The Radiology Department of First Hospital of Shanxi Medical University, Taiyuan, China; Shanxi Academy of Medical Sciences, Shanxi Medical University, Taiyuan, China; The Third Hospital of Shanxi Medical University, Shanxi Bethune Hospital, Taiyuan, China.
Shanxi Province Cancer Hospital, Shanxi Hospital Affiliated to Cancer Hospital, Chinese Academy of Medical Sciences, Cancer Hospital Affiliated to Shanxi Medical University, Taiyuan, China.
J Colloid Interface Sci. 2023 Dec;651:1020-1027. doi: 10.1016/j.jcis.2023.07.150. Epub 2023 Jul 26.
The development of intelligent nanodrug delivery systems that can visually guide the on-demand quantitative control of drug release has received extensive attention. Herein, two chemotherapeutic drugs, gallic acid and 5-fluorouracil, and Fe(III) were selected to prepare nanomedicine GF-Fe via polyphenol-metal self-assembly and infinite coordination of drug-metal. GF-Fe has good biocompatibility, photothermal properties and photoacoustic (PA) signals. When deferoxamine (DFO) was artificially applied and interacted with GF-Fe, GF-Fe began to disassemble, gallic acid and 5-fluorouracil were gradually released, while the PA signal of the nanomedicine decayed synchronously. Based on this, the relationship between the intensity of the PA signal and the drug release amount was established, so as to realize the precise quantitative control of the drug release in real-time under the guidance of PA imaging. Besides, the combined effect of the two therapeutic drugs in combination with photothermal therapy (PTT) can improve the therapeutic effect, resulting in significant superadditiveness. This nanoplatform constructed by facile synthesis provided good clinical translation potential for the implementation of precise multimodal combination therapy strategies for tumors.
智能纳米药物递送系统的发展受到广泛关注,该系统能够可视化指导按需定量控制药物释放。在此,选择两种化疗药物(没食子酸和 5-氟尿嘧啶)和 Fe(III) 通过多酚-金属自组装和药物-金属的无限配位制备纳米药物 GF-Fe。GF-Fe 具有良好的生物相容性、光热性能和光声(PA)信号。当人工应用去铁胺(DFO)并与 GF-Fe 相互作用时,GF-Fe 开始解体,没食子酸和 5-氟尿嘧啶逐渐释放,同时纳米药物的 PA 信号也同步衰减。基于此,建立了 PA 信号强度与药物释放量之间的关系,从而实现了在 PA 成像指导下实时的精确定量控制药物释放。此外,两种治疗药物与光热治疗(PTT)的联合作用可以提高治疗效果,导致显著的增效作用。这种通过简便合成构建的纳米平台为实现肿瘤精确多模式联合治疗策略提供了良好的临床转化潜力。