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一种无酶和无底物的电化学生物传感器,具有基于卟啉的坚固共价连接纳米材料作为纳米电催化剂和高效支撑物,用于灵敏检测尿嘧啶-DNA 糖基化酶。

An enzyme-free and substrate-free electrochemical biosensor with robust porphyrin-based covalent-linked nanomaterial as nanoelectrocatalyst and efficient support for sensitive detection of uracil-DNA glycosylase.

机构信息

School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong, 250100, China.

College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan, Shandong, 250014, China.

出版信息

Biosens Bioelectron. 2020 Apr 15;154:112014. doi: 10.1016/j.bios.2020.112014. Epub 2020 Jan 10.

DOI:10.1016/j.bios.2020.112014
PMID:32056973
Abstract

We developed a novel electrochemical biosensor for uracil-DNA glycosylase (UDG) detection based on enzyme-free and substrate-free electrocatalytic signal amplification by porphyrin-based covalent-linked nanomaterial (OAPS-Por). This OAPS-Por could not only absorb much Thionine (Thi), but also possess obvious electrocatalytic activity toward the reduction of Thi without involvement of HO. Sequentially, the functionalized OAPS-Por with Thi, Au nanoparticles and single-stranded DNA (OAPS-Por/Thi@AuNPs-ssDNA) was ingeniously designed as the signal probe. Meantime, the hairpin DNA (hDNA) with four uracil bases was immobilized on AuNPs/GCE via an Au-S bond. When UDG was present, the uracil in hDNA was removed and hairpin structure was unfolded. Next, the signal probes binded with the unfolded hDNA by DNA hybridization. The Thi in signal probes could generated an original electrochemical signal, which could be further amplified and output due to the robust electrocatalytic activities of OAPS-Por toward Thi. As a result, the as-constructed electrochemical biosensor had a broad linear range from 0.005 to 1 U mL. It also exhibited a low detection limit of 6.97 × 10 U mL. Moreover, this biosensor could be used to assay the inhibition of UDG (UGI) and the UDG activity in real samples (HeLa cell lysates and human blood serums), and demonstrated great prospect in clinical diagnostics and biomedical research.

摘要

我们开发了一种基于卟啉基共价连接纳米材料(OAPS-Por)的无酶和无底物电化学生物传感器,用于尿嘧啶-DNA 糖基化酶(UDG)检测,实现了基于电催化信号放大的无酶和无底物电化学生物传感器。这种 OAPS-Por 不仅可以吸收大量的 Thionine(Thi),而且在不涉及 HO 的情况下对 Thi 的还原具有明显的电催化活性。随后,将具有 Thi、Au 纳米粒子和单链 DNA 的功能化 OAPS-Por(OAPS-Por/Thi@AuNPs-ssDNA)设计为信号探针。同时,含有四个尿嘧啶碱基的发夹 DNA(hDNA)通过 Au-S 键固定在 AuNPs/GCE 上。当 UDG 存在时,hDNA 中的尿嘧啶被去除,发夹结构展开。接下来,信号探针通过 DNA 杂交与展开的 hDNA 结合。信号探针中的 Thi 可以产生原始电化学信号,由于 OAPS-Por 对 Thi 的强大电催化活性,该信号可以进一步放大和输出。因此,所构建的电化学生物传感器在 0.005 至 1 U mL 的宽线性范围内具有良好的线性关系。它还表现出 6.97×10 U mL 的低检测限。此外,该生物传感器可用于测定 UDG 的抑制(UGI)和真实样品(HeLa 细胞裂解物和人血清)中的 UDG 活性,在临床诊断和生物医学研究中具有广阔的前景。

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