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In vitro and in vivo studies of a chlorin-based carbon nanocarrier with photodynamic therapy features

机译:具有光动力治疗特征的氯基碳纳米骨载体体外和体内研究

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Carbonaceous materials have long been developed to utilize “nano-spaces” and numerous guest species could be encapsulated. A remarkable fluorescence difference has been observed after newly designed pyropheophorbide-a-appended carbon nanohorns were incorporated in a cellular medium and confocal microscopy was employed for the determination of the intracellular localization. Our study supported the role of carbon nanohorns as carriers of photodynamic therapy (PDT) agents and their heating behavior was discussed. We have developed a theranostic platform based on photosensitizer-conjugated carbon nanostructures and this system has been applied in an animal model. In addition, a negligible toxicity of CNH-Pyro was found in body weight experiments and histopathological examination of the major organs.
机译:长期开发碳质材料以利用“纳米空间”,并且可以将多种客销物种封装。 在新设计的焦精冰片酰胺后观察到了一种显着的荧光差异 - 所附碳纳米纳冬叶,其掺入细胞培养基中,使用共聚焦显微镜检查细胞内定位。 我们的研究支持碳纳米醇作为光动力治疗(PDT)试剂的载体和它们的加热行为的作用。 我们开发了一种基于光敏剂缀合的碳纳米结构的治疗平台,该系统已应用于动物模型。 此外,在体重实验和主要器官的体重实验和组织病理学检查中发现了CNH-PYRO的可忽略毒性。

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