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◆ Mikrochimica acta2026-08-29

Arginine-engineered gold nanoclusters for doxorubicin chemiluminescence sensing.

Chuangui Cai, Zhen Lin, Wensong Yao, Shan Lian, Kaiyuan Huang, Haohua Deng, Xinhua Lin, Wei Chen

原始摘要(英文原文)· Original abstract
Arginine surface-engineered 6-aza-2-thiothymine gold nanoclusters (Arg/ATT-AuNCs) via host-guest assembly were synthesized which exhibit exceptional catalytic activity and intense photoluminescence. Arg/ATT-AuNCs enhanced the CL intensity from NaIO4-H2O2 system by 1200-fold. The CL mechanistic studies revealed that Arg/ATT-AuNCs not only accelerated decay of H2O2 to form reactive oxygen species, but also acted as efficient energy acceptors of singlet oxygen (1O2) via a CL resonance energy transfer (CRET) pathway. It was observed that doxorubicin (DOX) quenches the CL signal through an inner filter effect that disrupts the CRET process. Based on this, a straightforward, rapid, and highly sensitive biosensor has been developed for the detection of DOX in human serum samples, achieving a low detection limit of 0.029 µM. The biosensor was applied to DOX determination in human serum samples with recoveries ranging from 91.1 to 106.2%. This study not only provides a new method for the detection of DOX, but also broadens the application scope of AuNCs in the field of CL.
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Arginine-engineered gold nanoclusters for doxorubicin chemiluminescence sensing. — 科研速览 Science Skim