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Published on: September 13, 2013
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Selective Ag+ Sensing and Cellular Imaging Based on Hydrophilic Modulated Peptide Probe
Shenao Li1,2, Jieben Jiao1,2, Shuxian Meng2
1Key Laboratory for Tibet Plateau Phytochemistry of Qinghai Province, Qinghai Minzu University-Zangnuo Joint-Lab, College of Pharmacy, Qinghai Minzu University, Xining, China.
Luminescence : the Journal of Biological and Chemical Luminescence
|December 29, 2025
Summary
Researchers developed new fluorescent probes to detect silver ions (Ag+). One probe, DNSCI-APGYHA, shows high selectivity and sensitivity for silver, enabling effective environmental and cellular imaging.
Area of Science:
- Environmental Science
- Analytical Chemistry
- Biomedical Engineering
Background:
- Silver (Ag+) is a toxic heavy metal pollutant with significant environmental and health impacts.
- Accurate detection of Ag+ is vital for environmental monitoring and biomedical applications.
- Existing peptide fluorescent probes often overlook the self-assembly of probe molecules into nanoparticles.
Purpose of the Study:
- To design and synthesize novel Ag+-responsive fluorescent probes by adjusting peptide hydrophilicity.
- To investigate the impact of self-assembly on probe performance.
- To identify a highly selective and sensitive probe for Ag+ detection.
Main Methods:
- Systematic adjustment of peptide hydrophilicity to synthesize three fluorescent probes: DNSCI-SPPW, DNSCI-APGYHA, and DNSCI-GPTHC.
- Evaluation of probe selectivity, detection limit, and interference resistance.
- Assessment of cell permeability and cytotoxicity for in-cell imaging applications.
Main Results:
- DNSCI-APGYHA demonstrated stable morphology, superior selectivity for Ag+, and a low detection limit of 19 nM.
- This probe exhibited enhanced resistance to interference compared to others.
- DNSCI-APGYHA showed good cell permeability and low cytotoxicity, enabling successful Ag+ imaging in CT26 cells.
Conclusions:
- The study highlights the importance of considering molecular self-assembly in designing peptide fluorescent probes.
- DNSCI-APGYHA is a promising tool for sensitive and selective detection of Ag+ in complex biological and environmental samples.
- The developed probe facilitates advanced applications in cellular imaging and environmental monitoring of silver contamination.

