化学
双功能
组合化学
色谱法
生化工程
纳米技术
生物化学
工程类
催化作用
材料科学
作者
Chao Guo,Huihai Li,Xiaoyan Zhao,Yong Li,Xiwei Jia,Yan Zhao,Chao Xu,Wenhao Tang,Lina Yu,Hui Huang,Jinsong Han
标识
DOI:10.1021/acs.analchem.5c03429
摘要
Ensuring the authenticity and quality of herbal medicines, particularly licorice, a pivotal component in nearly 60% of traditional Chinese medicine formulations, remains a significant global challenge. However, conventional approaches lack the capacity for direct, rapid, and high-throughput differentiation of licorice mixtures and structurally analogous ingredients. Herein, we present a multisite-binding Color-BiLink (CB) strategy for constructing the dual-mode responsive sensor array, formed by a quantifiable-recognized bifunctional m-nitrophenylboronic acid-modified PEI (PEI-QR) and four CB dyes through dynamic, reversible covalent, and electrostatic interactions. The 6-element array enabled the direct (without pretreatment), rapid (<30 s), simultaneous identification 15 licorice samples─across diverse sources, cultivation methods, and manufacturing processes─with 100% accuracy, concurrently detecting six key ingredients. Notably, coupling the array with high-performance liquid chromatography confers enhanced discriminatory power for complex sample profiling and facilitates reliable detection across varying batches, concentrations, and quality grades. Finally, the array achieved an AUROC of 0.984 in distinguishing pass/fail samples, underscoring its robust analytical capability for large-scale rapid identification of herbal medicine quality and demonstrating its significant application potential in clinical and industrial settings.
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