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Exploratory study of gold nanoshell as a therapeutic thermal ablation agent for cancer treatment using laboratory and animal tissue phantoms.

机译:使用实验室和动物组织体模对金纳米壳作为治疗性热消融剂进行癌症治疗的探索性研究。

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摘要

Prostate cancer is the most common male cancer in the United States and the second leading cause of male death from cancer. Surgical removal of the prostate is associated with high risks of surgical complications and consequences such as incontinence and sexual dysfunction. In my study, I have investigated a nanoparticle-assisted photothermal therapeutic method that may be used for treatment of prostate cancer in the future. This method is minimally-invasive and uses gold nano-shells as hyperthermia agents to treat localized necrosis of cancer cells.;I have conducted a feasibility study for a new class of NIR absorbing nanoparticles called Gold Nanoshells for interstitial laser-induced thermal therapy. These are optically tunable nanoparticles, consisting of a dielectric core (silica) coated with an ultrathin metallic layer (gold). These metal coated nanoshells were utilized to convert the absorbed near-infrared light to heat with more efficacy and stability. Extensive study was performed on tissue simulating phantoms in order to examine the temperature profiles. With different concentrations of gold nanoshells, temperature profiles as a function of distance (mm) from the spot of illumination were determined. The phantom study was also aimed to determine the optimal power, concentration of gold nanoshells, and heat spread over vicinity. The results of phantom study were then used to carry out animal tissue study, where direct injections of gold nanoshell suspensions into chicken tissue were performed and rapid heating of gold nanoshell embedded tissues upon exposure to the near infrared light was measured. This procedure will provide the relationship among nanoshell dosages, light intensity, and duration of illumination for tissue damage. The success of this project will be helpful in exploring new treatment techniques (i.e., hyperthermia) for prostate cancer, thus improving the quality of life for prostate cancer patients. Furthermore, this technology can also be applicable to other types of solid tumors/cancers for improved therapeutic outcome.
机译:前列腺癌是美国最常见的男性癌症,也是男性死于癌症的第二大原因。前列腺的外科手术切除与外科手术并发症和失禁和性功能障碍等后果的高风险相关。在我的研究中,我研究了一种纳米粒子辅助的光热疗法,该疗法将来可能用于治疗前列腺癌。该方法是微创的,并使用金纳米壳作为热疗剂来治疗癌细胞的局部坏死。我已经对一种新型的近红外吸收纳米颗粒金纳米壳进行了可行性研究,该纳米吸收壳用于间隙激光诱导的热疗法。这些是光学可调的纳米粒子,由涂覆有超薄金属层(金)的介电芯(二氧化硅)组成。这些金属涂覆的纳米壳被用于以更高的功效和稳定性将吸收的近红外光转换为热量。为了模拟温度模型,对组织模拟体模进行了广泛的研究。使用不同浓度的金纳米壳,确定了温度曲线与距照明点的距离(mm)的关系。幻像研究的目的还在于确定最佳功率,金纳米壳的浓度以及附近的热量散布。然后,将幻影研究的结果用于动物组织研究,其中将金纳米壳悬浮液直接注射到鸡组织中,并测量金纳米壳嵌入组织在暴露于近红外光后的快速加热。该程序将提供纳米壳剂量,光强度和组织损伤照射时间之间的关系。该项目的成功将有助于探索前列腺癌的新治疗技术(即热疗),从而改善前列腺癌患者的生活质量。此外,该技术还可应用于其他类型的实体瘤/癌症以改善治疗效果。

著录项

  • 作者

    Rathore, Yajuvendra.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Biomedical.
  • 学位 M.S.
  • 年度 2009
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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