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Updated: Apr 5, 2026

Immunostaining-Based Detection of Dynamic Alterations in Red Blood Cell Proteins
Published on: March 17, 2023
A macrophage-targeted ratiometric upconversion nanoprobe for high-fidelity imaging of nitric oxide dynamics during
Yuyao Li1, Yawen Zheng1, Jing Zhu1
1College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.
Abstract:
Visualizing nitric oxide (NO) dynamics during macrophage polarization is critical for understanding immune regulation yet remains challenging due to the poor photostability and specificity of existing probes. Herein, we engineered a macrophage-targeted ratiometric nanoprobe (ManNAc-UCNPs) to monitor rapid NO fluctuations during immune plasticity. The probe integrates a photostable core-shell-shell upconversion nanoparticle (UCNP) donor with an NO-responsive dye acceptor via a self-calibrating Luminescence Resonance Energy Transfer (LRET) mechanism. Surface modification with N-Acetyl-D-mannosamine (ManNAc) enables active targeting to macrophage mannose receptors. The nanoprobe exhibits superior photostability compared to organic dyes, high selectivity against interfering species, and a low detection limit of 3.38 nM. In vitro experiments, including co-culture models, demonstrated precise macrophage-specific uptake and excellent long-term colloidal stability. Crucially, the probe successfully differentiated M0, M1 (high NO), and M2 (low NO) phenotypes and enabled the real-time, high-fidelity visualization of dynamic macrophage re-polarization processes. This study provides a robust tool for dissecting immune signaling pathways and evaluating immunomodulatory therapies.

