普鲁士蓝
光热治疗
肿瘤微环境
材料科学
生物医学中的光声成像
纳米技术
体内
金属有机骨架
纳米颗粒
癌症研究
化学
肿瘤细胞
生物
有机化学
生物技术
吸附
物理化学
物理
光学
电化学
电极
作者
Ying Chen,Duo Li,Pei Pan,Jingjing Hu,Si‐Xue Cheng,Xian‐Zheng Zhang
标识
DOI:10.1002/adma.202001452
摘要
Abstract Nanotheranostic agents (NTAs) that integrate diagnostic capabilities and therapeutic functions have great potential for personalized medicine, yet poor tumor specificity severely restricts further clinical applications of NTAs. Here, a pro‐NTA (precursor of nanotheranostic agent) activation strategy is reported for in situ NTA synthesis at tumor tissues to enhance the specificity of tumor therapy. This pro‐NTA, also called PBAM, is composed of an MIL‐100 (Fe)‐coated Prussian blue (PB) analogue (K 2 Mn[Fe(CN) 6 ]) with negligible absorption in the near‐infrared region and spatial confinement of Mn 2+ ions. In a mildly acidic tumor microenvironment (TME), PBAM can be specifically activated to synthesize the photothermal agent PB nanoparticles, with release of free Mn 2+ ions due to the internal fast ion exchange, resulting in the “ON” state of both T 1 ‐weighted magnetic resonance imaging and photoacoustic signals. In addition, the combined Mn 2+ ‐mediated chemodynamic therapy in the TME and PB‐mediated photothermal therapy guarantee a more efficient therapeutic performance compared to monotherapy. In vivo data further show that the pro‐NTA activation strategy could selectively brighten solid tumors and detect invisible lymph node metastases with high specificity.
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