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Supported lipid bilayers, tethered lipid vesicles, and vesicle fusion investigated using gravimetric, plasmonic, and microscopy techniques

机译:使用重量分析,等离子体和显微镜技术研究支持的脂质双分子层,束缚的脂质囊泡和囊泡融合

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摘要

This article summarizes our most recent contributions to the rapidly growing field of supported lipid assemblies with emphasis on current studies addressing both fundamental and applied aspects of supported lipid bilayer (SLB) and tethered lipid vesicles (TLVs) to be utilized in sensing applications. The new insights obtained from combining the quartz crystal microbalance with dissipation monitoring technique with surface plasmon resonance are described, and we also present recent studies in which nanoplasmonic sensing has been used in studies of SLBs and TLVs. To gain full control over the spatial arrangement of TLVs in both two and three dimensions, we have developed a method for site-selective and sequence-specific sorting of DNA-tagged vesicles to surfaces modified with complementary DNA. The combination of this method with nanoplasmonic sensing formats is covered as well as the possibility of using DNA-modified vesicles for the detection of unlabeled DNA targets on the single-molecule level. Finally, a new method for membrane fusion induced by hybridization of vesicle-anchored DNA is demonstrated, including new results on content mixing obtained with vesicle populations encapsulating short, complementary DNA strands.
机译:本文总结了我们对支持脂质组装的快速增长领域的最新贡献,重点是当前针对支持脂质双层(SLB)和栓系脂质囊泡(TLV)在传感应用中使用的基础和应用方面的最新研究。描述了通过将石英晶体微量天平与耗散监测技术与表面等离子体激元共振相结合而获得的新见解,并且我们还介绍了最近的研究,其中纳米等离子体传感已用于SLB和TLV的研究中。为了完全控制TLV在二维和三维上的空间排列,我们开发了一种方法,用于对DNA标记的囊泡进行位点选择性和序列特异性分选,以对互补DNA修饰的表面进行分选。涵盖了该方法与纳米等离子体传感格式的组合,以及使用DNA修饰的囊泡在单分子水平上检测未标记的DNA靶标的可能性。最后,展示了一种通过囊泡锚定的DNA杂交诱导的膜融合的新方法,包括在囊封短而互补的DNA链的囊泡群体中进行内容混合得到的新结果。

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