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具有十六硫醇和聚 A 修饰的敏感、高稳定、抗污染电极用于外泌体 microRNA 检测。

Sensitive, Highly Stable, and Anti-Fouling Electrode with Hexanethiol and Poly-A Modification for Exosomal microRNA Detection.

机构信息

Department of Pharmaceutical Analysis, The School of Pharmacy, Fujian Medical University, Fuzhou 350122, Fujian Province, P.R. China.

Fujian Key Laboratory of Drug Target Discovery and Structural and Functional Research, The School of Pharmacy, Fujian Medical University, Fuzhou 350122, Fujian Province, P.R. China.

出版信息

Anal Chem. 2022 Apr 5;94(13):5382-5391. doi: 10.1021/acs.analchem.2c00069. Epub 2022 Mar 24.

Abstract

It remains a huge challenge to integrate the sensitivity, stability, reproducibility, and anti-fouling ability of electrochemical biosensors for practical applications. Herein, we propose a self-assembled electrode combining hexanethiol (HT), poly-adenine (poly-A), and cholesteryl-modified DNA to meet this challenge. HT can tightly pack at the electrode interface to form a hydrophobic self-assembled monolayer (SAM), effectively improving the stability and signal-to-noise ratio (SNR) of electrochemical detection. Cholesteryl-modified DNA was immobilized at the electrode through the hydrophobic interaction with HT to avoid the competition between the SAM and the DNA probe on the gold site. Thus, the assembly efficiency and uniformity of the DNA probe as well as the detection reproducibility were increased remarkedly. Poly-A was added on the HT assembled electrode to occupy the unreacted sites of gold to further enhance the anti-fouling ability. The combination of HT and poly-A allows the electrode to ensure favorable anti-fouling ability without sacrificing the detection performance. On this basis, we proposed a dual-signal amplification electrochemical biosensor for the detection of exosomal microRNAs, which showed excellent sensitivity with a detection limit down to 1.46 aM. Importantly, this method has been successfully applied to detect exosomal microRNA-21 in cells and human serum samples, proving its potential utility in cancer diagnosis.

摘要

将电化学生物传感器的灵敏度、稳定性、重现性和抗污染能力集成用于实际应用仍然是一个巨大的挑战。在此,我们提出了一种自组装电极,该电极结合了己硫醇(HT)、多腺嘌呤(poly-A)和胆固醇修饰的 DNA,以应对这一挑战。HT 可以紧密地组装在电极界面上,形成疏水性自组装单层(SAM),有效地提高了电化学检测的稳定性和信噪比(SNR)。胆固醇修饰的 DNA 通过与 HT 的疏水相互作用固定在电极上,以避免 SAM 和金位点上的 DNA 探针之间的竞争。因此,DNA 探针的组装效率和均匀性以及检测重现性显著提高。聚 A 被添加到 HT 组装的电极上,以占据金的未反应位点,进一步增强抗污染能力。HT 和聚 A 的结合使电极能够在不牺牲检测性能的情况下确保良好的抗污染能力。在此基础上,我们提出了一种用于检测外泌体 microRNAs 的双信号放大电化学生物传感器,该传感器具有出色的灵敏度,检测限低至 1.46 aM。重要的是,该方法已成功应用于检测细胞和人血清样本中的外泌体 microRNA-21,证明了其在癌症诊断中的潜在应用价值。

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