Related Experiment Video
Updated: Jun 23, 2026

A Bright NIR-II Fluorescence Probe for Vascular and Tumor Imaging
Published on: March 17, 2023
Microviscosity-gated excited-state partitioning in a NIR-II molecular rotor for disease imaging and imaging-guided
Yufei Qin1, Yaru You2, Yishu Yu2
1Center for Advanced Materials Research & Faculty of Arts and Sciences, Beijing Normal University, Zhuhai, 519087, PR China.
Abstract:
Microviscosity is an underexploited pathological cue that can be harnessed to regulate excited-state energy dissipation in organic near-infrared II (NIR-II, 1000-1700 nm) fluorophores. Here we introduce a twisted intramolecular charge transfer molecular rotor that uses microviscosity to gate radiative versus nonradiative decay, delivering a fluorescence "off" state in low-viscosity environments and a weak-but-sufficient NIR-II fluorescence turn-on in viscosity-elevated pathology while keeping nonradiative dissipation dominant for photothermal heating. A tunable donor-π-acceptor library was synthesized to drive absorption/emission toward the NIR-II window and calibrate a "dim-but-hot" photophysical profile. Molecularly dispersed FMR-1105-PEG enables in vivo NIR-II imaging in nonalcoholic fatty liver disease and acetaminophen-induced liver injury models. For tumor translation, micellization retains a measurable viscosity dependence (Förster-Hoffmann-type) while markedly increasing the apparent molar extinction coefficient, thereby enabling efficient 1064 nm photothermal activation, immunogenic cell death hallmarks in vitro, and imaging-guided tumor ablation even under tissue coverage, with favorable biosafety.
More Related Videos
07:13Biomolecular Imaging of Cellular Uptake of Nanoparticles using Multimodal Nonlinear Optical Microscopy
Published on: May 16, 2022
09:01Magnetic-, Acoustic-, and Optical-Triple-Responsive Microbubbles for Magnetic Hyperthermia and Pothotothermal Combination Cancer Therapy
Published on: May 22, 2020