Development of a pH/NIR/temperature-responsive drug delivery system using AuNRs@ZnO@mPDA nanoparticles for synergistic cancer therapy

IF 6.3 2区 材料科学 Q2 CHEMISTRY, PHYSICAL Surfaces and Interfaces Pub Date : 2025-03-03 DOI:10.1016/j.surfin.2025.106153
Zhen Ma , Zehua Han , Menghui Wan , Zhiqiang Wang , Minjie Gao , Yanbao Zhao , Lei Sun
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Abstract

In recent years, there has been a notable focus on the development and design of multifunctional drug delivery systems tailored for photothermal, photodynamic, and chemotherapy triple-modality cancer treatment. The paper presents the utilization of gold nanorods (AuNRs) for photothermal effect, zinc oxide (ZnO) for photodynamic effect, mesoporous polydopamine (mPDA) loaded with curcumin (Cur), and 1-tetradecanol (TD) as a temperature-sensitive gating switch to achieve integration of functional organic/inorganic nanomaterials. The core-shell structural nanocarriers (AuNRs@ZnO@mPDA-Cur/TD) achieved a drug loading rate of 178 mg/g. It is important to note that the pH-responsive release properties of Cur have been observed due to the acid response of mPDA. Furthermore, the photothermal effect of AuNRs and mPDA facilitates the thermal-induced melting of TD and subsequent release of Cur upon near-infrared (NIR) irradiation, thereby achieving an effective integration of photothermal therapy and chemotherapy. Simultaneously, under NIR excitation, AuNRs inject thermal electrons into the conduction band of ZnO, leading to the generation of singlet oxygen species that confer remarkable photodynamic healing capabilities to the as-prepared carriers. The combined treatment involving photothermal, photodynamic, and chemotherapy demonstrated synergistic effects and superior efficacy compared to individual treatments. The core-shell nanodrug carrier AuNRs@ZnO@mPDA developed in this study exhibits pH-, NIR-, and temperature-responsive drug release properties, highlighting the synergistic impact of photothermal, photodynamic, and chemotherapy on tumor therapy. This research provides a novel concept and preparation strategy for a multifunctional smart drug delivery platform with integrated therapeutic efficacy.

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利用AuNRs@ZnO@mPDA纳米颗粒开发pH/NIR/温度响应的药物传递系统,用于协同癌症治疗
近年来,针对光热、光动力和化疗三模式癌症治疗的多功能药物输送系统的开发和设计备受关注。本文介绍了利用金纳米棒(aunr)实现光热效应,氧化锌(ZnO)实现光动力效应,负载姜黄素(Cur)的介孔聚多巴胺(mPDA)和1-十四醇(TD)作为温度敏感门控开关来实现功能有机/无机纳米材料的集成。核壳结构纳米载体(AuNRs@ZnO@mPDA-Cur/TD)的载药率为178 mg/g。值得注意的是,由于mPDA的酸反应,已经观察到Cur的ph响应释放特性。此外,aunr和mPDA的光热效应促进了TD在近红外(NIR)照射下的热诱导熔化和随后的Cur释放,从而实现了光热治疗和化疗的有效结合。同时,在近红外激发下,aunr将热电子注入ZnO的导带,导致单线态氧的产生,从而赋予制备的载流子显著的光动力愈合能力。与单独治疗相比,光热、光动力和化疗联合治疗显示出协同作用和优越的疗效。本研究开发的核壳纳米药物载体AuNRs@ZnO@mPDA具有pH-, NIR-和温度响应的药物释放特性,突出了光热,光动力和化疗对肿瘤治疗的协同作用。本研究为多功能综合疗效智能给药平台提供了新的概念和制备策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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文献相关原料
公司名称
产品信息
索莱宝
Phosphate-buffered saline
索莱宝
Trypsin-EDTA
索莱宝
Phosphate-buffered saline
索莱宝
Trypsin-EDTA
索莱宝
Phosphate-buffered saline
索莱宝
Trypsin-EDTA
麦克林
Curcumin
麦克林
Hoechst 33,342
麦克林
Curcumin
麦克林
Hoechst 33,342
麦克林
Curcumin
麦克林
Hoechst 33,342
麦克林
Curcumin
麦克林
Hoechst 33,342
阿拉丁
Hydrochloride dopamine
阿拉丁
1-tetradecanol
阿拉丁
Mesitylene
阿拉丁
Pluronic F127 block copolymer
阿拉丁
Hydrochloride dopamine
阿拉丁
1-tetradecanol
阿拉丁
Mesitylene
阿拉丁
Pluronic F127 block copolymer
阿拉丁
Hydrochloride dopamine
阿拉丁
1-tetradecanol
阿拉丁
Mesitylene
阿拉丁
Pluronic F127 block copolymer
来源期刊
Surfaces and Interfaces
Surfaces and Interfaces Chemistry-General Chemistry
CiteScore
8.50
自引率
6.50%
发文量
753
审稿时长
35 days
期刊介绍: The aim of the journal is to provide a respectful outlet for ''sound science'' papers in all research areas on surfaces and interfaces. We define sound science papers as papers that describe new and well-executed research, but that do not necessarily provide brand new insights or are merely a description of research results. Surfaces and Interfaces publishes research papers in all fields of surface science which may not always find the right home on first submission to our Elsevier sister journals (Applied Surface, Surface and Coatings Technology, Thin Solid Films)
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