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Conjugate Systems Using Delocalized Cationic Dyes as a Carrier of Photosensitizers to Mitochondria

机译:使用离域阳离子染料作为线粒体光敏剂载体的共轭体系

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Following Photofrin, the first generation photosensitizer, several second generation photosensitizers have been developed with improved characteristics. More recently, third generation photosensitizers are proposed to achieve higher selectivity toward cancer cells/ tumor tissue. Elevated mitochondrial membrane potential of malignant cells has tested as a tool for preferential uptake of certain photosensitizers to cancer cells. In the same line, we designed new conjugate systems where delocalized cationic moiety delivers a photosensitizer to mitochondria. To prove our concept, two prototype conjugates (TPP-Rh and TPP-AO) were prepared using two cationic dyes (Rhodamine and Acridine Orange) and a photosensitizer (tetraphenylporphyrin, TPP). The two conjugates generated singlet oxygen quite well. Interestingly, the two conjugates showed higher cellular uptake by mover than 8 times than TPP-OH as well as higher phototoxicity. In particular, TPP-Rh showed closer localization pattern to mitochondria than TPP-OH.
机译:在第一代光敏剂Photofrin之后,已开发出几种具有改进特性的第二代光敏剂。最近,提出了第三代光敏剂以实现对癌细胞/肿瘤组织的更高的选择性。恶性细胞线粒体膜电位的升高已被测试为某些光敏剂优先摄取给癌细胞的一种工具。在同一行中,我们设计了新的共轭体系,其中离域阳离子部分将光敏剂传递给线粒体。为了证明我们的概念,使用两种阳离子染料(若丹明和A啶橙)和光敏剂(四苯基卟啉,TPP)制备了两种原型共轭物(TPP-Rh和TPP-AO)。两种结合物产生的单线态氧非常好。有趣的是,这两种结合物显示出的动植物细胞吸收率是TPP-OH的8倍以上,并且具有更高的光毒性。特别地,TPP-Rh显示出比TPP-OH更接近线粒体的定位模式。

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