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Updated: Sep 4, 2026

Rapid Nanoprobe Signal Enhancement by In Situ Gold Nanoparticle Synthesis
Published on: March 7, 2018
Triple-ligand engineered gold nanoclusters with aggregation-induced emission for a high-sensitivity arginase activity
Lili Tong1, Xueke Luo1, Yan Zhang1
1College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Shandong Normal University, Jinan 250014, P.R. China. wangxl@sdnu.edu.cn.
Abstract:
Sensitive and accurate monitoring of arginase activity is significant for clinical diagnosis. Herein, a dual-enhanced aggregation-induced electrochemiluminescence (ECL) biosensor was constructed based on triple-ligand-protected gold nanoclusters (AuNCs), sequentially coating 6-aza-2-thiothymine-capped AuNCs with L-arginine (Arg) and tetraoctylammonium bromide (TOAB). This ligand-engineering strategy restricted molecular vibrations and rotations while enhancing electron transfer efficiency, leading to a stepwise increase in ECL efficiency from 23% to 30% and finally to 71%. The hydrolysis of Arg, catalyzed by arginase, leads to dramatic quenching in the dual-enhanced ECL signal, forming the basis for quantitative detection of arginase activity. It achieved an ultra-low detection limit of 1.23 × 10-7 U mL-1 with a broad linear range from 1 × 10-6 to 0.02 U mL-1. The system showed excellent selectivity, stability, and reproducibility and was successfully applied to determine arginase activity in human serum. Triple-ligand AuNCs with dual-enhanced aggregation-induced ECL open a new avenue for constructing high-performance ECL detection platforms.

