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瘤内或静脉注射生物功能化吲哚菁绿纳米结构增强肿瘤治疗。

Enhanced tumor treatment using biofunctional indocyanine green-containing nanostructure by intratumoral or intravenous injection.

机构信息

MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

出版信息

Mol Pharm. 2012 Mar 5;9(3):514-22. doi: 10.1021/mp200526m. Epub 2012 Feb 22.

Abstract

Indocyanine green (ICG) is a conventional dye that can be used in clinical near-infrared (NIR) imaging, and it is also an effective light absorber for laser-mediated photothermal therapy. However, applications of ICG were limited due to its fast degradation in aqueous media and quick clearance from the body. Herein, an ICG-containing nanostructure, ICG-PL-PEG, was developed for photothermal therapy, which was self-assembled by ICG and phospholipid-polyethylene glycol (PL-PEG). Our in vitro and in vivo experiments demonstrated that ICG-PL-PEG suspension was more efficient in producing a NIR-dependent temperature increase than ICG alone, due to the increase of ICG monomers from the addition of PL-PEG to match the central wavelength of the 808 nm laser. When conjugated with integrin α(v)β(3) monoclonal antibody (mAb), ICG-PL-PEG could be selectively internalized and retained in target tumor cells. Irradiation of an 808 nm laser after intravenous administration of ICG-PL-PEG-mAb resulted in tumor suppression in mice, while ICG alone had only limited effect. This is the first time an ICG-containing nanostructure has been used through systemic administration to achieve an efficient in vivo photothermal effect for cancer treatment. Therefore, ICG-PL-PEG could be used as a fluorescent marker as well as a light-absorber for imaging-guided photothermal therapy. All the components of ICG-PL-PEG have been approved for human use. Therefore, this unique ICG-containing nanostructure has great potential in clinical applications.

摘要

吲哚菁绿(ICG)是一种常规染料,可用于临床近红外(NIR)成像,也是激光介导光热疗法的有效光吸收剂。然而,由于其在水介质中的快速降解和从体内迅速清除,ICG 的应用受到限制。在此,开发了一种含有 ICG 的纳米结构 ICG-PL-PEG 用于光热治疗,它由 ICG 和磷脂-聚乙二醇(PL-PEG)自组装而成。我们的体外和体内实验表明,由于添加 PL-PEG 增加了 ICG 单体以匹配 808nm 激光的中心波长,因此 ICG-PL-PEG 悬浮液比单独使用 ICG 更有效地产生依赖于 NIR 的温度升高。当与整合素 α(v)β(3)单克隆抗体(mAb)结合时,ICG-PL-PEG 可以选择性地内化并保留在靶肿瘤细胞中。静脉注射 ICG-PL-PEG-mAb 后,用 808nm 激光照射导致小鼠肿瘤抑制,而单独使用 ICG 只有有限的效果。这是首次通过系统给药使用含有 ICG 的纳米结构在体内实现有效的光热治疗癌症效果。因此,ICG-PL-PEG 可以用作荧光标记物以及用于成像引导光热治疗的光吸收剂。ICG-PL-PEG 的所有成分均已获准用于人体。因此,这种独特的含有 ICG 的纳米结构在临床应用中具有很大的潜力。

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