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一种近红外二区激光触发的自增强光/酶偶联型三合一纳米系统,用于乳腺癌光热治疗。

A Single NIR-II Laser-Triggered Self-Enhancing Photo/Enzyme-coupled Three-in-One Nanosystems for Breast Cancer Phototheranostics.

机构信息

Department of Radiology, First hospital of Shanxi Medical University, Taiyuan, 030001, China.

Institute of Medical Technology, Shanxi Medical University, Taiyuan, 030001, China.

出版信息

Adv Healthc Mater. 2024 Mar;13(8):e2302783. doi: 10.1002/adhm.202302783. Epub 2023 Dec 7.

Abstract

Multifunctional phototheranostics, employing precise and non-invasive techniques, is widely developed to enhance theranostic efficiency of breast cancer (BC), reduce side-effects, and improve quality of life. Integrating all phototheranostic modalities into a single photosensitizer for highly effective BC treatment is particularly challenging due to the potential inefficiency and time consumption associated with repeated switching of multiple-wavelength lasers. Herein, a novel single NIR-II laser-triggered three-in-one nanosystem(PdCu NY) is rationally designed, which enables dual-modal (NIR-II FL/NIR-II PA) imaging-guided self-enhancing photothermal-photodynamic therapy (PTT-PDT) in NIR-II window. The PdCu NY based on optimal Pd/Cu molar-ratio(1:11) can be easily fabricated and large-scale production for simultaneous PTT-PDT against BC under a single 1064nm laser irradiation. Significantly, the PdCu NY acted as a promising photocatalyst for decomposition of HO into O upon the same laser irradiation. In addition, the inherent catalase (CAT)-like activity of PdCu NYs enables photo-enzyme dual-catalytic O supply to effectively alleviate hypoxia, achieving self-enhanced PDT efficiency. These PTT-PDT self-enhanced nanosystems demonstrate precise lesion localization and complete tumor ablation using a single 1064nm laser source by "one-laser, multi-functions" strategy. More importantly, this study not only reports a three-in-one PdCu-based phototheranostic agent, but also sheds light on the exploration of versatile biosafety nanosystems for clinical applications.

摘要

多功能光疗,采用精确和非侵入性技术,广泛发展以提高乳腺癌(BC)的治疗效果,减少副作用,并提高生活质量。将所有光疗模式整合到单一的光敏剂中,以实现高效的乳腺癌治疗,由于与多次切换多波长激光相关的潜在效率低下和时间消耗,这是一项特别具有挑战性的任务。在这里,合理设计了一种新型的单近红外-II 激光触发的三合一纳米系统(PdCuNY),它能够在近红外-II 窗口中进行双模态(近红外-II 荧光/近红外-II 光声)成像引导的自增强光热-光动力治疗(PTT-PDT)。基于最佳 Pd/Cu 摩尔比(1:11)的 PdCuNY 可以很容易地制造和大规模生产,以便在单次 1064nm 激光照射下同时进行 PTT-PDT 以对抗 BC。值得注意的是,PdCuNY 在相同激光照射下可以作为 HO 分解为 O 的有前途的光催化剂。此外,PdCuNY 的固有过氧化氢酶(CAT)样活性能够提供光酶双重催化 O 供应,有效缓解缺氧,从而提高 PDT 效率。这些 PTT-PDT 自增强纳米系统通过“单激光,多功能”策略,使用单一的 1064nm 激光源实现精确的病变定位和完全肿瘤消融。更重要的是,本研究不仅报道了一种基于 PdCu 的三合一光疗剂,还为临床应用探索多功能生物安全纳米系统提供了思路。

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