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Updated: Jan 9, 2026

Imaging Approaches to Assessments of Toxicological Oxidative Stress Using Genetically-encoded Fluorogenic Sensors
Published on: February 7, 2018
Oxidized Salicylaldoxime: A Candidate for Metal-Enhanced Fluorescence with Sensing Applications
Mamta Sahu1, Shailvi Dixit1, Priyanka Sharma1
1Department of Chemistry, Manipal University Jaipur, Dehmi Kalan, Jaipur 303007, Rajasthan, India.
None:
Metal-enhanced fluorescence (MEF), especially originating from inexpensive copper, involving novel fluorophores, is an active area of research. Salicylaldoxime (SDX) was disclosed here as an efficient and cost-effective candidate for producing MEF. As a result of the reduction of Cu2+ to copper nanoparticles (CuNPs), SDX was oxidized to its quinone form. The in-situ-produced quinone exhibited MEF with in-situ-produced CuNPs. Uric acid quenched the fluorescence, while H2O2 restored the fluorescence exclusively. Tuning of MEF was done to design an H2O2 sensor with a linear detection range of 0-10-6 M and a limit of detection 1.74 × 10-7 M. The lightning rod effect and enhanced scattering cross-section (associated with aggregation) were pivotal for MEF, while the disintegration of particles with lower scattering cross-section was responsible for fluorescence quenching. This work may open a new window for identifying new fluorophores in the context of MEF, linked to environmental monitoring.
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