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Preparation of bio-compatible boron nanoparticles and novel mesoporous silica nanoparticles for bio-applications.

机译:用于生物应用的生物相容性硼纳米粒子和新型介孔二氧化硅纳米粒子的制备。

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摘要

This dissertation presents the synthesis and characterization of several novel inorganic and hybrid nanoparticles, including the bio-compatible boron nanoparticles (BNPs) for boron neutron capture therapy (BNCT), tannic acid-templated mesoporous silica nanoparticles and degradable bridged silsesquioxane silica nanoparticles.;Chapter 1 provides background information of BNCT and reviews the development of design and synthesizing silica nanoparticles and the study of silica material degradability.;Chapter 2 describes the preparation and characterization of dopamine modified BNPs and the preliminary cell study of them. The BNPs were first produced via ball milling, with fatty acid on the surface to stabilize the combustible boron elements. This chapter will mainly focus on the ligand-exchange strategy, in which the fatty acids were replaced by non-toxic dopamines in a facile one-pot reaction. The dopamine-coated BNPs (DA-BNPs) revealed good water dispersibility and low cytotoxicity.;Chapter 3 describes the synthesis of tannic acid template mesoporous silica nanoparticles (TA-TEOS SiNPs) and their application to immobilize proteins. The monodispersed TA SiNPs with uniform pore size up to approximately 13 nm were produced by utilizing tannic acid as a molecular template. We studied the influence of TA concentration and reaction time on the morphology and pore size of the particles. Furthermore, the TA-TEOS particles could subsequently be modified with amine groups allowing them to be capable of incorporating imaging ligands and other guest molecules. The ability of the TA-TEOS particles to store biomolecules was preliminarily assessed with three proteins of different charge characteristics and dimensions. The immobilization of malic dehydrogenase on TA-TEOS enhanced the stability of the enzyme at room temperature.;Chapter 4 details the synthesis of several bridged silsesquioxanes and the preparation of degradable hybrid SiNPs via co-condensation of bridged silsesquioxanes with tetraethoxysilane. In vivo studies show that the solid SiNPs accumulate in many organs due to the lack of degradability. The aim of our work is to address this shortcoming by producing novel degradable SiNPs. Bridged silsesquioxanes were used as the precursors of the particles, and upon cleavage of the carbamate groups when brought into contact with aqueous media, the particles degraded into porous structures.
机译:本文介绍了几种新型的无机纳米粒子和杂化纳米粒子的合成和表征,包括用于硼中子俘获治疗的生物相容性硼纳米粒子,单宁酸模板介孔二氧化硅纳米粒子和可降解的桥联倍半硅氧烷纳米粒子。图1提供了BNCT的背景信息,回顾了二氧化硅纳米粒子的设计和合成以及二氧化硅材料可降解性的研究。第二章介绍了多巴胺修饰的BNPs的制备,表征及其初步的细胞研究。 BNP首先通过球磨生产,表面带有脂肪酸以稳定可燃硼元素。本章将主要关注配体交换策略,在该策略中,通过简便的一锅反应将脂肪酸替换为无毒的多巴胺。多巴胺包覆的BNPs(DA-BNPs)具有良好的水分散性和低细胞毒性。;第3章介绍了鞣酸模板介孔二氧化硅纳米颗粒(TA-TEOS SiNPs)的合成及其在固定蛋白质上的应用。利用单宁酸作为分子模板,制得均匀孔径最大约13 nm的单分散TA SiNPs。我们研究了TA浓度和反应时间对颗粒形态和孔径的影响。此外,TA-TEOS颗粒随后可以用胺基进行修饰,从而使其能够掺入成像配体和其他客体分子。预先用三种电荷特性和尺寸不同的蛋白质评估了TA-TEOS颗粒存储生物分子的能力。苹果酸脱氢酶在TA-TEOS上的固定化增强了该酶在室温下的稳定性。第4章详细介绍了几种桥联倍半硅氧烷的合成以及通过桥联倍半硅氧烷与四乙氧基硅烷的共缩合制备可降解杂化SiNP的方法。体内研究表明,由于缺乏可降解性,固体SiNPs在许多器官中积累。我们工作的目的是通过生产新颖的可降解SiNP来解决这一缺点。桥接的倍半硅氧烷用作颗粒的前体,并且当与水性介质接触时氨基甲酸酯基团裂解时,颗粒降解为多孔结构。

著录项

  • 作者

    Gao, Zhe.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Chemistry.;Inorganic chemistry.;Biochemistry.;Materials science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:50

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