Tian Jiarui, Feng Erting, Sun Han, Hou Haoran, Lv Fangyuan, Shao Yutong, Song Fengling
Institute of Frontier Chemistry, School of Chemistry and Chemical Engineering, Shandong University, Qingdao 266237, P. R. China.
Engineering Research Center for Hainan Bio-Smart Materials and Bio-Medical Devices, Key Laboratory of Hainan Functional Materials and Molecular Imaging, College of Emergency and Trauma, Hainan Medical University, Haikou 571199, P. R. China.
ACS Appl Mater Interfaces. 2024 Sep 25;16(38):50335-50343. doi: 10.1021/acsami.4c09975. Epub 2024 Sep 12.
Near-infrared (NIR) organic materials have been widely developed for tumor phototherapy due to their deep tumor penetration, good biodegradability, and high photothermal conversion (PCE). However, most of the NIR organic dyes are easily destroyed by photooxidation due to their big and long conjugated structures, such as cyanine dyes. Under light irradiation, the reactive oxygen species (ROS) produced by these NIR dyes can easily break their conjugated skeleton, resulting in a dramatic decrease in phototherapeutic efficiency. Herein, an NIR organic dye cyanine dye (CyS) and a photosensitizer methylene blue (MB) were chosen to prepare nanocarrier CMTNPs by facile self-assembling with a natural antioxidant, tannic acid (TA). TA can greatly enhance the stability of NIR cyanine dyes by scavenging ROS. Furthermore, CMTNPs have a character of pH/thermal dual response, allowing for controlled release of MB in the slightly acidic tumor environment during photothermal therapy. The released MB can turn on both fluorescence and photodynamic therapy effects. In vitro and in vivo experiments demonstrated the remarkable tumor ablation ability of CMTNPs. Thus, our study provided an antiphotobleaching and controlled release photosensitizer strategy through the introduction of antioxidant TA into the nanocarrier for efficient collaborative photothermal/photodynamic therapy.
近红外(NIR)有机材料因其对肿瘤的深层穿透性、良好的生物降解性和高光热转换效率(PCE)而被广泛用于肿瘤光疗。然而,大多数近红外有机染料由于其大且长的共轭结构,如菁染料,容易被光氧化破坏。在光照下,这些近红外染料产生的活性氧(ROS)很容易破坏其共轭骨架,导致光疗效率急剧下降。在此,选择一种近红外有机染料菁染料(CyS)和一种光敏剂亚甲蓝(MB),通过与天然抗氧化剂单宁酸(TA)进行简便的自组装来制备纳米载体CMTNPs。TA可以通过清除ROS大大提高近红外菁染料的稳定性。此外,CMTNPs具有pH/热双重响应特性,在光热治疗过程中能够在微酸性肿瘤环境中实现MB的控释。释放出的MB可以开启荧光和光动力治疗效果。体外和体内实验证明了CMTNPs具有显著的肿瘤消融能力。因此,我们的研究通过将抗氧化剂TA引入纳米载体,提供了一种抗光漂白和控释光敏剂的策略,用于高效协同光热/光动力治疗。