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Plasmon-Based Determination of Macromolecular Interactions with Membrane-Encapsulated Nanoparticles

机译:基于等离子体的膜包裹纳米粒子与高分子相互作用的测定

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Nanoparticles exhibit various optical properties arising from scattering and absorption due to polariton excitation. The resulting frequency and amplitude is dependent on several factors such as particle size, shape, and dielectric environment. By modifying the environment of the nanoparticle surface, in particular by encapsulating an individual nanoparticle within a membrane bilayer comprising defined phospholipids, these properties may be utilised to interrogate molecular interactions adjacent to the particle surface to useful levels of sensitivity. We describe the underlying rationale of these properties and characterise the preparation and behaviour of the nanoparticles. We indicate the potential this approach may have for sensing and screening in analytical biomolecular technology by demonstrating that it can be utilised to reveal the kinetics of the molecular interactions of membrane associated events. We also indicate that the technique may yield higher-order structural information of the macromolecule-membrane interactions in a highly sensitive manner and discuss the physical origins of these potentially more exotic phenomena.
机译:纳米粒子由于极化子激发而表现出由于散射和吸收而产生的各种光学性质。产生的频率和幅度取决于几个因素,例如粒径,形状和介电环境。通过改变纳米颗粒表面的环境,特别是通过将单个纳米颗粒包封在包含确定的磷脂的膜双层中,这些性质可以用于将与颗粒表面相邻的分子相互作用询问到有用的敏感性水平。我们描述了这些特性的基本原理,并描述了纳米粒子的制备和行为。我们通过证明该方法可用于揭示膜相关事件的分子相互作用的动力学,表明该方法在分析生物分子技术中可能具有传感和筛选的潜力。我们还表明,该技术可能以高度灵敏的方式产生大分子-膜相互作用的高阶结构信息,并讨论了这些潜在更奇特的现象的物理起源。

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