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一种与可再生纳米植入物集成的pH可逆激活近红外光热/光动力一体化试剂,用于图像引导的精确光疗。

A pH reversibly activatable NIR photothermal/photodynamic-in-one agent integrated with renewable nanoimplants for image-guided precision phototherapy.

作者信息

Zhao Xu, Zhao Kai-Chao, Chen Li-Jian, Liu Yu-Shi, Liu Jia-Lin, Yan Xiu-Ping

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University Wuxi 214122 China

International Joint Laboratory on Food Safety, Jiangnan University Wuxi 214122 China.

出版信息

Chem Sci. 2020 Oct 31;12(1):442-452. doi: 10.1039/d0sc04408c.

Abstract

Phototherapy has great potential to revolutionize conventional therapeutic modalities. However, most phototherapeutic strategies based on multicomponent therapeutic agents generally lack tumor-specificity, resulting in asynchronous therapy and superimposed side-effects. Severe heat damage is also inevitable because of the necessity of continuous external irradiation. Here we show the design of an acid-activated and continuous external irradiation-free photothermal and photodynamic (PTT/PDT) synchronous theranostic nanoplatform for precision tumor-targeting near-infrared (NIR) image-guided therapy. pH-reversibly responsive brominated asymmetric cyanine is designed as the tumor-specific NIR PTT/PDT-in-one agent to enhance anticancer efficiency and reduce side-effects. Ultra-small NIR persistent luminescence nanoparticles are prepared as both the imaging unit and renewable nanoimplant. Biotin functionalized polyethylene glycol is introduced to endow active tumor-targeting ability and prolong blood-circulation. The developed smart platform offers merits of reversible activation, PTT/PDT synergetic enhancement, tumor targetability and continuous external irradiation-free properties, allowing autofluorescence-free image-guided phototherapy only in tumor sites. This work paves the way to developing smart theranostic nanoplatforms for precision medicine.

摘要

光疗具有革新传统治疗方式的巨大潜力。然而,大多数基于多组分治疗剂的光疗策略通常缺乏肿瘤特异性,导致治疗不同步且副作用叠加。由于需要持续外部照射,严重的热损伤也不可避免。在此,我们展示了一种用于精确肿瘤靶向近红外(NIR)图像引导治疗的酸激活且无需连续外部照射的光热和光动力(PTT/PDT)同步诊疗纳米平台的设计。pH可逆响应的溴化不对称花菁被设计为肿瘤特异性的近红外PTT/PDT一体化试剂,以提高抗癌效率并减少副作用。制备超小的近红外持续发光纳米颗粒作为成像单元和可再生纳米植入物。引入生物素功能化的聚乙二醇以赋予主动肿瘤靶向能力并延长血液循环时间。所开发的智能平台具有可逆激活、PTT/PDT协同增强、肿瘤靶向性和无需连续外部照射的特性,仅在肿瘤部位实现无自发荧光的图像引导光疗。这项工作为开发用于精准医学的智能诊疗纳米平台铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baf8/8178746/d162af9bc767/d0sc04408c-f1.jpg

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