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Biological evaluation of mitochondria-targeting photosensitizers and site-specific prodrugs.

机译:针对线粒体的光敏剂和特定部位前药的生物学评估。

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摘要

This dissertation focuses on two different delivery mechanisms utilizing the principle of PDT with a goal to enhance the availability of the cytotoxic agent at the tumor site.;In one approach, which utilizes the higher mitochondrial membrane potential of cancerous cell mitochondria over the normal cell, compounds containing cations will be delivered to cancer cell mitochondria specifically. Delocalized lipophilic cationic dyes conjugated with porphyrin were used to improve the delivery of photosensitizer to mitochondria. Tetranitrogenic porphyrin, which absorbs around 650 nm, and either rhodamine B or acridine orange were used as porphyrin and cations. Due to their fluorescence properties, most of these dyes were visualized using fluorescence microscopy to confirm the mitochondrial localization. Uptake, photo and dark toxicity were then explored.;In a continuing project, core modified porphyrin photosensitizers with near IR absorption (690nm), high singlet oxygen quantum yield and known mitochondrial localizing cationic dyes like rhodamine B and triphenyl phosphene were explored. The photophysical properties of the conjugates like UV absorption, fluorescence, lipophilicity, singlet oxygen generation, and FRET efficiency were studied. Once it was confirmed that conjugation with cations did not alter the photophysical and singlet oxygen (SO) generation capacity of the dyes, biological evaluation was performed. All of these dyes, due to their fluorescence properties, were visualized using fluorescence microscopy to confirm mitochondrial localization. Uptake and photo and dark toxicity were explored. In vivo biodistribution studies show that the cation conjugated compound accumulated more in the tumor when compared to the photosensitizer itself.;In a different approach (of delivery), the site-specific delivery of porphyrin-anti-cancer prodrug conjugate to deliver and activate anti-cancer drug only at the tumor site was explored. Biological evaluation of these compounds was carried out to see that the concept works under in vitro conditions by exposing only a region of cells. Upon successful PDT the anti cancer drug was released to cause cell destruction. Once the concept was proved in vitro, in vivo studies were performed to see the anti tumor efficacy of the drugs. Additionally, the mechanism of cell death was also studied.;Overall, with this dissertation, the goal of delivering the cytotoxic agent to the tumor site and limiting its non-specific effect was achieved.
机译:本论文着眼于利用PDT原理的两种不同的递送机制,目的是提高肿瘤部位的细胞毒性剂的利用率。一种方法是利用癌细胞线粒体的线粒体膜电位高于正常细胞,含有阳离子的化合物将被特异性地递送至癌细胞线粒体。与卟啉偶联的离域亲脂性阳离子染料用于改善光敏剂向线粒体的递送。吸收约650 nm的四氮卟啉和若丹明B或a啶橙用作卟啉和阳离子。由于它们的荧光特性,大多数这些染料都可以通过荧光显微镜观察到,以证实线粒体的定位。然后研究了吸收,光和暗毒性。;在一个继续的项目中,研究了具有近红外吸收(690nm),高单线态氧量子产率和已知的线粒体定位阳离子染料如罗丹明B和三苯基膦的核修饰卟啉光敏剂。研究了偶联物的光物理性质,如紫外线吸收,荧光,亲脂性,单线态氧的产生和FRET效率。一旦确认与阳离子的结合不会改变染料的光物理和单重态氧(SO)生成能力,就进行生物学评估。由于其荧光特性,所有这些染料均使用荧光显微镜观察,以证实线粒体的定位。探索了吸收以及光和暗毒性。体内生物分布研究表明,与光敏剂本身相比,阳离子共轭化合物在肿瘤中的蓄积更多。;在另一种(递送方式)中,卟啉-抗癌前药偶联物的定点递送可以递送和激活抗氧化剂-仅在肿瘤部位研究了抗癌药物。对这些化合物进行了生物学评估,发现该概念在体外条件下仅暴露细胞区域即可发挥作用。 PDT成功后,抗癌药物被释放以引起细胞破坏。一旦该概念在体外得到证实,便进行体内研究以观察药物的抗肿瘤功效。此外,还研究了细胞死亡的机制。总的来说,通过本论文,达到了将细胞毒剂递送至肿瘤部位并限制其非特异性作用的目的。

著录项

  • 作者

    Rajaputra, Pallavi.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Biology Molecular.;Chemistry Biochemistry.;Health Sciences Pharmacy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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