信号(编程语言)
灵敏度(控制系统)
检出限
荧光
探测理论
纳米技术
线性范围
材料科学
级联
生物传感器
电极
滚动圆复制
适体
共价键
计算机科学
亚甲蓝
信号处理
纳米颗粒
化学
光电子学
动态范围
对偶(语法数字)
胶体金
电子工程
双重角色
双模
临床诊断
小RNA
作者
Xinxue Zhang,Pengfei Dong,Youfa Wang,S. Wu,Lili Zhang,J. S. Han,Geoffrey I.N. Waterhouse,Quancai Sun,Jing Huang,Jin Wang
标识
DOI:10.1016/j.eng.2026.03.007
摘要
MicroRNAs (miRNAs) are promising biomarkers for cancer, offering a minimally invasive approach for liquid biopsy. However, their low abundance in clinical samples poses a major challenge for detection sensitivity and analytical reliability. Herein, this study report a fluorescence-electrochemical dual-mode sensor that integrates multiple signal amplification strategies for the ultrasensitive detection of miRNA-21. MXene–gold nanoparticles (AuNPs) composites were first modified on the electrode surface to enable efficient probe loading and enhanced electron transfer to amplify signal. The urchin-shaped covalent organic frameworks (COFs) facilitated more efficient methylene blue loading, with the unique structure further enhancing signal response. Combined with the miRNA-21 triggered entropy-driven catalysis (EDC)–DNA catalysis (DNAzyme) cascade amplification, the sensor realized a multi-level synergistic signal enhancement, demonstrating remarkable sensitivity. Notably, the urchin-shaped COFs served dual roles as both fluorescent reporters and nanocarriers, facilitating dual-mode signal readout. Under optimized conditions, the sensor exhibited a linear response to miRNA-21 in the range of 1–10 5 fmol∙L –1 , with detection limits of 0.285 and 0.342 fmol∙L –1 for the electrochemical and fluorescence modes, respectively. The platform enabled accurate detection of miRNA-21 in human serum and cancer cells. It provides a viable pathway for early cancer diagnosis with sensitivity and reliability.
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