余辉
发光
化学
自体荧光
纳米颗粒
纳米技术
镧系元素
磁共振成像
持续发光
荧光
材料科学
光电子学
光学
物理
放射科
天文
离子
热释光
有机化学
医学
伽马射线暴
作者
Hanlin Wei,Qingpeng Zhang,Zhiming Deng,Guoqiang Guan,Zhe Dong,Hui Cao,Liang Peng,Dingyou Lu,Sulai Liu,Xia Yin,Guosheng Song,Shuangyan Huan,Xiaobing Zhang
标识
DOI:10.1021/acs.analchem.4c00747
摘要
Dual/multimodal imaging strategies are increasingly recognized for their potential to provide comprehensive diagnostic insights in cancer imaging by harnessing complementary data. This study presents an innovative probe that capitalizes on the synergistic benefits of afterglow luminescence and magnetic resonance imaging (MRI), effectively eliminating autofluorescence interference and delivering a superior signal-to-noise ratio. Additionally, it facilitates deep tissue penetration and enables noninvasive imaging. Despite the advantages, only a limited number of probes have demonstrated the capability to simultaneously enhance afterglow luminescence and achieve high-resolution MRI and afterglow imaging. Herein, we introduce a cutting-edge imaging platform based on semiconducting polymer nanoparticles (PFODBT) integrated with NaYF4@NaGdF4 (Y@Gd@PFO-SPNs), which can directly amplify afterglow luminescence and generate MRI and afterglow signals in tumor tissues. The proposed mechanism involves lanthanide nanoparticles producing singlet oxygen (1O2) upon white light irradiation, which subsequently oxidizes PFODBT, thereby intensifying afterglow luminescence. This innovative platform paves the way for the development of high signal-to-background ratio imaging modalities, promising noninvasive diagnostics for cancer.
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