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Real-time analysis of molecular assembly by kinetic flow cytometry

机译:动力学流式细胞术的分子组装实时分析

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Flow cytometry is uniquely capable of making sensitive and quantitative multiparameter fluorescence measurements with discrimination of free from particle-bound fluorophore. Recent advances in mixing and sample delivery have extended these capabilities into the sub-second time domain. Access to these time scales has enabled us to use flow cytometry to measure molecular interactions. Using the general approach of immobilizing one molecule on a microsphere and fluorescently labeling another, we have been able to make real-time measurements of ligand-receptor and enzyme-substrate interactions involving proteins, nucleic acids, carbohydrates, and lipids. We are developing schemes for immobilizing active biological molecules in defined and homogeneous orientations relative to the surface. We are also developing approaches for homogeneous fluorescent labeling of active biomolecules and calibration schemes for quantitative measurements by flow cytometry. We will present several examples of applications of this new technology, including DNA- and protein-protein interactions, nucleic acid hybridization, and interactions on artificial membrane surfaces. These approaches should have wide applications for mechanistic analysis, diagnostics, and drug development.
机译:流式细胞术独特能够用歧视荧光团的辨别来制备敏感和定量的多次荧光测量值。混合和样品递送的最新进展将这些能力延长到秒第二时域中。访问这些时间尺度使我们能够使用流式细胞术来测量分子相互作用。使用将一种分子固定在微球上的一般方法和荧光标记另一种分子,我们已经能够进行涉及蛋白质,核酸,碳水化合物和脂质的配体受体和酶底物相互作用的实时测量。我们正在开发用于使活性生物分子相对于表面定义和均匀取向的方案。我们还在开发均匀荧光标记的活性生物分子和校准方案的方法,用于通过流式细胞术进行定量测量。我们将呈现这种新技术的若干例子,包括DNA和蛋白质 - 蛋白质相互作用,核酸杂交和人造膜表面的相互作用。这些方法应具有广泛的机制分析,诊断和药物开发应用。

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