Molecular Targeting Nanoprobes with Non-Overlap Emission in the Second Near-Infrared Window for <i>in Vivo</i> Two-Color Colocalization of Immune Cells.

Yu, Guang-Tao; Luo, Meng-Yao; Li, Hao; Chen, Song; Huang, Biao; Sun, Zhi-Jun; Cui, Ran; Zhang, Mingxi · ACS Nano · 2019

basic_science · Level V

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Abstract

Monitoring specific immune cells <i>in vivo</i> will provide significant information for improving the therapeutic effect of immunotherapy. Herein, the <i>in vivo</i> two-color fluorescence molecular imaging of an important immune cell, myeloid-derived suppressor cell (MDSC), was realized by using quantum dot (QD)-based nanoprobes with non-overlap emission in the second near-infrared window (NIR-II, 1000-1700 nm). NIR-IIa and NIR-IIb QDs were conjugated with two MDSC-specific antibodies, respectively, and targeted the <i>in vivo</i> MDSCs together. Due to the suppressed photon scattering and diminished autofluorescence in the NIR-II window, the distribution of MDSCs in different organs and tissues was clearly revealed in a non-invasive way by the colocalization of two-color fluorescence from nanoprobes. The high-resolution imaging further confirmed the exact distribution of MDSCs in tumor immune microenvironment (TIME). Our results demonstrated that NIR-II fluorescence nanoprobes with molecular targeting ability provided a powerful tool for monitoring the dynamic change of immune cell populations in TIME <i>in vivo</i>, thus guiding the choice of clinical medicine and evaluating the therapeutic effect.

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