A novel strategy for rapid, portable, and sensitive detection of Clostridium perfringens cpb2 gene using smartphone-based electrochemical DNA biosensor based on screen-printed electrodes modified with nanocomposite

IF 5.3 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Qianyue Wu, Beiying Yang, Yutang Wang, Yanyan Xiong, Jinhua Zhang, Yangping Wen, Andreja Rajkovic
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Abstract

An accurate, sensitive, low-cost, portable, and easy-to-use method for the quantitative detection of Clostridium perfringens (Cp), a zoonotic pathogen widely found in nature and capable of spreading through contaminated food or environments, is essential for epidemiology, prevention, and diagnostics. Here, we have designed a smartphone-based electrochemical DNA biosensor, which utilizes carboxyl-functionalized multi-walled carbon nanotubes (COOH-MWCNTs) as the substrate, L-cysteine (L-Cys) as the linker, and a synergistic modification of the bioelectrode with gold nanoparticles (AuNPs) and polyamidoamine dendrimers (PAMAM). This design enables highly sensitive, low-cost, label-free, and portable detection of the cpb2 gene in Cp. The sensor not only enhances detection performance but also improves convenience and practicality. Differential pulse voltammetry (DPV) was used to monitor the electrochemical signal response to changes in target DNA concentration, enabling the tracking of the DNA hybridization process. Under optimized conditions, the biosensor exhibited a linear detection range from 10⁻14 to 10⁻⁸ M, with a detection limit of 1.5 fM. It demonstrated excellent selectivity for the cpb2 gene and was successfully applied to detect variations in cpb2 gene content in wastewater and fecal DNA samples. Compared with the traditional method, the detection time of this method is short, the operation of professional and technical personnel is not required, the instrument is small and portable, and the single detection cost is significantly reduced. This study provides a new strategy for the rapid, portable, and highly sensitive detection of bacterial toxin genes in livestock and aquaculture.

Graphical Abstract

Abstract Image

基于纳米复合材料修饰的屏幕印刷电极的智能手机电化学DNA生物传感器快速、便携、灵敏检测产气荚膜梭菌cbb2基因的新策略
产气荚膜梭菌(Clostridium perfringens, Cp)是一种广泛存在于自然界并能通过受污染的食物或环境传播的人畜共患病原体,一种准确、灵敏、低成本、便携和易于使用的定量检测方法对流行病学、预防和诊断至关重要。在此,我们设计了一种基于智能手机的电化学DNA生物传感器,该传感器利用羧基功能化的多壁碳纳米管(COOH-MWCNTs)作为底物,l-半胱氨酸(L-Cys)作为连接体,并用金纳米粒子(AuNPs)和聚胺胺树突(PAMAM)对生物电极进行协同修饰。本设计实现了对Cp中cpb2基因的高灵敏度、低成本、无标签、便携式检测,不仅提高了检测性能,而且提高了便捷性和实用性。差分脉冲伏安法(DPV)用于监测靶DNA浓度变化时的电化学信号响应,从而实现DNA杂交过程的跟踪。在优化条件下,该生物传感器的线性检测范围为10 - 14 - 10⁻⁸M,检测限为1.5 fM。该方法对cpb2基因具有良好的选择性,并成功地应用于检测废水和粪便DNA样本中cpb2基因含量的变化。与传统方法相比,该方法检测时间短,不需要专业技术人员操作,仪器小巧便携,单次检测成本显著降低。本研究为家畜和水产养殖中细菌毒素基因的快速、便携、高灵敏度检测提供了一种新策略。图形抽象
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来源期刊
Microchimica Acta
Microchimica Acta 化学-分析化学
CiteScore
9.80
自引率
5.30%
发文量
410
审稿时长
2.7 months
期刊介绍: As a peer-reviewed journal for analytical sciences and technologies on the micro- and nanoscale, Microchimica Acta has established itself as a premier forum for truly novel approaches in chemical and biochemical analysis. Coverage includes methods and devices that provide expedient solutions to the most contemporary demands in this area. Examples are point-of-care technologies, wearable (bio)sensors, in-vivo-monitoring, micro/nanomotors and materials based on synthetic biology as well as biomedical imaging and targeting.
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