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Development of Functional Nanomaterials with Aggregation-Induced Emission Characteristics and Exploration of Their Biological Applications.

机译:具有聚集诱导发射特性的功能纳米材料的开发及其生物学应用的探索。

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摘要

The development of fluorescent biosensors with high sensitivity, selectivity, and biocompatibility is of critical importance to bioscience and biotechnology because it offers a direct visualization tool for the detection of biological macromolecules and the monitoring of biological events under real and living conditions. Most of the conventional organic fluorophores exhibit remarkably bright emission in their dilute solutions but become weakly or even nonemissive when aggregated or in solid state, which has greatly limited the scope of their applications.;An opposite phenomenon has recently been discovered: a group of nonluminescent molecules are induced to emit efficiently by aggregate formation. "Aggregation-induced emission" (AIE) is coined for this novel effect. Attracted by the intriguing phenomenon and its fascinating perspectives, we have launched a new program directed towards the development of new AIE materials and exploration of their biological applications.;A new class of water-soluble AIE luminogens are designed and synthesized. Hydrophilic groups such as hydroxyl, sulfonate, and amino groups are introduced to make the AIE molecules readily soluble in water. Being practically non-emissive in water, these AIE dyes are lightened up when bound to biomacromolecules, such as proteins and DNA, thus enabling the quantitation and visualization of biomacromolecules in aqueous solutions and in electrophoretic gels.;The AIE luminogens are sensitive to microenvironment inside the biomolecules and their fluorescent intensity can readily reflect the global stability of the biomolecules. In this work, we employ the AIE luminogens as fluorescent reporters for the monitoring of G-quadruplex DNA folding, protein unfolding by denaturant and protein misfolding into amyloid fibrils. Thanks to the AIE characteristics, the delicate information on the conformational transition of the biomolecules can be revealed.;In addition, lipophilic AIE luminogens form highly emissive nanoaggregates when dispersed in aqueous media. Through molecular endeavor, the AIE nanoaggregates can be utilized for metal sensing and cell imaging with high sensitivity and selectivity.
机译:具有高灵敏度,选择性和生物相容性的荧光生物传感器的开发对生物科学和生物技术至关重要,因为它提供了一种直接的可视化工具,用于检测生物大分子并监测实际和生活条件下的生物事件。大多数常规有机荧光团在其稀溶液中均显示出明显的亮光,但在聚集或处于固态时却变得微弱甚至不发光,这极大地限制了其应用范围。;最近发现了一种相反的现象:一组不发光通过聚集体形成诱导分子有效发射。 “聚集诱导的发射”(AIE)是为这种新颖的效果而创造的。受引人入胜的现象及其引人入胜的观点的吸引,我们启动了一项新计划,旨在开发新型AIE材料并探索其生物学应用。;设计并合成了一类新型的AIE水溶性发光剂。引入诸如羟基,磺酸根和氨基的亲水基团以使AIE分子易于溶于水。这些AIE染料在水中几乎不发光,当与生物大分子(如蛋白质和DNA)结合时会变亮,从而可以定量和可视化水溶液和电泳凝胶中的生物大分子; AIE发光剂对内部的微环境敏感。生物分子及其荧光强度可以很容易地反映出生物分子的整体稳定性。在这项工作中,我们采用AIE发光剂作为荧光报告分子,以监测G-四链体DNA折叠,通过变性剂展开的蛋白质和折叠成淀粉样蛋白原纤维的蛋白质。归功于AIE的特性,可以揭示有关生物分子构象转变的精妙信息。此外,亲脂性AIE发光剂分散在水性介质中时会形成高发射纳米聚集体。通过分子努力,AIE纳米聚集体可用于金属传感和细胞成像,具有高灵敏度和选择性。

著录项

  • 作者

    Hong, Yuning.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Physics Optics.;Biophysics General.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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