化学发光
化学
发光
自体荧光
光热治疗
纳米技术
光发射
发光测量
生物传感器
体内
继电器
分子成像
作者
Zeyun Guo,Chengxin Fang,Aoyu Song,Qiqin Wang,Jibin Song,Zhongxiang Chen
标识
DOI:10.1016/j.ccr.2026.218482
摘要
By arising light from relaxation of excited-state reactants, chemiluminescence avoids autofluorescence interference, thereby allowing unique benefits for in vivo imaging. As an active branch of optical imaging, no-excitation luminescence in the second near-infrared (NIR-II, 1000–1700 nm) region holds considerable potential for deep-tissue penetration and visualization of biological events by reducing light-tissue interactions. Owing to the convergence of chemiluminescence and “transparent” optical window, NIR-II chemiluminescence are poised to evolve from research tools into platforms for enhancing the precision of diagnosis. This review covers two common principles for constructing NIR-II chemiluminescence platform, including indirect NIR-II chemiluminescence via energy relay and direct NIR-II chemiluminescence through molecular engineering, and then offers a detailed discussion of these two approaches. The latest NIR-II chemiluminescence platforms capable of detecting biomarkers, including reactive oxygen species, gas signaling molecules, and enzymes overexpressed in disease diagnosis, are summarized in this review. Finally, potential optimizations in activity-based NIR-II chemiluminescence platform in the fields of analytical techniques and precision medicine are also outlined.
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