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Updated: Jul 29, 2026

Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
DNA Aptamer-Induced Assemblies of Peptide-Protected Silver-Gold Nanoclusters to Enhance Antibacterial Performance
Jinliang Ma1, Mengmeng Yang1, Bing Wang1
1College of Food and Bioengineering, Henan University of Science and Technology, Luoyang, Henan 471000, China.
Abstract:
Peptide-protected gold nanoclusters (P-AuNCs) were ideal candidates for constructing antibacterial agents. However, the individual P-AuNCs could only exert limited target behavior and antibacterial efficiency. Herein, CA2R5/GSH-AuNCs were synthesized using CA2R5 and glutathione (GSH), and their purification was efficiently performed by adjusting pH from 7.0 to 9.0. DNA aptamer targeting Staphylococcus aureus was used to assemble CA2R5/GSH-AuNCs to form Apt-CA2R5/GSH-AuNCs. After purification at pH 9.0, Apt-CA2R5/GSH-AuNCs were mixed with silver ions to form Apt-CA2R5/GSH-Ag-AuNCs. The antibacterial activity of Apt-CA2R5/GSH-Ag-AuNCs was much higher than that of CA2R5/GSH-Ag-AuNCs formed by mixing CA2R5/GSH-AuNCs with silver ions. The inhibitory concentration of Apt-CA2R5/GSH-Ag-AuNCs against S. aureus did not change after 40 steps of successive bacterial cultivation. The formation of bacterial biofilms was inhibited after treatment with Apt-CA2R5/GSH-Ag-AuNCs. The death of the bacteria was attributed to disruption of the cell membrane and change of normal metabolism. This work could provide a new concept for constructing antibacterial peptide-based nanomaterials.
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