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一种基于十字形酞菁五元体的用于高效肿瘤消融的近红外二区光热剂。

A cruciform phthalocyanine pentad-based NIR-II photothermal agent for highly efficient tumor ablation.

作者信息

Pan Houhe, Li Shukun, Kan Jing-Lan, Gong Lei, Lin Chenxiang, Liu Wenping, Qi Dongdong, Wang Kang, Yan Xuehai, Jiang Jianzhuang

机构信息

Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials , Department of Chemistry , University of Science and Technology Beijing , Beijing 100083 , China . Email:

State Key Laboratory of Biochemical Engineering , Institute of Process Engineering , Chinese Academy of Sciences , Beijing 100190 , China . Email:

出版信息

Chem Sci. 2019 Jul 18;10(35):8246-8252. doi: 10.1039/c9sc02674f. eCollection 2019 Sep 21.

Abstract

Photothermal therapy in the second near-infrared window (NIR-II, 1000-1700 nm) exhibits a significant advantage over the first near-infrared window (NIR-I, 650-950 nm) in terms of both maximum permissible exposure (MPE) and penetration depth. However, the thus far reported NIR-II photothermal agents (PTAs) have been focused just on inorganic semiconducting and organic polymeric semiconducting nanoparticles. Herein a novel cruciform phthalocyanine pentad was designed, synthesized, and characterized for the first time. The water-soluble nanoparticles (Zn-HPc/DP NPs) assembled from this single molecular material with the help of DSPE-PEG-OCH exhibit characteristic absorption in the NIR-II region at 1064 nm with a large extinction coefficient of 52 L g cm, high photothermal conversion efficiency of 58.3%, and intense photoacoustic signal. Moreover, both and studies reveal the good biocompatibility and notable tumor ablation ability of Zn-HPc/DP NPs under 1064 nm laser irradiation. Theoretical density functional theory calculations interpret the two-dimensional compressional wave energy-dissipation pathway over the broad saddle curved framework of the cruciform conjugated phthalocyanine pentad, rationalizing the efficient photothermal properties of corresponding Zn-HPc/DP NPs in the NIR-II window.

摘要

在最大允许暴露量(MPE)和穿透深度方面,第二近红外窗口(NIR-II,1000 - 1700 nm)的光热疗法相对于第一近红外窗口(NIR-I,650 - 950 nm)具有显著优势。然而,迄今为止报道的NIR-II光热剂(PTA)仅集中在无机半导体和有机聚合物半导体纳米颗粒上。在此,首次设计、合成并表征了一种新型十字形酞菁五聚体。由这种单分子材料在DSPE-PEG-OCH的帮助下组装而成的水溶性纳米颗粒(Zn-HPc/DP NPs)在1064 nm的NIR-II区域表现出特征吸收,消光系数高达52 L g cm,光热转换效率为58.3%,并且具有强烈的光声信号。此外,体外和体内研究均表明Zn-HPc/DP NPs在1064 nm激光照射下具有良好的生物相容性和显著的肿瘤消融能力。理论密度泛函理论计算解释了十字形共轭酞菁五聚体的宽鞍形弯曲框架上的二维压缩波能量耗散途径,阐明了相应的Zn-HPc/DP NPs在NIR-II窗口中高效的光热特性。

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