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The Gray Institute Open Microscopes applied to radiobiology and protein interaction studies

机译:灰色研究所开放式显微镜应用于放射生物学和蛋白质相互作用研究

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We describe an 'open' design methodology for wide-field fluorescence, confocal and fluorescence lifetime imaging microscopy (FLIM), and how the resulting microscopes are being applied to radiation biology and protein activity studies in cells and human tissue biopsies. The design approach allows easy expansion as it moves away from the use of a monolithic microscope body to small, commercial off-the-shelf and custom made modular components. Two radiobiology 'end-stations' have been constructed which enable fast radiation targeting and imaging of biological material opening up completely novel studies, where the consequences of ionising radiation (signaling and protein recruitment) can be studied in situ, at short times following irradiation. One is located at Surrey University, UK, where radiation is a highly focused in beam (e.g. protons, helium or higher mass ions). The second is installed at the Gray Institute linear accelerator facility, Oxford University, which uses sub-microsecond pulses of 6 MeV electrons. FLIM capabilities have enhanced the study of protein-protein interactions in cells and tissues via Forster Resonance Energy Transfer (FRET). Extracting FRET signals from breast cancer tissue is challenging because of endogenous and fixation fluorescence; we are investigating novel techniques to measure this robustly. Information on specific protein interactions from large numbers of patient tumors will reveal prognostic and diagnostic information.
机译:我们描述了一种用于宽视场荧光,共焦和荧光寿命成像显微镜(FLIM)的“开放式”设计方法,以及如何将所得的显微镜应用于细胞和人体组织活检中的放射生物学和蛋白质活性研究。该设计方法使它易于扩展,因为它不再使用单片显微镜主体,而是变成了小型的商用现货供应和定制的模块化组件。已经建立了两个放射生物学的“终端站”,它们能够实现快速的放射靶向和生物材料的成像,从而开启了全新的研究,其中可以在辐照后的短时间内就地研究电离辐射的后果(信号和蛋白质募集)。一个位于英国的萨里大学,那里的辐射高度集中在电子束(例如质子,氦或更高质量的离子)中。第二个安装在牛津大学格雷学院线性加速器设施中,该设施使用6 MeV电子的亚微秒脉冲。 FLIM功能通过Forster共振能量转移(FRET)增强了细胞和组织中蛋白质与蛋白质相互作用的研究。由于内源性荧光和固定荧光,从乳腺癌组织中提取FRET信号具有挑战性。我们正在研究新颖的技术来对此进行可靠的测量。来自大量患者肿瘤的特定蛋白质相互作用的信息将揭示预后和诊断信息。

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    Gray Institute for Radiation Oncology and Biology, Department of Oncology, University of Oxford, UK;

    Gray Institute for Radiation Oncology and Biology, Department of Oncology, University of Oxford, UK;

    Institute for Mathematical and Molecular Biomedicine, King's College London, UK;

    Gray Institute for Radiation Oncology and Biology, Department of Oncology, University of Oxford, UK;

    Division of Cancer Studies, King's College London, UK;

    Institute for Mathematical and Molecular Biomedicine, King's College London, UK;

    Division of Cancer Studies, King's College London, UK;

    Guy's St Thomas' Breast Tissue Data Bank, King's College London, Guy's Hospital, London, UK;

    Breakthrough Breast Cancer Research Unit, King's College London, London, UK ,Guy's St Thomas' Breast Tissue Data Bank, King's College London, Guy's Hospital, London, UK;

    Division of Cancer Studies, King's College London, UK ,Randall Division, King's College London, UK ,Breakthrough Breast Cancer Research Unit, King's College London, London, UK;

    Gray Institute for Radiation Oncology and Biology, Department of Oncology, University of Oxford, UK ,Randall Division, King's College London, UK;

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