Hubei Key Laboratory of Natural Products Research and Development, China Three Gorges University, Yichang 443002, China.
College of Biological and Pharmaceutical Sciences, China Three Gorges University, Yichang 443002, China.
ACS Appl Mater Interfaces. 2021 Nov 17;13(45):53646-53658. doi: 10.1021/acsami.1c17642. Epub 2021 Nov 8.
Intrinsic tumor microenvironment (TME)-related therapeutic resistance and nontumor-specific imaging have limited the application of imaging-guided cancer therapy. Herein, a TME-responsive MnO-based nanoplatform coupled with turn-on and always-on fluorescence probes was designed through a facile biomineralization method for imaging-guided photodynamic/chemodynamic/photothermal therapy (PDT/CDT/PTT). After the tumor-targeting delivery of the AuNCs@MnO-ICG@AS1411 (AMIT) nanoplatform via aptamer AS1411, the TME-responsive dissociation of MnO generated sufficient O and Mn with the consumption of GSH for improving PDT efficacy and Fenton-like reaction-mediated CDT. Simultaneously, the released small-sized ICG and AuNCs facilitated PDT and PTT efficacy via the deep tumor penetration. Moreover, the turn-on fluorescence of AuNCs revealed the real-time TME-responsive MnO degradation process, and the always-on ICG fluorescence enabled the monitoring of the payload distribution and . The AMIT NPs also provided magnetic resonance and thermal imaging guidance for the enhanced PDT, CDT, and PTT. Therefore, this all-in-one nanosystem provides a simple and versatile strategy for multiple imaging-guided theranostic applications.
内在肿瘤微环境(TME)相关的治疗耐药性和非肿瘤特异性成像限制了成像引导癌症治疗的应用。在此,通过简便的生物矿化方法设计了一种 TME 响应的基于 MnO 的纳米平台,并结合了开启型和始终开启型荧光探针,用于成像引导的光动力/化学动力/光热治疗(PDT/CDT/PTT)。通过适体 AS1411 进行肿瘤靶向递送后,AuNCs@MnO-ICG@AS1411(AMIT)纳米平台的 TME 响应解离产生了足够的 O 和 Mn,同时消耗了 GSH,以提高 PDT 疗效和 Fenton 样反应介导的 CDT。同时,释放的小尺寸 ICG 和 AuNCs 通过深肿瘤渗透促进了 PDT 和 PTT 疗效。此外,AuNCs 的开启型荧光揭示了实时 TME 响应的 MnO 降解过程,而始终开启的 ICG 荧光则使载体分布和疗效的监测成为可能。AMIT NPs 还为增强的 PDT、CDT 和 PTT 提供了磁共振和热成像指导。因此,这种一体化纳米系统为多种成像引导治疗应用提供了一种简单而通用的策略。