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Supported lipid bilayers as dynamic platforms for tethered particles

机译:支持的脂质双层作为束缚颗粒的动态平台

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Nanoparticle tethering to lipid bilayers enables the observation of hundreds of diffusing particles that are confined within a single field of view. A wide variety of materials ranging from plasmonic metals to soft matter can be stably tethered to the surface of a fluid bilayer by covalent or non-covalent means. The controlled environment of this experimental platform allows direct control over surface compositions and accurate tracking of nanoparticle interactions. This minireview will cover studies that use bilayer-tethered nanoparticles to investigate physical properties related to lipid mobility, biomolecule sensing, and surface interactions, as well as experiments to reversibly manipulate tethered nanoparticles by electric fields.
机译:纳米颗粒链接到脂质双层可以观察到数百个散布颗粒,这些颗粒局限于单个视野内。 从等离子金属到软物质的各种材料可以通过共价或非共价均值稳定地束缚在流体双层的表面上。 该实验平台的受控环境允许直接控制表面组成和纳米颗粒相互作用的准确跟踪。 该小型景将涵盖使用双层螺旋纳米颗粒的研究,研究与脂质迁移率,生物分子传感和表面相互作用有关的物理性质,以及通过电场可逆操纵束缚的纳米颗粒的实验。

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