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Multifunctional nanophosphors for tissue imaging and drug delivery.

机译:用于组织成像和药物递送的多功能纳米荧光粉。

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摘要

X-rays have been used for non-invasive high-resolution imaging of thick biological specimens since their discovery in 1895. They are widely used for structural imaging of bone, metal implants, and cavities in soft tissue. Recently, a number of new contrast methodologies have emerged which are expanding X-ray's biomedical applications to functional as well as structural imaging. However, traditional X-ray imaging provides high spatial resolution imaging through tissue but do not measure chemical concentrations. In this dissertation, we describe an X-ray excited optical luminescence (XEOL) technique which uses a scanning X-ray beam to irradiate Gd2O2S phosphors and detect the resulting visible luminescence through the tissue. The amount of light collected is modulated by optical absorption in close proximity to the luminescence source. The ability to specifically target biological processes in vivo makes nanophosphors promising molecular imaging agents for XEOL. We also describe versatile techniques to design and fabricate multifunctional X-ray nanophosphors. The addition of pH-triggred drug release on our X-ray nanophosphors make it possible to monitor pH-triggered drug release rate in real time. The iron oxide encapsulated X-ray nanosctintillators offer promising multimodal MRI/fluorescence/X-ray luminescence contrast agents.
机译:自从1895年发现X射线以来,X射线就一直用于非侵入式高分辨率厚生物样本的高分辨率成像。它们被广泛用于骨骼,金属植入物和软组织腔的结构成像。最近,出现了许多新的对比方法,这些方法将X射线的生物医学应用扩展到功能成像和结构成像。但是,传统的X射线成像可提供通过组织的高空间分辨率成像,但无法测量化学浓度。在本文中,我们描述了一种X射线激发光致发光(XEOL)技术,该技术使用扫描X射线束照射Gd2O2S荧光粉并检测通过组织产生的可见光。通过紧密靠近发光源的光吸收来调节收集的光量。特异性靶向体内生物过程的能力使纳米磷光体成为XEOL的理想分子成像剂。我们还描述了设计和制造多功能X射线纳米荧光粉的通用技术。在我们的X射线纳米荧光粉上增加了pH触发的药物释放,从而可以实时监控pH触发的药物释放速率。铁氧化物封装的X射线纳米闪烁体提供了有希望的多峰MRI /荧光/ X射线发光造影剂。

著录项

  • 作者

    Chen, Hongyu.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Chemistry Analytical.;Health Sciences Radiology.;Engineering Biomedical.
  • 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

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