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Tumor responsive targeted multifunctional nanosystems for cancer imaging, chemo- and siRNA therapy.

机译:用于癌症成像,化学和siRNA治疗的肿瘤反应性靶向多功能纳米系统。

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摘要

Cancer is one of the most insidious diseases. Compromising of over 100 different types and sharing the unifying factors of uncontrolled growth and metastasis, unmet clinical needs in terms of cancer diagnosis and treatment continue to exist. It is widely accepted that most forms of cancer are treatable or even curable if detected before widespread metastasis occurs. Nearly a quarter of deaths in the United States is the result of cancer and it only trails heart disease in terms of annual mortality.;Surgery, chemotherapy, and radiation therapy are the primary treatment modalities for cancer. Research in these procedures has resulted in substantial benefits for cancer patients, but there is still room for an improvement. However, a time has been reached at which it appears that the benefits from these modalities have been reached the maximum. Therefore, it is vital to develop new strategies for the diagnosis and treatment of cancer.;The field of nanotechnology is concerned with structures in the nanometer size range and holds the potential to drastically impact and improve the lives of patients suffering from cancer. Not only can nanotechnology improve current methods of diagnosis and treatment, it has a possibility of introducing newer and better modalities.;The overall purpose of this work is to develop novel nanotechnology-based methodologies for the diagnosis and treatment of various forms of cancers. The first aim of the project is the development of a multifunctional targeted nanosystem for the delivery of siRNA to overcome drug resistance. The second aspect is the synthesis of a quantum dot-based delivery system that releases drug in response to pH changes. The third aim is the development of a targeted, tumor environment responsive magnetic resonance nanoparticle contrast agent coupled with a nanoparticle-based treatment.
机译:癌症是最隐蔽的疾病之一。损害了100多种不同类型并共享不受控制的生长和转移的统一因素,在癌症诊断和治疗方面仍未满足临床需求。广泛接受的是,如果在广泛转移发生之前被发现,大多数形式的癌症都是可以治疗甚至治愈的。在美国,将近四分之一的死亡是癌症的结果,仅以每年的死亡率而言仅次于心脏病。外科手术,化学疗法和放射疗法是癌症的主要治疗方式。这些方法的研究已为癌症患者带来了巨大的好处,但仍有改进的空间。但是,似乎已经达到了从这些方式中获得最大收益的时间。因此,开发诊断和治疗癌症的新策略至关重要。纳米技术领域涉及纳米尺寸范围的结构,具有极大地影响和改善癌症患者生活的潜力。纳米技术不仅可以改善当前的诊断和治疗方法,而且有可能引入更新更好的方法。这项工作的总体目的是开发基于纳米技术的新颖方法来诊断和治疗各种形式的癌症。该项目的第一个目标是开发多功能靶向纳米系统,以递送siRNA克服耐药性。第二方面是基于量子点的递送系统的合成,其基于pH变化释放药物。第三个目标是开发靶向的,对肿瘤环境敏感的磁共振纳米粒子造影剂并结合基于纳米粒子的治疗方法。

著录项

  • 作者

    Savla, Ronak.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Pharmaceutical sciences.;Oncology.;Nanoscience.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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