State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China.
Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou, 341000, China.
Nanoscale. 2022 Oct 27;14(41):15451-15461. doi: 10.1039/d2nr03631b.
Persistent luminescence nanoparticles (PLNPs) possess advantages for high-sensitivity bioimaging and continuous photodynamic therapy (PDT) because they can emit persistent luminescence (PerL) after excitation ceases. However, PLNPs are limited to single-wavelength emission, which can only efficiently realize one of the functions of bioimaging or PDT. In addition, most PLNPs are excited by shallow tissue penetrating excitation light, which makes it difficult to achieve repeatable applications with high efficiency. Herein, X-ray-excited PLNPs (ZnGaGeO:Cr,Mn, ZGGCM) with dual emission for X-rays repeatedly activated PerL imaging and tumor PDT are reported for the first time. ZGGCM exhibits dual-emission peaks after X-ray excitation/re-excitation, located at 698 nm and 532 nm, respectively. Additionally, ZGGCM is modified with the photosensitizer rose bengal (RB) to construct a dual-functional nanoplatform based on PerL imaging and PDT. The results indicate that the PerL emission peak (698 nm) of Cr ions in ZGGCM possesses excellent near-infrared (NIR) PerL imaging performance, and the green PerL emission peak (532 nm) of Mn ions can activate RB effectively and generate reactive oxygen species (ROS), thereby causing a significant antitumor effect. This unique dual-functional nanoplatform is expected to further promote the application of PLNPs in the integration of efficient tumor diagnosis and treatment.
持续发光纳米粒子(PLNPs)具有高灵敏度生物成像和持续光动力治疗(PDT)的优势,因为它们在激发停止后可以发出持续发光(PerL)。然而,PLNPs 仅限于单波长发射,这只能有效地实现生物成像或 PDT 的一种功能。此外,大多数 PLNPs 被浅层组织穿透激发光激发,这使得难以实现高效率的重复应用。在此,首次报道了用于 X 射线重复激活 PerL 成像和肿瘤 PDT 的 X 射线激发 PLNPs(ZnGaGeO:Cr,Mn,ZGGCM)具有双重发射。ZGGCM 在 X 射线激发/再激发后表现出两个发射峰,分别位于 698nm 和 532nm。此外,ZGGCM 被光敏剂玫瑰红(RB)修饰,构建了基于 PerL 成像和 PDT 的双重功能纳米平台。结果表明,ZGGCM 中 Cr 离子的 PerL 发射峰(698nm)具有优异的近红外(NIR)PerL 成像性能,而 Mn 离子的绿色 PerL 发射峰(532nm)可以有效地激活 RB 并产生活性氧(ROS),从而产生显著的抗肿瘤效果。这种独特的双重功能纳米平台有望进一步促进 PLNPs 在高效肿瘤诊断和治疗一体化中的应用。