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Bioanalytics of microvesicles based on liquid crystals.

机译:基于液晶的微囊泡的生物分析。

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摘要

The research described in this thesis studies the interactions between model and cell-derived phopholipid vesicles with interfaces of nematic liquid crystals (LCs). This research is motivated by the potential utility of LC-based platforms for detection of microvesicles shed by cells, which has been recognized as important in a broad spectrum of cancer-related context.;The first section of this thesis describes ordering transitions in nematic LCs induced by the capture of phospholipid vesicles at protein-functionalized solid surfaces via specific recognition events. Our results are consistent with a physical picture in which the aliphatic side chains of the phospholipids captured at these surfaces (as either vesicles or planar multilayer assemblies) dictate the ordering of the LC.;The second section of this thesis includes studies of specific binding of vesicles to protein-decorated aqueous-LC interfaces that are amplified into continuous orientational transitions in the LC. The dynamics of these transitions were significantly faster than that observed in the absence of the specific binding events. We demonstrate that displacement of the proteins from the interface by captured vesicles is necessary for the LC ordering transition to be observed.;The third section of this thesis builds on the fundamental insights into the origins of dynamical anchoring transitions at aqueous-LC interfaces that reflect the presence of sub-optical heterogeneity at complex protein-lipid interfaces. We also measured the dynamics of LC anchoring transitions to be accelerated with increasing ligand concentration in the vesicles.;The fourth section of this thesis describes a LC droplet-based method for detection of cell-derived microvesicles captured specifically by magnetic beads presenting target antibodies. Using this technique, antigen binding and microvesicles capture can be detected via extraction of lipid components of microvesicles which trigger ordering transitions within LC droplets from a bipolar to a radial configuration. Rapid read out of the response of LC droplets was achieved using scatter plots by flow cytometry.;The research in this thesis, when combined, provides advances in principles based on protein-decorated LC interfaces that might be exploited in a range of contexts, including the design of stimuli-responsive materials and analytic systems.
机译:本文描述的研究以向列型液晶(LC)的界面研究模型与细胞来源的磷脂囊泡之间的相互作用。这项研究是受基于LC平台检测细胞脱落的微囊泡的潜在实用性的启发,该平台在广泛的癌症相关背景下被认为是重要的。;本论文的第一部分描述了向列LC的有序转变通过特异性识别事件在蛋白质功能化的固体表面捕获磷脂囊泡而诱导凋亡。我们的结果与一幅物理图片是一致的,其中在这些表面上捕获的磷脂的脂族侧链(作为囊泡或平面多层组件)决定了LC的顺序。囊泡到蛋白修饰的水-LC界面,在LC中被放大为连续的取向转变。这些转变的动力学比没有特异性结合事件时观察到的动力学要快得多。我们证明了捕获的囊泡需要从界面上置换蛋白质,这对于观察LC有序过渡是必要的。本论文的第三部分基于对水-LC界面上动态锚固转变的起源的基本认识。在复杂的蛋白质-脂质界面存在次光学异质性。我们还测量了随着囊泡中配体浓度的增加,LC锚固转变的动力学得以加速。本论文的第四部分描述了一种基于LC液滴的方法,该方法用于检测由呈递目标抗体的磁珠特异性捕获的细胞衍生的微囊泡。使用这种技术,可以通过提取微囊的脂质组分来检测抗原结合和微囊的捕获,这些脂质组分触发LC液滴内从双极性到径向构型的有序转变。通过流式细胞仪使用散点图可以快速读取LC液滴的响应。;本论文的研究结合起来,提供了基于蛋白质修饰的LC接口的原理方面的进展,这些原理可以在多种环境中使用,包括刺激响应材料和分析系统的设计。

著录项

  • 作者

    Tan, Lie Na.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 300 p.
  • 总页数 300
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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