变化。在本文中,我们提出了该技术在癌症诊断和治疗中的新应用,并探讨了散射介质中这种方式的局限性。我们描述了对定制共焦荧光显微镜的修改,该修改可实现双色成像,基于光纤的共焦光谱和荧光偏振成像。实验表明了该仪器在所有三种模式下的性能。探索了共聚焦荧光偏振成像在散射介质中的极限,并确定了在这种情况下精确偏振图像所需的显微镜参数。开发了蒙特卡洛例程以对图像上散射的影响进行建模。其中包括使用Mueller-Stokes形式主义来跟踪光的偏振状态的例程以及用于荧光生成的模型,该模型包括对激发光偏振椭圆进行采样,溶液中激发态荧光团的布朗运动以及偶极荧光团发射。该模型的结果与在含荧光团的聚合物棒上在混浊介质中进行的实验进行了比较,混浊介质由水性悬浮液中的聚苯乙烯微球组成。我们证明了荧光偏振成像技术的实用性,用于去除污染的自发荧光和成像细胞单层中的光动力疗法药物。从污染的荧光素发射中提取表达绿色荧光蛋白的细胞图像。还介绍了间四羟基苯二酚在EMT6细胞单层中的分布。提出了一种新的酶活性成像技术,该技术基于观察荧光标记底物各向异性的变化。原理验证研究是在一个模型系统中进行的,该系统由附着在琼脂糖凝胶珠上的荧光标记的牛血清白蛋白组成。监测胰蛋白酶和蛋白酶K对白蛋白的作用,以证明该技术的有效性。还显示了J774鼠巨噬细胞中白蛋白的加工图像,表明酶活性存在较大的细胞间差异。还提出了该技术的未来方向,包括基于荧光标记的树枝状大分子设计对前列腺特异性抗原具有特异性的酶探针。还提出了一种基于细胞外自发荧光的酶成像技术。

著录项

  • 作者

    Bigelow, Chad E.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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