Application of bacteriophages for detection of foodborne pathogens

Применение бактериофагов для выявления пищевых патогенов
Mathias Schmelcher, Martin J. Loessner
2014-02-07

bacteriophage-based detectioncell wall binding domainsfoodborne pathogensphage-based biosensorsphage-derived affinity molecules
Bacterial contamination of food products presents a challenge for the food industry and poses a high risk for the consumer. Despite increasing awareness and improved hygiene measures, foodborne pathogens remain a threat for public health, and novel methods for detection of these organisms are needed. Bacteriophages represent ideal tools for diagnostic assays because of their high target cell specificity, inherent signal-amplifying properties, easy and inexpensive production, and robustness. Every stage of the phage lytic multiplication cycle, from the initial recognition of the host cell to the final lysis event, may be harnessed in several ways for the purpose of bacterial detection. Besides intact phage particles, phage-derived affinity molecules such as cell wall binding domains and receptor binding proteins can serve for this purpose. This review provides an overview of existing phage-based technologies for detection of foodborne pathogens, and highlights the most recent developments in this field, with particular emphasis on phage-based biosensors.
1
Bacteriophages are promising diagnostic tools for detecting foodborne pathogens because of high target specificity, signal amplification, inexpensive production, and robustness.
2
Both intact phage particles and phage-derived affinity molecules, including cell wall binding domains and receptor binding proteins, support pathogen detection.
3
Existing phage-based technologies include diverse diagnostic approaches, with recent developments particularly focused on phage-based biosensors.
4
Multiple stages of the phage lytic cycle, from host recognition through cell lysis, can be exploited for bacterial detection.

Foodborne bacterial pathogens and their contamination of food products

Phage-based detection technologies, including biosensors and phage-derived affinity molecules, exploiting host specificity and lytic-cycle signal amplification

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2014-02-07
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Mathias Schmelcher
Martin J. Loessner
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