首页> 外文期刊>Journal of drug targeting >Polymeric micelles of zinc protoporphyrin for tumor targeted delivery based on EPR effect and singlet oxygen generation.
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Polymeric micelles of zinc protoporphyrin for tumor targeted delivery based on EPR effect and singlet oxygen generation.

机译:基于EPR效应和单线态氧生成的用于肿瘤靶向递送的原卟啉锌聚合物胶束。

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摘要

Polymeric micelles of zinc protoporphyrin (ZnPP) with water soluble biocompatible and amphiphilic polymer, polyethylene glycol (PEG) demonstrated unique characteristics to target tumor tissues selectively based on the enhanced permeability and retention (EPR) effect. The micellar macromolecular drug of ZnPP (SMA-ZnPP and PEG-ZnPP) previously showed notable anticancer activity as a consequence of selective tumor targeting ability and its potent HO-1 inhibitory potential, resulting in suppressed biliverdin/bilirubin production in tumors thereby leading to oxystress induced tumor cell killing. Furthermore, recent findings also showed that ZnPP efficiently generated reactive singlet oxygen under illumination of visible light, laser, or xenon light source, which could augment its oxystress induced cell killing abilities. In the present paper, we report the synergistic effects of light induced photosensitizing capabilities and HO-1 inhibitory potentials of these unique micelles when tested in vitro and in vivo on tumor models under localized, mild illumination conditions using a tungsten-xenon light source. The results indicate that these water soluble polymeric micelles of ZnPP portend to be promising candidates for targeted chemotherapy as well as photodynamic therapy against superficial tumors as well as solid tumors located at light penetrable depths.
机译:具有水溶性生物相容性和两亲性聚合物的聚原卟啉锌(ZnPP)的聚合物胶束(PEG)表现出独特的特性,可基于增强的通透性和保留(EPR)效应选择性地靶向肿瘤组织。 ZnPP(SMA-ZnPP和PEG-ZnPP)的胶束大分子药物先前显示出显着的抗癌活性,这是由于选择性肿瘤靶向能力及其强大的HO-1抑制潜力所致,从而抑制了肿瘤中胆绿素/胆红素的产生,从而导致了氧应激诱导肿瘤细胞杀伤。此外,最近的发现还表明,ZnPP在可见光,激光或氙气光源的照射下有效地产生了反应性单线态氧,这可以增强其对氧应激诱导的细胞杀伤能力。在本文中,我们报道了在使用钨-氙灯光源在局部温和照明条件下在肿瘤模型上进行体外和体内测试时,这些独特的胶束的光诱导光敏能力和HO-1抑制电位的协同效应。结果表明,ZnPP的这些水溶性高分子胶束有望成为靶向疗法以及针对浅表肿瘤以及位于浅穿透深度的实体瘤的光动力疗法的有前途的候选者。

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