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Updated: May 3, 2026

A Label-free Technique for the Spatio-temporal Imaging of Single Cell Secretions
Published on: November 23, 2015
Spaser Nanoprobes Family for Narrow-Band Multiplexed Cell Imaging
Shao-Peng Wang1, Pei Song2, Hao-Yang Li1
1State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.
Abstract:
Spaser nanoprobes, with their ultranarrow emission line widths and nanoscale sizes, are emerging as leading contenders for the next generation of biological luminescent probes. However, modulating spasing wavelengths across a broad spectral range remains a formidable challenge that constrains their application in multiplexed sensing and imaging. Here, we introduced a novel wavelength-tunable spaser system, successfully creating a nanoprobe family with 9 distinct spasing wavelengths. These nanoprobes exhibit ultranarrow emission line widths of 3-8 nm with a low pump threshold of 0.5 mJ cm-2. We further investigated the influences of energy matching between the gain medium and the cavity on the emission performance of the spaser nanoprobes and successfully realized narrow-band luminescence in both individual and aggregated spaser particles under commercial confocal instruments. Moreover, we demonstrated the multiplexed imaging capability of 6 distinct spaser nanoprobes in a single HeLa cell within an imaging window of 200 nm, free of spectral crosstalk. Our results address the long-standing issue of wavelength tunability in spaser nanoprobes and also clarify previous disputes on the luminescence origin of single nanoparticles, marking a significant advancement in their application for ultramultiplexed biological imaging and sensing.
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