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用于超灵敏检测飞摩尔浓度微小RNA-141的全碳三明治型自供电生物传感器。

All-carbon sandwich-type self-powered biosensor for ultrasensitive detection of femtomolar miRNA-141.

作者信息

Shi Jinyue, Xie Wan-Zhen, Wang Lan-Rui, Song Ya-Lin, Lin Yu, Wu Yeyu, Luo Hu, Huang Ke-Jing, Tan Xuecai

机构信息

Key Laboratory of Chemistry and Engineering of Forest Products, State Ethnic Affairs Commission, Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Guangxi Collaborative Innovation Center for Chemistry and Engineering of Forest Products, Key Laboratory of Guangxi Colleges and Universities for Food Safety and Pharmaceutical Analytical Chemistry, School of Chemistry and Chemical Engineering, Guangxi Minzu University, Nanning, 530008, China.

Library of Guangxi Minzu University, Nanning, 530008, China.

出版信息

Anal Chim Acta. 2022 Dec 15;1236:340589. doi: 10.1016/j.aca.2022.340589. Epub 2022 Nov 5.

Abstract

The latest research shows that the expression level of microRNA-141 can predict the number of prostate cancer cells in the human body and has become an important biomarker. In this paper, an all-carbon sandwich self-powered biosensor based on graphene and carbon cloth is constructed for the highly sensitive detection of the prostate tumor marker miRNA-141. First, gold nanoparticles modified carbon cloth is applied for substrate electrode, and bilirubin oxidase is then immobilized on it to prepare the biocathode of the biofuel cell. Then, aptamer 1 is immobilized on gold nanoparticles-modified carbon cloth as the electrode substrate. The bioconjugate is prepared by immobilizing the aptamer 2-glucose oxidase complex on gold nanoparticles/graphene. In the biofuel cell-based self-powered sensing system, when the target microRNA-141 is present, it undergoes complementary base pairing with aptamer 1 and aptamer 2, and the bioconjugates are immobilized on the anode to form the sandwich structure. The enzyme on the anode undergoes an oxidation reaction to catalyze the reduction of oxygen, and the electrochemical respond of the system increases significantly. The results show that the concentration of microRNA-141 is proportional to the open-circuit voltage value ranging from 0.0001 to 1000 pmol/L with a detection limit of 50 amol/L (S/N = 3). The method has high sensitivity and excellent selectivity and can be applied to sensitively detect tumor marker microRNA-141 in biological matrix.

摘要

最新研究表明,微小RNA-141的表达水平可预测人体内前列腺癌细胞的数量,并已成为一种重要的生物标志物。本文构建了一种基于石墨烯和碳布的全碳三明治自供电生物传感器,用于高灵敏度检测前列腺肿瘤标志物微小RNA-141。首先,将金纳米颗粒修饰的碳布用作基底电极,然后将胆红素氧化酶固定在其上,制备生物燃料电池的生物阴极。接着,将适配体1固定在金纳米颗粒修饰的碳布作为电极基底上。通过将适配体2-葡萄糖氧化酶复合物固定在金纳米颗粒/石墨烯上来制备生物共轭物。在基于生物燃料电池的自供电传感系统中,当目标微小RNA-141存在时,它与适配体1和适配体2进行互补碱基配对,生物共轭物固定在阳极上形成三明治结构。阳极上的酶发生氧化反应催化氧气还原,系统的电化学响应显著增加。结果表明,微小RNA-141的浓度与0.0001至1000 pmol/L范围内的开路电压值成正比,检测限为50 amol/L(S/N = 3)。该方法具有高灵敏度和优异的选择性,可应用于灵敏检测生物基质中的肿瘤标志物微小RNA-141。

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