State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University , Shanghai 201620, People's Republic of China.
Department of Ultrasound, Shanghai General Hospital, School of Medicine, Shanghai Jiaotong University , Shanghai 200080, People's Republic of China.
ACS Appl Mater Interfaces. 2017 Feb 22;9(7):5817-5827. doi: 10.1021/acsami.6b15185. Epub 2017 Feb 8.
Development of multifunctional nanoplatforms for tumor multimode imaging and therapy is of great necessity. Herein, we report a new type of Au nanostar (NS)-coated, perfluorohexane (PFH)-encapsulated hollow mesoporous silica nanocapsule (HMS) modified with poly(ethylene glycol) (PEG) for tumor multimode ultrasonic (US)/computed tomography (CT)/photoacoustic (PA)/thermal imaging, and photothermal therapy (PTT). HMSs were first synthesized, silanized to have thiol surface groups, and coated with gold nanoparticles via a Au-S bond. Followed by growth of Au NSs on the surface of the HMSs, encapsulation of PFH in the interior of the HMSs, and surface conjugation of thiolated PEG, multifunctional HMSs@Au-PFH-mPEG NSs (for short, HAPP) were formed and well-characterized. We show that the HAPP are stable in a colloidal manner and noncytotoxic in the studied range of concentrations, possess multimode US/CT/PA/thermal imaging ability, and can be applied for multimode US/CT/PA/thermal imaging of tumors in vivo after intravenous or intratumoral injection. Additionally, the near-infrared absorption property of the HAPP enables the use of the HAPP for photothermal ablation of cancer cells in vitro and a tumor model in vivo after intratumoral injection. The developed multifunctional HAPP may be used as a novel multifunctional theranostic nanoplatform for tumor multimode imaging and PTT.
开发用于肿瘤多模式成像和治疗的多功能纳米平台非常有必要。在此,我们报告了一种新型的金纳米星(NS)包覆、全氟己烷(PFH)包封的中空介孔硅纳米胶囊(HMS),经过聚乙二醇(PEG)修饰后可用于肿瘤多模式超声(US)/计算机断层扫描(CT)/光声(PA)/热成像和光热治疗(PTT)。首先合成 HMS,硅烷化使其具有巯基表面基团,并通过 Au-S 键在其表面包覆金纳米粒子。然后在 HMS 表面生长 Au NS,将 PFH 封装在 HMS 内部,并在表面接枝硫醇化的 PEG,形成多功能 HMS@Au-PFH-mPEG NS(简称 HAPP),并对其进行了很好的表征。我们表明,HAPP 以胶体形式稳定且在研究浓度范围内无细胞毒性,具有多模式 US/CT/PA/热成像能力,并且可以在静脉内或肿瘤内注射后用于体内肿瘤的多模式 US/CT/PA/热成像。此外,HAPP 的近红外吸收特性使其可用于体外光热消融癌细胞和肿瘤模型的体内实验。开发的多功能 HAPP 可用作肿瘤多模式成像和 PTT 的新型多功能治疗纳米平台。