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基于单探针的多种细菌比色和光热双模式识别

Single-Probe-Based Colorimetric and Photothermal Dual-Mode Identification of Multiple Bacteria.

作者信息

Wang Ying, Li Jingwen, Liu Hongyu, Du Xu, Yang Limin, Zeng Jingbin

机构信息

College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao 266580, P. R. China.

Technology Center of Qingdao Customs, Qingdao 266002, P. R. China.

出版信息

Anal Chem. 2023 Feb 7;95(5):3037-3044. doi: 10.1021/acs.analchem.2c05140. Epub 2023 Jan 24.

Abstract

Effective identification of multiple pathogenic bacteria in unknown samples is important for disease prevention and control but remains a challenge yet. A single-mode array-based sensing approach is simple and sensitive, but it usually relies on the use of multiple cross-reactive receptors to construct sensor arrays, which is cumbersome and insufficiently accurate. Here, we developed a sensor array with colorimetric and photothermal dual mode of differentiating multiple pathogenic bacteria. The sensor array was based on boronic acid-functionalized Au-FeO nanoparticles (BA-GMNPs), which not only possess localized surface plasmon resonance properties, showing a burgundy color similar to that of AuNPs, but also exhibit mild superparamagnetism, allowing for the differentiation of bacteria before and after binding to the nanoparticles. Immobilization of BA-GMNPs on the bacterial cell surface by covalent bonding would diminish NaCl-induced assembly of BA-GMNPs. Different BA-GMNPs@bacterial complexes differed in their ability to resist assembly and produced different colorimetric and photothermal response signals. A unique molecular fingerprint of each bacterium was obtained by linear discriminant analysis of the response patterns, demonstrating an effective differentiation among the six species studied. Compared with single-mode sensing arrays based on multiple receptors, this method only requires the preparation of a single nanomaterial, which produces two signal outputs for the identification of multiple bacteria with better differentiation. It can distinguish not only multiple pathogenic bacteria but also Gram-negative and Gram-positive bacteria, and, more importantly, it can perform preliminary discrimination of unknown samples.

摘要

有效识别未知样本中的多种致病细菌对于疾病预防和控制至关重要,但仍然是一项挑战。基于单模式阵列的传感方法简单且灵敏,但通常依赖于使用多种交叉反应受体来构建传感器阵列,这既繁琐又不够准确。在此,我们开发了一种具有比色和光热双模式的传感器阵列,用于区分多种致病细菌。该传感器阵列基于硼酸功能化的金-氧化铁纳米颗粒(BA-GMNPs),其不仅具有局域表面等离子体共振特性,呈现出与金纳米颗粒相似的紫红色,还表现出轻度超顺磁性,使得在纳米颗粒与细菌结合前后能够对细菌进行区分。通过共价键将BA-GMNPs固定在细菌细胞表面会减少NaCl诱导的BA-GMNPs组装。不同的BA-GMNPs@细菌复合物在抵抗组装的能力上存在差异,并产生不同的比色和光热响应信号。通过对响应模式进行线性判别分析获得了每种细菌独特的分子指纹,证明在所研究的六种细菌之间实现了有效区分。与基于多种受体的单模式传感阵列相比,该方法仅需制备单一纳米材料,其产生两种信号输出用于识别多种细菌,具有更好的区分效果。它不仅可以区分多种致病细菌,还能区分革兰氏阴性菌和革兰氏阳性菌,更重要的是,它可以对未知样本进行初步判别。

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