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各向异性等离子体金属异质结构作为用于近红外光激活荧光放大和光疗的诊疗纳米系统

Anisotropic Plasmonic Metal Heterostructures as Theranostic Nanosystems for Near Infrared Light-Activated Fluorescence Amplification and Phototherapy.

作者信息

Chang Yun, Feng Yanlin, Cheng Yan, Zheng Runxiao, Wu Xiaqing, Jian Hui, Zhang Dawei, Tang Zhaohui, Wang Zhenxin, Hao Jiaming, Zhang Haiyuan

机构信息

Laboratory of Chemical Biology Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun 130022 China.

University of Chinese of Academy of Sciences Beijing 100049 China.

出版信息

Adv Sci (Weinh). 2019 Apr 5;6(11):1900158. doi: 10.1002/advs.201900158. eCollection 2019 Jun 5.

Abstract

The development of sophisticated theranostic systems for simultaneous near infrared (NIR) fluorescence imaging and phototherapy is of particular interest. Herein, anisotropic plasmonic metal heterostructures, Pt end-deposited Au nanorods (PEA NRs), are developed to efficiently produce hot electrons under 808 nm laser irradiation, exhibiting the strong electric density. These hot electrons can release the heat through electron-phonon relaxation and form reactive oxygen species through chemical transformation, as a result of potent photothermal and photodynamic performance. Simultaneously, the confined electromagnetic field of PEA NRs can transfer energy to adjacent polyethylene glycol (PEG)-linked NIR fluorophores (CF) based on their energy overlap mechanism, leading to remarkable NIR fluorescence amplification in CF-PEA NRs. Various PEG linkers (1, 3.4, 5.0, and 10 kD) are employed to regulate the distance between CF and PEA NRs of CF-PEA NRs, and the maximum fluorescence intensity is achieved in CF-PEA NRs. After further attachment with i-motif DNA/Nrf2 siRNA chimera to simultaneously suppress both cellular antioxidant defense and hyperthermia resistance effects, the final biocompatible CF-PEA@siRNA NRs present promising NIR fluorescence imaging ability and 808 nm laser-activated photothermal and photodynamic therapeutic effect in MCF7 cells and tumor-bearing mice, holding great potential for cancer therapy.

摘要

用于同时进行近红外(NIR)荧光成像和光疗的先进诊疗系统的开发备受关注。在此,我们开发了各向异性等离子体金属异质结构,即铂端沉积金纳米棒(PEA NRs),以在808 nm激光照射下高效产生热电子,表现出强电子密度。这些热电子可通过电子 - 声子弛豫释放热量,并通过化学转化形成活性氧物种,从而具有强大的光热和光动力性能。同时,基于能量重叠机制,PEA NRs的受限电磁场可将能量转移至相邻的聚乙二醇(PEG)连接的近红外荧光团(CF),导致CF - PEA NRs中出现显著的近红外荧光放大。采用各种PEG接头(1、3.4、5.0和10 kD)来调节CF - PEA NRs中CF与PEA NRs之间的距离,并且在CF - PEA NRs中实现了最大荧光强度。在进一步连接i - 基序DNA/Nrf2 siRNA嵌合体以同时抑制细胞抗氧化防御和热耐受效应后,最终的生物相容性CF - PEA@siRNA NRs在MCF7细胞和荷瘤小鼠中展现出有前景的近红外荧光成像能力以及808 nm激光激活的光热和光动力治疗效果,在癌症治疗方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1174/6548947/b52a068c102a/ADVS-6-1900158-g001.jpg

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