Department of Radiology, First hospital of Shanxi Medical University, Taiyuan, 030001, China.
Institute of Medical Technology, Shanxi Medical University, Taiyuan, 030001, China.
Adv Healthc Mater. 2024 Mar;13(8):e2302783. doi: 10.1002/adhm.202302783. Epub 2023 Dec 7.
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.
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。