荧光
化学
荧光寿命成像显微镜
减法
可视化
生物医学工程
费斯特共振能量转移
显微镜
荧光显微镜
核磁共振
背景减法
边距(机器学习)
边界(拓扑)
共焦
光学
成像技术
纳米颗粒
肿瘤细胞
作者
Yujiao guo,Rui Hu,Kaijie Ma,Wei Hua Huang,Tao Liang,Zhen Li,Yujiao guo,Rui Hu,Kaijie Ma,Wei Hua Huang,Tao Liang,Zhen Li
标识
DOI:10.1021/acs.analchem.5c04881
摘要
Accurate delineation of tumor boundaries is critically important for tumor resection, providing support for complete tumor excision while preserving normal tissues. Fluorescence imaging, particularly in the near-infrared IIb (NIR-IIb, 1500-1700 nm) window, has garnered growing interest for tumor visualization due to its advantages, such as high sensitivity, spatial resolution, and noninvasiveness. However, tumor boundaries visualized via traditional fluorescence imaging are poorly delineated and vary with parameters such as exposure time in fluorescence intensity imaging and the background subtraction threshold in fluorescence lifetime imaging (FLIM). To address this limitation, we developed a dual-FLIM approach, wherein tumor and surrounding normal tissues were specifically stained using Er-based lanthanide-doped nanoparticles (LnNPs) with distinct fluorescence lifetimes: 0%Tm@NaYF4-PEG-HA (tumor-targeting via hyaluronic acid, HA) and 1.5%Tm@NaYF4-PEG, respectively. 1.5%Tm@NaYF4-PEG exhibited a much shorter NIR-IIb fluorescence lifetime (1550 nm, corresponding to the 4I13/2 → 4I15/2 transition of Er3+) due to energy transfer between Er3+(4I13/2) and Tm3+(3F4). This dual-FLIM approach enables the clear visualization of tumor margins while eliminating boundary inconsistencies arising from subjective parameter settings. It offers a reliable solution for intraoperative margin assessment, which could enhance surgical precision and treatment decisions.
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