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Updated: Aug 24, 2026

Application of Genetically Encoded Fluorescent Nitric Oxide (NO•) Probes, the geNOps, for Real-time Imaging of NO• Signals in Single Cells
Published on: March 16, 2017
A near-infrared AIE fluorescent probe for selective peroxynitrite (ONOO-) detection and bioimaging with
Jiayi Zou1, Yufeng Liu1, Yixuan Sun1
1Jiangxi Provincial Key Laboratory of Organic Functional Molecules, Institute of Organic Chemistry, Jiangxi Science and Technology Normal University, Nanchang 330013, PR China.
Abstract:
As a potent reactive nitrogen species characterized by robust oxidative capabilities, peroxynitrite (ONOO-) is fundamentally involved in diverse physiological and pathological events. To overcome the aggregation-caused quenching (ACQ) commonly encountered in traditional fluorophores, TriPS-py-BOO, a near-infrared AIE-active fluorescent probe, was rationally designed for the selective detection of ONOO-. This newly engineered probe demonstrates favorable sensing capabilities toward ONOO-, yielding low limits of detection at 0.573 μM (colorimetric) and 0.743 μM (fluorometric). Furthermore, its large Stokes shift of 235 nm substantially minimizes background auto-fluorescence during optical analysis. Benefiting from its favorable biocompatibility, the probe was successfully applied to imaging both exogenously added and intracellularly generated ONOO- in A549 cells, as well as exogenously added ONOO- in zebrafish. More importantly, the reaction product o-TriPS-py generated after ONOO- recognition displayed good photochromic behavior and acid-responsive properties, enabling its further application in molecular logic operations and intelligent anti-counterfeiting systems. This work not only provides an effective strategy for ONOO- sensing, but also offers a new approach for integrating fluorescence detection with multifunctional optical materials.

