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基于噬菌体的病原体检测的原理、方法和实时应用。

Principles, Methods, and Real-Time Applications of Bacteriophage-Based Pathogen Detection.

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy, Gazi University, 06330, Ankara, Turkey.

Department of Civil Engineering, National University of Sciences and Technology, Quetta, 24090, Balochistan, Pakistan.

出版信息

Mol Biotechnol. 2024 Nov;66(11):3059-3076. doi: 10.1007/s12033-023-00926-5. Epub 2023 Nov 1.


DOI:10.1007/s12033-023-00926-5
PMID:37914863
Abstract

Bacterial pathogens in water, food, and the environment are spreading diseases around the world. According to a World Health Organization (WHO) report, waterborne pathogens pose the most significant global health risks to living organisms, including humans and animals. Conventional bacterial detection approaches such as colony counting, microscopic analysis, biochemical analysis, and molecular analysis are expensive, time-consuming, less sensitive, and require a pre-enrichment step. However, the bacteriophage-based detection of pathogenic bacteria is a robust approach that utilizes bacteriophages, which are viruses that specifically target and infect bacteria, for rapid and accurate detection of targets. This review shed light on cutting-edge technologies about the novel structure of phages and the immobilization process on the surface of electrodes to detect targeted bacterial cells. Similarly, the purpose of this study was to provide a comprehensive assessment of bacteriophage-based biosensors utilized for pathogen detection, as well as their trends, outcomes, and problems. This review article summaries current phage-based pathogen detection strategies for the development of low-cost lab-on-chip (LOC) and point-of-care (POC) devices using electrochemical and optical methods such as surface-enhanced Raman spectroscopy (SERS).

摘要

水中、食物中和环境中的细菌病原体正在世界各地传播疾病。根据世界卫生组织(WHO)的一份报告,水传播病原体对包括人类和动物在内的生物体构成了最大的全球健康风险。传统的细菌检测方法,如菌落计数、显微镜分析、生化分析和分子分析,既昂贵又耗时,灵敏度较低,并且需要预富集步骤。然而,基于噬菌体的致病菌检测是一种利用噬菌体(专门针对和感染细菌的病毒)进行快速准确检测目标的强大方法。这篇综述介绍了噬菌体的新型结构和在电极表面固定化的最新技术,以检测目标细菌细胞。同样,本研究的目的是全面评估基于噬菌体的生物传感器在病原体检测中的应用,以及它们的趋势、结果和问题。本文综述了当前基于噬菌体的病原体检测策略,用于开发使用电化学和光学方法(如表面增强拉曼光谱(SERS))的低成本芯片实验室(LOC)和即时检测(POC)设备。

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本文引用的文献

[1]
Relationship of the Poultry Microbiome to Pathogen Colonization, Farm Management, Poultry Production, and Foodborne Illness Risk Assessment.

J Food Prot. 2023-11

[2]
Bacteriophage-based biosensors for detection of pathogenic microbes in wastewater.

Sci Total Environ. 2023-11-25

[3]
Antibody Phage Display Technology for Sensor-Based Virus Detection: Current Status and Future Prospects.

Biosensors (Basel). 2023-6-9

[4]
The Applications of Electrochemical Immunosensors in the Detection of Disease Biomarkers: A Review.

Molecules. 2023-4-20

[5]
Bacteriophage Adsorption: Likelihood of Virion Encounter with Bacteria and Other Factors Affecting Rates.

Antibiotics (Basel). 2023-4-7

[6]
Bacteriophage-based nano-biosensors for the fast impedimetric determination of pathogens in food samples.

Sci Rep. 2023-3-1

[7]
Bacteriophages as Biotechnological Tools.

Viruses. 2023-1-26

[8]
Ecology and Evolutionary Biology of Hindering Phage Therapy: The Phage Tolerance vs. Phage Resistance of Bacterial Biofilms.

Antibiotics (Basel). 2023-1-25

[9]
Application of Lytic Bacteriophages and Their Enzymes to Reduce Saprophytic Bacteria Isolated from Minimally Processed Plant-Based Food Products-In Vitro Studies.

Viruses. 2022-12-20

[10]
Recent advances in electrochemical strategies for bacteria detection.

Bioimpacts. 2022

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