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Theranostic nanoparticles for the treatment of cancer.

机译:治疗肿瘤的纳米颗粒,用于治疗癌症。

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摘要

The main focus of this research was to evaluate the ability of a novel multifunctional nanoparticle to mediate drug delivery and enable a non-invasive approach to measure drug release kinetics in situ for the treatment of cancer. These goals were approached by developing a nanoparticle consisting of an inorganic core (i.e. gadolinium sulfoxide doped with europium ions or carbon nanotubes). This was coated with an external amphiphilic polymer shell comprised of a biodegradable polyester (i.e. poly(lactide) or poly(glycolide)), and poly(ethylene glycol) block copolymer. In this system, the inorganic core mediates the imaging aspect, the relatively hydrophobic polyester encapsulates hydrophobic anti-cancer drugs, and poly(ethylene glycol) stabilizes the nanoparticle in an aqueous environment.;The synthesis of this nanoparticle drug delivery system utilized a simple one-pot room temperature ring-opening polymerization that neglected the use of potentially toxic catalysts and reduced the number of washing steps. This functionalization approach could be applied across a number of inorganic nanoparticle platforms. Coating inorganic nanoparticles with biodegradable polymer was shown to decrease in vitro and in vivo toxicity. Nanoparticles could be further coated with multiple polymer layers to better control drug release characteristics. Finally, loading polymer coated radioluminescent nanoparticles with photoactive drugs enabled a mechanism for measuring drug concentration in situ. The work presented here represents a step forward to developing theranostic nanoparticles that can improve the treatment of cancer.
机译:这项研究的主要重点是评估新型多功能纳米粒子介导药物递送的能力,并启用一种非侵入性方法来原位测量药物释放动力学以治疗癌症。通过开发由无机核(即掺有euro离子或碳纳米管的亚砜g)组成的纳米颗粒,可以实现这些目标。将其涂有由可生物降解的聚酯(即聚(丙交酯)或聚(乙交酯))和聚(乙二醇)嵌段共聚物组成的两亲聚合物外壳。在该系统中,无机核介导了成像方面,相对疏水的聚酯包封了疏水性抗癌药,而聚乙二醇在水性环境中稳定了纳米颗粒。 -锅室温开环聚合反应,它忽略了使用有毒催化剂并减少了洗涤步骤。这种功能化方法可以应用于许多无机纳米粒子平台。用可生物降解的聚合物涂覆无机纳米颗粒显示出降低的体外和体内毒性。纳米颗粒可以进一步涂覆有多个聚合物层,以更好地控制药物释放特性。最后,用光敏药物加载聚合物涂层的放射发光纳米粒子,可以实现原位测量药物浓度的机制。本文介绍的工作代表了开发可改善癌症治疗的治疗学纳米颗粒的一步。

著录项

  • 作者

    Moore, Thomas Lee.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Health Sciences Pharmacy.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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