Collaborative Research Center, Shanghai University of Medicine and Health Sciences, Shanghai, 201318, China; College of International Education, Shanghai University of Medicine and Health Sciences, Shanghai, 201318, China.
Collaborative Research Center, Shanghai University of Medicine and Health Sciences, Shanghai, 201318, China; School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, China.
Talanta. 2024 Nov 1;279:126665. doi: 10.1016/j.talanta.2024.126665. Epub 2024 Aug 3.
Mucin 1 (MUC1) is frequently overexpressed in various cancers and is essential for early cancer detection. Current methods to detect MUC1 are expensive, time-consuming, and require skilled personnel. Therefore, developing a simple, sensitive, highly selective MUC1 detection sensor is necessary. In this study, we proposed a novel "signal-on-off" strategy that, in the presence of MUC1, synergistically integrates catalytic hairpin assembly (CHA) with DNA tetrahedron (Td)-based nonlinear hybridization chain reaction (HCR) to enhance the immobilization of electrochemically active methylene blue (MB) on magnetic nanoparticles (MNP), marking the MB signal "on". Concurrently, the activation of CRISPR-Cas12a by isothermal amplification products triggers the cleavage of single-stranded DNA (ssDNA) at the electrode surface, resulting in a reduction of MgAl-LDH@Fc-AuFe-MIL-101 (containing ferrocene, Fc) on the electrode, presenting the "signal-off" state. Both MB and MgAl-LDH@Fc-AuFe-MIL-101 electrochemical signals were measured and analyzed. Assay parameters were optimized, and sensitivity, stability, and linear range were assessed. Across a concentration spectrum of MUC1 spanning from 10 fg/mL to 100 ng/mL, the MB and MgAl-LDH@Fc-AuFe-MIL-101 signals were calibrated with each other, demonstrating a "signal-on-off" dual electrochemical signaling pattern. This allows for the precise and quantitative detection of MUC1 in clinical samples, offering significant potential for medical diagnosis.
黏蛋白 1(MUC1)在各种癌症中经常过表达,是早期癌症检测的关键。目前检测 MUC1 的方法昂贵、耗时且需要专业人员。因此,开发一种简单、灵敏、高选择性的 MUC1 检测传感器是必要的。在本研究中,我们提出了一种新颖的“信号开启-关闭”策略,即在存在 MUC1 的情况下,协同整合催化发夹组装(CHA)与基于 DNA 四面体型(Td)的非线性杂交链式反应(HCR),以增强电化学活性亚甲基蓝(MB)在磁性纳米颗粒(MNP)上的固定,标记 MB 信号“开启”。同时,等温扩增产物激活 CRISPR-Cas12a 引发电极表面单链 DNA(ssDNA)的切割,导致电极上的 MgAl-LDH@Fc-AuFe-MIL-101(含二茂铁,Fc)减少,呈现“信号关闭”状态。同时测量和分析 MB 和 MgAl-LDH@Fc-AuFe-MIL-101 的电化学信号。优化了测定参数,并评估了灵敏度、稳定性和线性范围。在 MUC1 的浓度范围从 10 fg/mL 到 100 ng/mL 内,MB 和 MgAl-LDH@Fc-AuFe-MIL-101 信号相互校准,呈现出“信号开启-关闭”的双重电化学信号模式。这使得能够对临床样本中的 MUC1 进行精确和定量检测,为医学诊断提供了重要的潜力。