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Updated: Jan 18, 2026

Dual-modality Molecular Cartography: Integrating Multiplex mRNA Detection with Protein Imaging Mass Cytometry
Published on: November 14, 2025
Multiscale molecular engineering co-modulated dual-mode ratiometric probe for monitoring tumor-associated macrophage
Xinyue Li1, Ning Li1, Zhiang Duan1
1State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, Lanzhou University, Lanzhou, Gansu, 730000, China.
Abstract:
Precise modulation of structure-function relationship of molecules is at the core of driving breakthroughs in biosensing technology through chemical strategy. Here, we present a near-infrared (NIR) ratiometric fluorescence/photoacoustic dual-mode probe TPcy through a multiscale chemical modulation strategy. On the molecular scale, the synergistic design of the six-membered ring-centered cyanine skeleton and the N-nitrosylation response site achieves a significant spectral signal redshift driven by the nitric oxide (NO) response, and the introduction of the sulfonic acid side chain brings about a dual enhancement of biocompatibility and response rate. Further, the targeting unit maleimide-mediated protein covalent coupling achieves in situ anchoring and microenvironment enrichment of tumors without disturbing the probe function. TPcy enables dynamic tracking of immunotherapy-triggered M2-to-M1 macrophage repolarization through spatiotemporally resolved dual-modal imaging, revealing correlations between immune activation and therapeutic outcomes. This work establishes a multiscale co-regulation paradigm, offering a universal chemical design strategy for high-precision molecular imaging tools in precision immunotherapy.

