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Cyclomatrix Polyphosphazene Porous Networks with J-Aggregated Multiphthalocyanine Arrays for Dual-Modality Near-Infrared Photosensitizers

机译:Cyclomatrix多磷腈多孔网络,具有J-聚集的多碘氰酸盐阵列,用于双模近红外光敏光敏剂

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摘要

Here, we have developed a kind of cyclomatrix polyphosphazene with excellent photophysical properties and pursued their potential of being organic photosensitizers for dual-modality phototherapy. Briefly, hexachlorocyclophosphazene (HCCP) with D-3h, symmetry is adopted as a synthon to attach Zn(II) phthalocyanine (ZnPc) to form dendritic units that are covalently expanded into a soluble porous network through the nucleophilic substitution reaction. Molecular simulation reveals that the multi-ZnPc units around HCCP can be oriented in a side-by-side manner, leading to the remarkably red-shifted and intense absorbance in the near-infrared (NIR) region. To validate the potential in bioapplication, such ZnPc-based polyphosphazenes are assembled by incorporation of polyvinylpyrrolidone (PVP) to produce the uniform nanoparticles with aqueous dispersibility and biocompatibility. From the in vitro results, the PVP-stabilized photosensitizing nanoparticles can undergo the photothermal/photodynamic processes to concurrently generate heat and singlet oxygen for efficiently killing cancer cells upon exposure to a single-bandwidth NIR laser (785 nm). Compared with the known organic photosensitizers, cyclomatrix polyphosphazene would be a promising platform to configure a diversity of reticular arrays with dense and oriented arrangement of dye molecules, leading to their largely enhanced photophysical and photochemical properties.
机译:在这里,我们开发了一种具有优异的光药性的环瘤多磷腈,并追求其具有用于双模色光疗法的有机光敏剂的潜力。简而言之,采用D-3H的六氯环磷酰胺(HCCP),对称性作为合成素以连接Zn(II)酞菁(ZnPC),形成通过亲核取代反应共价膨胀成可溶性多孔网络的树突单元。分子模拟显示,HCCP周围的多ZnPC单元可以以并排的方式定向,导致近红外(NIR)区域的显着红移和强烈的吸光度。为了验证生物缺陷的电位,通过掺入聚乙烯吡咯烷酮(PVP)来组装这种基于ZnPC的多磷腈,以产生具有水分散性和生物相容性的均匀纳米颗粒。从体外结果,PVP稳定的光敏纳米颗粒可以经历光热/光动力学过程,同时产生热量和单态氧,以便在暴露于单带宽NIR激光器(785nm)时有效地杀死癌细胞。与已知的有机光敏剂相比,Cyclomatrix多磷腈将是一种有希望的平台,用于构成具有致密和定向分子布置的网状阵列的多样性,导致它们主要增强的光学和光化学性质。

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