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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
A Fluorescence-Afterglow Reporter for In Vivo Differentiation of Three Tumor Immunophenotypes
Haoze Li1, Rui Qu1, Linrong Chen1
1MOE Key Laboratory of High Performance Polymer Materials & Technology and State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry & Chemical Engineering, Nanjing University, Nanjing 210023, P. R. China.
Abstract:
The success of cancer immunotherapy is strongly influenced by the tumor immunophenotype, which is categorized as inflamed, immune-excluded, or immune-desert. However, noninvasively differentiating these key immunophenotypes to predict therapeutic outcomes remains a major challenge. Here, we report a fluorescence-afterglow reporter (FAR) for the real-time, in vivo differentiation of these three immunophenotypes. FAR operates on a dual-signal logic, simultaneously reporting on M1 macrophage polarization via a nitric oxide (NO)-responsive near-infrared fluorescence (NIRF) signal and on tumor cell apoptosis via a Caspase-3-activatable afterglow signal. This logical integration enables the accurate differentiation of inflamed [NIRF (ON)-Afterglow (ON)], immune-excluded [NIRF (ON)-Afterglow (OFF)], and immune-desert [NIRF (OFF)-Afterglow (OFF)] phenotypes in living mice. FAR also sensitively monitored the therapeutic conversion of an immune-excluded tumor to an inflamed state following combination therapy. Notably, FAR's signal patterns, whether from direct tumor imaging or a complementary urinalysis enabled by its renal-clearable design, strongly correlated with therapeutic outcomes, providing early predictive value for immunotherapy efficacy. Thus, this dual-signal logic probe provides functional insights into the tumor immune microenvironment, offering a powerful tool to guide the development and application of personalized cancer immunotherapy.

