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用于高效光声成像和光热癌症治疗的可激活近红外二区等离子体纳米诊疗剂。

Activatable NIR-II Plasmonic Nanotheranostics for Efficient Photoacoustic Imaging and Photothermal Cancer Therapy.

机构信息

Department of Radiology, Xinqiao Hospital, Army Medical University, Chongqing, 400037, P. R. China.

State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, Center for Molecular Imaging and Translational Medicine, School of Public Health, Xiamen University, Xiamen, 361102, P. R. China.

出版信息

Adv Mater. 2021 Jan;33(3):e2006532. doi: 10.1002/adma.202006532. Epub 2020 Dec 6.

DOI:10.1002/adma.202006532
PMID:33283355
Abstract

Precise manipulation of optical properties through the structure-evolution of plasmonic nanoparticles is of great interest in biomedical fields including bioimaging and phototherapy. However, previous success has been limited to fixed assembled structures or visible-NIR-I absorption. Here, an activatable NIR-II plasmonic theranostics system based on silica-encapsulated self-assembled gold nanochains (AuNCs@SiO ) for accurate tumor diagnosis and effective treatment is reported. This transformable chain structure breaks through the traditional molecular imaging window, whose absorption can be redshifted from the visible to the NIR-II region owing to the fusion between adjacent gold nanoparticles in the restricted local space of AuNCs@SiO triggered by the high H O level in the tumor microenvironment (TME), leading to the generation of a new string-like structure with strong NIR-II absorption, which is further confirmed by finite-difference-time-domain (FDTD) simulation. With the TME-activated characteristics, AuNCs@SiO exhibits excellent properties for photoacoustic imaging and a high photothermal conversion efficiency of 82.2% at 1064 nm leading to severe cell death and remarkable tumor growth inhibition in vivo. These prominent intelligent TME-responsive features of AuNCs@SiO may open up a new avenue to explore optical regulated nano-platform for intelligent, accurate, and noninvasive theranostics in NIR-II window.

摘要

通过等离子体纳米粒子的结构演变来精确操控光学性质,在包括生物成像和光疗在内的生物医学领域引起了极大的兴趣。然而,以前的成功仅限于固定组装结构或可见-NIR-I 吸收。在这里,报道了一种基于二氧化硅封装自组装金纳米链(AuNCs@SiO )的可激活近红外二区(NIR-II)等离子体治疗系统,用于精确的肿瘤诊断和有效治疗。这种可变形的链式结构突破了传统的分子成像窗口,由于肿瘤微环境(TME)中高 H O 水平引发的 AuNCs@SiO 中相邻金纳米粒子在受限的局部空间融合,其吸收可以从可见区红移到 NIR-II 区,从而产生具有强 NIR-II 吸收的新串状结构,这进一步通过有限差分时域(FDTD)模拟得到证实。由于具有 TME 激活特性,AuNCs@SiO 表现出优异的光声成像性能和在 1064nm 处 82.2%的高光热转换效率,导致严重的细胞死亡和显著的体内肿瘤生长抑制。AuNCs@SiO 的这些显著的智能 TME 响应特性可能为探索用于 NIR-II 窗口的智能、精确和非侵入性治疗的光学调控纳米平台开辟了新途径。

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