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基于碳纳米角的近红外光响应成像引导光热和光动力协同治疗纳米平台用于高效癌症治疗。

Near-Infrared Light Responsive Imaging-Guided Photothermal and Photodynamic Synergistic Therapy Nanoplatform Based on Carbon Nanohorns for Efficient Cancer Treatment.

机构信息

State Key Laboratory for Chemistry and Molecular Engineering of, Medical Resources, School of Chemistry and Pharmaceutical Sciences, Guangxi Normal University, Guilin, 541004, P. R. China.

出版信息

Chemistry. 2018 Sep 3;24(49):12827-12837. doi: 10.1002/chem.201802611. Epub 2018 Aug 10.

Abstract

Indocyanine green (ICG) is an effective light absorber for laser-mediated photodynamic therapy. However, applications of ICG are limited due to its rapid degradation and poor photostability in water. Herein, we report the development of a multifunctional nanoplatform by coating ICG on the surface of single-walled carbon nanohorns (SWNHs) through π-π stacking, obtaining SWNH-ICGs with high solubility and stability under physiological conditions. The SWNH-ICGs could be used as a single nanoplatform to simultaneously produce satisfactory hyperthermia and reactive oxygen species under near-infrared (NIR) laser irradiation. In addition, the SWNH-ICGs not only improved the photostability of ICG in different media, but also protected it from light degradation. The SWNH-ICGs exhibited highly efficient thermal/photoacoustic (PA) imaging-guided photothermal therapy (PTT) and photodynamic therapy (PDT) effects, even under low-power laser irradiation (0.3 W cm ) in vitro. Combined PTT and PDT effectively killed triple-negative breast cancer 4T1 cells, demonstrating a markedly improved and synergistic therapeutic effect compared to PTT or PDT alone. Furthermore, significant tumor growth inhibition as well as tumor cell death were observed following PTT/PDT at 808 nm laser irradiation, confirming the synergistic effects of SWNH-ICGs over free ICG in vivo. This facile and simple methodology for thermal/PA imaging-guided PTT/PDT suggests that SWNH-ICGs may serve as an effective nanoplatform for cancer therapy.

摘要

吲哚菁绿(ICG)是一种有效的激光介导光动力治疗光吸收剂。然而,由于其在水中的快速降解和较差的光稳定性,ICG 的应用受到限制。在此,我们通过π-π堆积将 ICG 包覆在单壁碳纳米角(SWNHs)表面上,从而开发出一种多功能纳米平台,获得了在生理条件下具有高溶解性和稳定性的 SWNH-ICGs。SWNH-ICGs 可以用作单一纳米平台,在近红外(NIR)激光照射下同时产生令人满意的热疗和活性氧。此外,SWNH-ICGs 不仅提高了 ICG 在不同介质中的光稳定性,而且还保护其免受光降解。SWNH-ICGs 在体外即使在低功率激光照射(0.3 W/cm )下,也表现出高效的热/光声(PA)成像引导光热治疗(PTT)和光动力治疗(PDT)效果。联合 PTT 和 PDT 可有效杀死三阴性乳腺癌 4T1 细胞,与单独 PTT 或 PDT 相比,显示出明显改善的协同治疗效果。此外,在 808nm 激光照射下进行 PTT/PDT 后,观察到明显的肿瘤生长抑制和肿瘤细胞死亡,证实了 SWNH-ICGs 在体内对游离 ICG 的协同作用。这种简便的热/PA 成像引导 PTT/PDT 方法表明,SWNH-ICGs 可能成为癌症治疗的有效纳米平台。

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