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万古霉素修饰的银包被磁性纳米颗粒与二次增强纳米颗粒联合用于细菌的快速表面增强拉曼散射检测

Combined use of vancomycin-modified Ag-coated magnetic nanoparticles and secondary enhanced nanoparticles for rapid surface-enhanced Raman scattering detection of bacteria.

作者信息

Wang Chongwen, Gu Bing, Liu Qiqi, Pang Yuanfeng, Xiao Rui, Wang Shengqi

机构信息

Beijing Key Laboratory of New Molecular Diagnosis Technologies for Infectious Diseases, Beijing Institute of Radiation Medicine, Beijing, People's Republic of China.

College of Life Sciences and Bio-Engineering, Beijing University of Technology, Beijing, People's Republic of China.

出版信息

Int J Nanomedicine. 2018 Feb 27;13:1159-1178. doi: 10.2147/IJN.S150336. eCollection 2018.

Abstract

BACKGROUND

Pathogenic bacteria have always been a significant threat to human health. The detection of pathogens needs to be rapid, accurate, and convenient.

METHODS

We present a sensitive surface-enhanced Raman scattering (SERS) biosensor based on the combination of vancomycin-modified Ag-coated magnetic nanoparticles (FeO@Ag-Van MNPs) and Au@Ag nanoparticles (NPs) that can effectively capture and discriminate bacterial pathogens from solution. The high-performance FeO@Ag MNPs were modified with vancomycin and used as bacteria capturer for magnetic separation and enrichment. The modified MNPS were found to exhibit strong affinity with a broad range of Gram-positive and Gram-negative bacteria. After separating and rinsing bacteria, FeO@Ag-Van MNPs and Au@Ag NPs were synergistically used to construct a very large number of hot spots on bacteria cells, leading to ultrasensitive SERS detection.

RESULTS

The dominant merits of our dual enhanced strategy included high bacterial-capture efficiency (>65%) within a wide pH range (pH 3.0-11.0), a short assay time (<30 min), and a low detection limit (5×10 cells/mL). Moreover, the spiked tests show that this method is still valid in milk and blood samples. Owing to these capabilities, the combined system enabled the sensitive and specific discrimination of different pathogens in complex solution, as verified by its detection of Gram-positive bacterium , Gram-positive bacterium , and methicillin-resistant .

CONCLUSION

This method has great potential for field applications in food safety, environmental monitoring, and infectious disease diagnosis.

摘要

背景

病原菌一直是人类健康的重大威胁。病原体的检测需要快速、准确且便捷。

方法

我们提出了一种基于万古霉素修饰的银包被磁性纳米颗粒(FeO@Ag-Van MNPs)与金@银纳米颗粒(NPs)相结合的灵敏表面增强拉曼散射(SERS)生物传感器,其能够从溶液中有效捕获并鉴别细菌病原体。高性能的FeO@Ag MNPs用万古霉素进行修饰,并用作细菌捕获剂进行磁分离和富集。发现修饰后的MNPS对多种革兰氏阳性和革兰氏阴性细菌具有很强的亲和力。在分离和冲洗细菌后,FeO@Ag-Van MNPs与金@银纳米颗粒协同作用,在细菌细胞上构建大量热点,从而实现超灵敏的SERS检测。

结果

我们的双重增强策略的主要优点包括在较宽的pH范围(pH 3.0 - 11.0)内具有较高的细菌捕获效率(>65%)、检测时间短(<30分钟)以及检测限低(5×10个细胞/毫升)。此外,加标试验表明该方法在牛奶和血液样本中仍然有效。由于这些能力,该组合系统能够灵敏且特异地鉴别复杂溶液中的不同病原体,对革兰氏阳性菌、革兰氏阳性菌和耐甲氧西林菌的检测验证了这一点。

结论

该方法在食品安全、环境监测和传染病诊断的现场应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ed8/5834169/7c69efea4749/ijn-13-1159Fig1.jpg

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