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一种新型的双细菌印迹聚合物传感器,用于高度选择性和快速检测致病菌。

A Novel Dual Bacteria-Imprinted Polymer Sensor for Highly Selective and Rapid Detection of Pathogenic Bacteria.

机构信息

College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China.

Laboratory of Quality and Safety Risk Assessment for Aquatic Product on Storage and Preservation (Shanghai), Ministry of Agriculture, Shanghai 201306, China.

出版信息

Biosensors (Basel). 2023 Sep 3;13(9):868. doi: 10.3390/bios13090868.

Abstract

The rapid, sensitive, and selective detection of pathogenic bacteria is of utmost importance in ensuring food safety and preventing the spread of infectious diseases. Here, we present a novel, reusable, and cost-effective impedimetric sensor based on a dual bacteria-imprinted polymer (DBIP) for the specific detection of O157:H7 and . The DBIP sensor stands out with its remarkably short fabrication time of just 20 min, achieved through the efficient electro-polymerization of o-phenylenediamine monomer in the presence of dual bacterial templates, followed by in-situ template removal. The key structural feature of the DBIP sensor lies in the cavity-free imprinting sites, indicative of a thin layer of bacterial surface imprinting. This facilitates rapid rebinding of the target bacteria within a mere 15 min, while the sensing interface regenerates in just 10 min, enhancing the sensor's overall efficiency. A notable advantage of the DBIP sensor is its exceptional selectivity, capable of distinguishing the target bacteria from closely related bacterial strains, including different serotypes. Moreover, the sensor exhibits high sensitivity, showcasing a low detection limit of approximately 9 CFU mL. The sensor's reusability further enhances its cost-effectiveness, reducing the need for frequent sensor replacements. The practicality of the DBIP sensor was demonstrated in the analysis of real apple juice samples, yielding good recoveries. The integration of quick fabrication, high selectivity, rapid response, sensitivity, and reusability makes the DBIP sensor a promising solution for monitoring pathogenic bacteria, playing a crucial role in ensuring food safety and safeguarding public health.

摘要

快速、灵敏、选择性地检测致病菌对于确保食品安全和防止传染病传播至关重要。在这里,我们提出了一种新颖的、可重复使用的、具有成本效益的基于双细菌印迹聚合物(DBIP)的阻抗传感器,用于特异性检测 O157:H7 和 。DBIP 传感器的突出特点是其制造时间非常短,仅需 20 分钟,这是通过在双细菌模板存在下高效电聚合邻苯二胺单体,然后进行原位模板去除实现的。DBIP 传感器的关键结构特征在于无腔印迹位点,表明存在细菌表面印迹的薄层。这使得目标细菌能够在短短 15 分钟内快速重新结合,而传感界面仅在 10 分钟内再生,从而提高了传感器的整体效率。DBIP 传感器的一个显著优点是其出色的选择性,能够区分目标细菌与密切相关的细菌菌株,包括不同的血清型。此外,该传感器具有高灵敏度,检测限约为 9 CFU mL。传感器的可重复使用性进一步提高了其成本效益,减少了对频繁更换传感器的需求。DBIP 传感器在实际苹果汁样品分析中的实用性得到了验证,回收率良好。快速制造、高选择性、快速响应、灵敏度和可重复使用性的集成使得 DBIP 传感器成为监测致病菌的有前途的解决方案,在确保食品安全和保护公众健康方面发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c1c/10526176/7366d9a8149b/biosensors-13-00868-sch001.jpg

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