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多功能“附加”模块实现近红外二区成像引导的耐药肺癌光热与化疗协同治疗

Multifunctional "Add-On" Module Enabled NIR-II Imaging-Guided Synergistic Photothermal and Chemotherapy of Drug-Resistant Lung Cancer.

作者信息

Li Yu, Zhu Qiang, He Pei, Wu Tingjuan, Ouyang Zhen, Zhu Lijun, Wang Fang, Zhou Xin, Jiang Zhong-Xing, Chen Shizhen

机构信息

Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences-Wuhan National Laboratory for Optoelectronics, Wuhan 430071, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

ACS Appl Mater Interfaces. 2024 Dec 11;16(49):67275-67288. doi: 10.1021/acsami.4c14519. Epub 2024 Nov 29.

Abstract

Imaging-guided chemo-photothermal combination therapy (chemo-PTT) is recognized for its synergistic therapeutic effects, reduced side effects, and minimal drug resistance, while the development of such theranostics has been hampered by poor imaging and therapy performance and tedious formulation. Herein, we introduce an all-in-one "add-on" module () for the convenient construction of doxorubicin (DOX)-loaded nanoparticles (DOX@BBT) and efficient second near-infrared (NIR-II) fluorescence imaging (FLI)-guided synergistic chemo-PTT of drug-resistant lung cancer. The delicate Janus amphiphilic structure of enables multifunctionality, including NIR-II FLI, aggregation-induced emission (AIE) characteristics, moderate photothermal conversion efficiency (PCE), excellent photostability, and polyethylene glycolation (PEGylation), which could improve the NIR-II FLI and PTT performance, relieve the complexity in theranostics, and enable high reproducibility of the multifunctional theranostics. Confocal microscopy revealed that efficiently delivers DOX into cells, resulting in an increased accumulation of DOX that exceeds the efflux capacity of DOX-resistant cells. Both in vitro and in vivo studies demonstrate that enhances the effectiveness of , achieving highly effective photothermal-chemo synergistic therapy against DOX-resistant lung cancer. Beyond developing a versatile "add-on" module for conveniently constructing multifunctional nanosystems, this study provides new insights into the design of advanced theranostics for precise biomedical applications.

摘要

成像引导的化疗-光热联合疗法(化疗-光热疗法)因其协同治疗效果、减少副作用和最小耐药性而受到认可,然而,这种治疗诊断学的发展受到成像和治疗性能不佳以及制剂繁琐的阻碍。在此,我们引入了一个一体化的“附加”模块(),用于方便地构建负载阿霉素(DOX)的纳米颗粒(DOX@BBT),并实现对耐药肺癌的高效近红外二区(NIR-II)荧光成像(FLI)引导的协同化疗-光热疗法。其精致的Janus两亲结构具有多功能性,包括NIR-II FLI、聚集诱导发光(AIE)特性、适度的光热转换效率(PCE)、优异的光稳定性和聚乙二醇化(PEGylation),这可以提高NIR-II FLI和光热疗法的性能,减轻治疗诊断学的复杂性,并实现多功能治疗诊断学的高重现性。共聚焦显微镜显示,其能有效地将DOX递送至细胞内,导致DOX在细胞内的积累增加,超过了耐药细胞的外排能力。体外和体内研究均表明,其增强了DOX的疗效,实现了对耐药肺癌的高效光热-化疗协同治疗。除了开发一个用于方便构建多功能纳米系统的通用“附加”模块外,本研究还为精确生物医学应用的先进治疗诊断学设计提供了新的见解。

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