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基于介孔硅纳米粒子的双模成像诊疗系统用于增强癌症光疗。

A Dual-Model Imaging Theragnostic System Based on Mesoporous Silica Nanoparticles for Enhanced Cancer Phototherapy.

机构信息

Tianjin Key Laboratory of Biomedical Materials, Institute of Biomedical Engineering, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin, 300192, China.

State Key Laboratory of Translational Cardiovascular Medicine, Fuwai Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100037, China.

出版信息

Adv Healthc Mater. 2019 Oct;8(19):e1900840. doi: 10.1002/adhm.201900840. Epub 2019 Sep 12.

Abstract

Mesoporous silica nanoparticles (MSNs) show great promise to be exploited as versatile multifunctional nanocarriers for effective cancer diagnosis and treatment. In this work, perfluorohexane (PFH)-encapsulated MSNs with indocyanine green (ICG)-polydopamine (PDA) layer and poly(ethylene glycol)-folic acid coating (designated as MSNs-PFH@PDA-ICG-PEG-FA) are successfully fabricated to achieve tumor ultrasonic (US)/near-infrared fluorescence (NIRF) imaging as well as photothermal therapy (PTT)/photodynamic therapy (PDT). MSNs-PFH@PDA-ICG-PEG-FA exhibits good monodispersity with high ICG loading, significantly enhances ICG photostability, and greatly improves cellular uptake. Upon single 808 nm NIR irradiation, the nanocarrier not only efficiently generates hyperthermia to realize PTT, but also produces reactive oxygen species (ROS) for effective PDT. Meanwhile, NIR irradiation can trigger PFH to undergo vaporization and provide a super-resolution US image. Thus, the PTT/PDT combination therapy can be dually guided by PFH-induced US imaging and ICG-induced NIRF imaging. In vivo antitumor studies demonstrate that PTT/PDT from MSNs-PFH@PDA-ICG-PEG-FA significantly inhibits tumor growth and achieves a cure rate of 60% (three out of five mice are completely cured). Hence, the multifunctional MSNs appear to be a promising theragnostic nanoplatform for multimodal cancer imaging and therapy.

摘要

介孔硅纳米颗粒(MSNs)作为多功能纳米载体,在癌症的有效诊断和治疗方面具有很大的应用潜力。在这项工作中,成功制备了全氟己烷(PFH)封装的介孔硅纳米颗粒,其表面包覆有聚吲哚胺(PDA)层和聚乙二醇-叶酸(PEG-FA)(命名为 MSNs-PFH@PDA-ICG-PEG-FA),以实现肿瘤超声(US)/近红外荧光(NIRF)成像以及光热治疗(PTT)/光动力治疗(PDT)。MSNs-PFH@PDA-ICG-PEG-FA 具有良好的单分散性,载药量高,显著提高了 ICG 的光稳定性,并大大增强了细胞摄取。在单次 808nm NIR 照射下,该纳米载体不仅能有效地产生热疗来实现 PTT,还能产生活性氧(ROS)以实现有效的 PDT。同时,NIR 照射能触发 PFH 发生汽化,提供超分辨率的 US 图像。因此,PTT/PDT 联合治疗可以通过 PFH 诱导的 US 成像和 ICG 诱导的 NIRF 成像双重引导。体内抗肿瘤研究表明,MSNs-PFH@PDA-ICG-PEG-FA 的 PTT/PDT 能显著抑制肿瘤生长,治愈率达到 60%(5 只小鼠中有 3 只完全治愈)。因此,多功能 MSNs 有望成为用于癌症多模态成像和治疗的有前途的诊疗纳米平台。

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