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用于低密度激光照射的靶向成像引导诊断与光疗的金纳米星与吲哚菁绿的复合物

Hybrid of gold nanostar and indocyanine green for targeted imaging-guided diagnosis and phototherapy using low-density laser irradiation.

作者信息

Du Baoji, Gu Xiaoxiao, Zhao Wenjing, Liu Zuojia, Li Dan, Wang Erkang, Wang Jin

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, P. R. China.

出版信息

J Mater Chem B. 2016 Sep 21;4(35):5842-5849. doi: 10.1039/c6tb01375a. Epub 2016 Aug 15.

Abstract

Phototherapy is widely studied with the development of photothermal nanomaterials. However, the laser power density for reaching effective phototherapy is still high and dangerous for normal tissues. In this research, based on multi-functional polydopamine, we proposed a general strategy to design diverse core-shell nanoparticles with different surface charges, and synthesized a targeted nanoplatform, AuNS@PDA-PEI-FA (APP), by coupling gold nanostar (AuNS) with polyethylenimine-folate (PEI-FA). Owing to the electrostatic interaction, the as-prepared APP can anchor a negatively-charged photosensitizer, indocyanine green (ICG), for photothermal and photodynamic synergistic cancer therapy. The APP-ICG is able to realize the targeted phototherapy for tumor cells even at the low power laser density of 0.33 W cm both in vitro and in vivo. Furthermore, APP-ICG is not only a treatment nanoplatform but also a diagnosis agent. The integrative diagnosis results can be acquired by dual imaging technologies: the near-infrared fluorescence images and the photothermal images acquired by an in vivo imaging system and a thermal imaging camera, respectively. This new nanoplatform is a good diagnosis and treatment system and has the potential for further theranostics application.

摘要

随着光热纳米材料的发展,光疗法得到了广泛研究。然而,实现有效光疗法所需的激光功率密度仍然很高,对正常组织具有危险性。在本研究中,基于多功能聚多巴胺,我们提出了一种通用策略来设计具有不同表面电荷的多种核壳纳米粒子,并通过将金纳米星(AuNS)与聚乙烯亚胺-叶酸(PEI-FA)偶联,合成了一种靶向纳米平台AuNS@PDA-PEI-FA(APP)。由于静电相互作用,所制备的APP可以锚定带负电荷的光敏剂吲哚菁绿(ICG),用于光热和光动力协同癌症治疗。APP-ICG即使在体外和体内0.33 W/cm的低功率激光密度下也能够实现对肿瘤细胞的靶向光疗。此外,APP-ICG不仅是一种治疗纳米平台,也是一种诊断剂。综合诊断结果可以通过双成像技术获得:分别由体内成像系统和热成像相机获取的近红外荧光图像和光热图像。这种新型纳米平台是一种良好的诊断和治疗系统,具有进一步用于诊疗应用的潜力。

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