电化学发光
生物传感器
铂金
材料科学
纳米技术
生物标志物
检出限
色谱法
化学
催化作用
生物化学
作者
Wanzhen Chen,Wenyi Zhang,Ziqi Lian,Ying Ma,Jiaju Mo,Jianqiang Hu,Shulin Huang,Aiqing Li
标识
DOI:10.1002/adom.202501324
摘要
Abstract The determination of biomarkers is of key importance for the early diagnosis and treatment of diseases. However, it remains a tremendous challenge for rapid, accurate and real time detection of biomarkers at the early stage of diseases due to its extremely low content and serious interference. Herein, ultrasensitive electrochemiluminescence (ECL) biosensor is successfully constructed through specific binding between morpholinyl‐functionalized emissive Pt(II) (M‐Pt) nanocomplexes with aggregation‐induced emission and ECL properties and G‐quadruplex DNA via π–π stacking interactions. Combined with catalytic hairpin assembly, the ultrasensitive ECL biosensor is utilized to detect miRNA‐21 at early diseases. The biosensor can acquire ≈5‐fold ECL signal enhancement in the presence of miRNA‐21 compared with that in the absence of miRNA‐21 and has high sensitivity, wide linear range (1 f m –100 p m ), low limit of detection (≈0.33 f m ) and good stability and selectivity. The ultrasensitive ECL biosensor is successfully applied to determine miRNA‐21 in the urine samples of early‐stage kidney patients and has great prospects for universally screening any kind of biomarkers with corresponding specific targets.
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