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基于荧光共振能量转移的金纳米簇-吲哚菁绿纳米探针用于同步癌症成像、治疗和实时监测。

Gold Nanoclusters-Indocyanine Green Nanoprobes for Synchronous Cancer Imaging, Treatment, and Real-Time Monitoring Based on Fluorescence Resonance Energy Transfer.

机构信息

Paul-Drude-Institut für Festkörperelektronik , Berlin 10117, Germany.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 2;9(30):25114-25127. doi: 10.1021/acsami.7b06192. Epub 2017 Jul 21.

Abstract

Well-designed gold nanoclusters-indocyanine green nanoprobes (Au NCs-INPs) have been developed by the conjugation of Au NC assemblies with indocyanine green (ICG) for the therapeutic real-time monitoring based on fluorescence resonance energy transfer (FRET). The synthesized Au NCs-INPs demonstrated the improved cellular uptake and effective tumor targeting because of the enhanced permeability and retention effect and the gp60-mediated secreted protein acidic and rich in cysteine combined transport pathway, suggesting excellent dual-modal near-infrared fluorescence and photoacoustic imaging. Moreover, the simultaneous photodynamic therapy (PDT) and photothermal therapy (PTT) of Au NCs-INPs exhibited higher cancer cell killing and tumor removal efficiency than those of PDT or PTT alone. More importantly, a promising therapeutic monitoring strategy was performed based on FRET between Au NCs and ICG, suggesting that Au NCs-INPs could be utilized to evaluate the therapeutic response by real-time monitoring the change in Au NCs in fluorescence intensity together with ICG supersession. Therefore, Au NCs-INPs as a novel photosensitizer have great potentials for combined tumor imaging, therapy, and therapeutic monitoring in real time.

摘要

设计良好的金纳米簇-吲哚菁绿纳米探针(Au NCs-INPs)是通过将 Au NC 组装体与吲哚菁绿(ICG)缀合而开发的,用于基于荧光共振能量转移(FRET)的治疗实时监测。合成的 Au NCs-INPs 由于增强的通透性和保留效应以及 gp60 介导的分泌蛋白酸性和富含半胱氨酸的联合转运途径,表现出了提高的细胞摄取和有效的肿瘤靶向作用,表明其具有优异的双模式近红外荧光和光声成像。此外,Au NCs-INPs 的光动力治疗(PDT)和光热治疗(PTT)同时显示出比单独 PDT 或 PTT 更高的癌细胞杀伤和肿瘤清除效率。更重要的是,基于 Au NCs 和 ICG 之间的 FRET 进行了有前途的治疗监测策略,表明 Au NCs-INPs 可以通过实时监测荧光强度中 Au NCs 的变化以及 ICG 的取代来评估治疗反应。因此,Au NCs-INPs 作为一种新型光敏剂,在肿瘤的联合成像、治疗和实时治疗监测方面具有巨大的潜力。

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