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首页> 外文期刊>Angewandte Chemie >Phthalocyanine-Assembled Nanodots as Photosensitizers for Highly Efficient Type I Photoreactions in Photodynamic Therapy
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Phthalocyanine-Assembled Nanodots as Photosensitizers for Highly Efficient Type I Photoreactions in Photodynamic Therapy

机译:酞菁组装纳米蛋白作为光敏剂,用于光动力治疗中的高效I型光电反应

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摘要

Owing to their unique, nanoscale related optical properties, nanostructures assembled from molecular photosensitizers (PSs) have interesting applications in phototheranostics. However, most nanostructured PS assemblies are super-quenched, thus, preventing their use in photodynamic therapy (PDT). Although some of these materials undergo stimuli-responsive disassembly, which leads to partial recovery of PDT activity, their therapeutic potentials are unsatisfactory owing to a limited ability to promote generation reactive oxygen species (ROS), especially via typeI photoreactions (i.e., not by O-1(2) generation). Herein we demonstrate that a new, nanostructured phthalocyanine assembly, NanoPcA, has the ability to promote highly efficient ROS generation via the typeI mechanism. The results of antibacterial studies demonstrate that NanoPcA has potential PDT applications.
机译:由于它们独特的纳米级相关光学性质,从分子光敏剂(PSS)组装的纳米结构在光曝气机中具有有趣的应用。 然而,大多数纳米结构PS组件是超级淬火的,因此防止它们在光动力疗法(PDT)中使用。 虽然这些材料中的一些经过刺激响应性拆卸,但是由于促进了活性氧物质(ROS),特别是通过Typei光反应(即,不是通过O的o),它们的治疗电位是不令人满意的 -1(2)代)。 在此,我们证明了一种新的纳米结构的酞菁组装纳米孔,具有通过TypeI机制促进高效的ROS产生的能力。 抗菌研究的结果表明纳米帕卡具有潜在的PDT应用。

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