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一种级联信号放大荧光生物传感器,结合 APE1 酶切割辅助靶循环与滚环扩增。

A cascade signal-amplified fluorescent biosensor combining APE1 enzyme cleavage-assisted target cycling with rolling circle amplification.

机构信息

State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Analyst. 2023 Dec 18;149(1):82-87. doi: 10.1039/d3an01727c.

Abstract

A cascade signal-amplified fluorescent biosensor was developed for miRNA-21 detection by combining APE1 enzyme-assisted target recycling and rolling circle amplification strategy. A key feature of this biosensor is its dual-trigger mechanism, utilizing both tumor-endogenous miRNA-21 and the APE1 enzyme in the initial amplification step, followed by a second rolling circle amplification reaction. This dual signal amplification cascade significantly enhanced sensitivity, achieving a detection limit of 3.33 pM. Furthermore, this biosensor exhibited excellent specificity and resistance to interference, allowing it to effectively distinguish and detect the target miRNA-21 in the presence of multiple interfering miRNAs. Moreover, the biosensor maintained its robust detection capabilities in a 10% serum environment, demonstrating its potential for clinical disease diagnosis applications.

摘要

一种级联信号放大荧光生物传感器,通过结合APE1 酶辅助的靶标循环和滚环扩增策略,用于 miRNA-21 的检测。该生物传感器的一个特点是其双触发机制,在初始扩增步骤中同时利用肿瘤内源性 miRNA-21 和 APE1 酶,然后进行第二次滚环扩增反应。这种双重信号放大级联显著提高了灵敏度,检测限达到 3.33 pM。此外,该生物传感器表现出优异的特异性和抗干扰性,能够在存在多种干扰 miRNA 的情况下有效区分和检测靶标 miRNA-21。此外,该生物传感器在 10%血清环境中仍保持强大的检测能力,显示出其在临床疾病诊断应用中的潜力。

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