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D-酒石酸掺杂提高了用于检测副溶血性弧菌的全细胞细菌印迹聚合物的性能。

D-tartaric acid doping improves the performance of whole-cell bacteria imprinted polymer for sensing Vibrio parahaemolyticus.

作者信息

Jia Xiaoyan, Liu Jie, Zhang Yanan, Jiang Xuyan, Zhang Junling, Wu Jikui

机构信息

Shanghai Engineering Research Center of Aquatic-Product Processing & Preservation, Shanghai Ocean University, Shanghai, 201306, China.

Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Collaborative Innovation Center for Aquatic Animal Genetics and Breeding, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

Anal Chim Acta. 2023 Sep 22;1275:341567. doi: 10.1016/j.aca.2023.341567. Epub 2023 Jun 27.

Abstract

Whole-cell bacteria imprinted polymer-based sensors still face challenges in the form of the difficulty of removing the template entirely, low affinity, and poor sensitivity. To further improve their performance, it is pivotal to modulate the morphology and chemical properties of imprintied polymer by taking advantage of doping engineering. Here we introduced D-tartaric acid (D-TA) as a dopant and employed pyrrole as a functional monomer to construct D-TA/polypyrrole (PPy)-based bacteria imprinted polymer (DPBIP) sensor for Vibrio parahaemolyticus (VP) detection. It is demonstrated that D-TA doping can synergistically accelerate the removal of template bacteria from imprinted polymers (1.5 h), improve bacteria affinity of imprinted sites (the recognition time of 30 min), and enhance the sensitivity of DPBIP sensor (a detection limit of 19 CFU mL). The DPBIP sensor had a linear range of 10∼10 CFU mL and exhibited high selectivity and good repeatability. Moreover, a recovery of 94.8%-105.3% was achieved in drinking water and oyster samples. Therefore, small functional molecules doping opens a new avenue to engineering BIP-based sensors with high performance, holding potential applications in securing food safety.

摘要

基于全细胞细菌印迹聚合物的传感器在完全去除模板困难、亲和力低和灵敏度差等方面仍面临挑战。为了进一步提高其性能,利用掺杂工程调节印迹聚合物的形态和化学性质至关重要。在此,我们引入D-酒石酸(D-TA)作为掺杂剂,并使用吡咯作为功能单体,构建用于检测副溶血性弧菌(VP)的基于D-TA/聚吡咯(PPy)的细菌印迹聚合物(DPBIP)传感器。结果表明,D-TA掺杂可协同加速模板细菌从印迹聚合物中的去除(1.5小时),提高印迹位点对细菌的亲和力(识别时间为30分钟),并增强DPBIP传感器的灵敏度(检测限为19 CFU/mL)。DPBIP传感器的线性范围为10∼10 CFU/mL,具有高选择性和良好的重复性。此外,在饮用水和牡蛎样品中回收率达到94.8%-105.3%。因此,小分子功能掺杂为构建高性能的基于细菌印迹聚合物的传感器开辟了一条新途径,在保障食品安全方面具有潜在应用价值。

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