review · Vaccines
Pathogens found in food are a primary cause of foodborne illnesses and represent a major worldwide challenge. Rapid identification technologies have developed substantially, with modern approaches centring on immunoassays, genome-wide techniques, biosensors, and mass spectrometry to detect harmful bacteria. Alongside diagnosis, biocontrol methods including bacteriophages, probiotics, and prebiotics offer means to counteract bacterial infections, gaining renewed interest as traditional antibiotics become exhausted. While initially focused on human clinical therapies, the use of bacteriophages has broadened into biotechnology and the food safety industry to protect consumer health. Reviewing these diagnostic methods highlights how fast detection underpins subsequent research advances. In addition, assessing bacteriophages, probiotics, and prebiotics demonstrates their role in combating major foodborne diseases, while clarifying both the benefits and the practical challenges associated with employing bacteriophages across food safety applications.
Foodborne diseases pose significant threats to public health across the world. With traditional antibiotics losing effectiveness, evaluating rapid detection tools and alternative biological controls is essential. Improved diagnostic tools and biological agents like bacteriophages and probiotics can help safeguard food supplies and prevent severe illnesses among consumers.
The work outlines opportunities in the food safety industry and industrial biotechnology. Potential users include food safety managers and diagnostic developers seeking rapid screening via biosensors, immunoassays, or mass spectrometry. The abstract discusses bacteriophages, probiotics, and prebiotics as biocontrol agents, but as a review of recent studies and techniques, it reflects early-stage research into practical advantages and operational challenges rather than specific, near-market commercial products.
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Pathogens found in food are believed to be the leading cause of foodborne illnesses; and they are considered a serious problem with global ramifications. During the last few decades, a lot of attention has been paid to determining the microorganisms that cause foodborne illnesses and developing new methods to identify them. Foodborne pathogen identification technologies have evolved rapidly over the last few decades, with the newer technologies focusing on immunoassays, genome-wide approaches, biosensors, and mass spectrometry as the primary methods of identification. Bacteriophages (phages), probiotics and prebiotics were known to have the ability to combat bacterial diseases since the turn of the 20th century. A primary focus of phage use was the development of medical therapies; however, its use quickly expanded to other applications in biotechnology and industry. A similar argument can be made with regards to the food safety industry, as diseases directly endanger the health of customers. Recently, a lot of attention has been paid to bacteriophages, probiotics and prebiotics most likely due to the exhaustion of traditional antibiotics. Reviewing a variety of current quick identification techniques is the purpose of this study. Using these techniques, we are able to quickly identify foodborne pathogenic bacteria, which forms the basis for future research advances. A review of recent studies on the use of phages, probiotics and prebiotics as a means of combating significant foodborne diseases is also presented. Furthermore, we discussed the advantages of using phages as well as the challenges they face, especially given their prevalent application in food safety.
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DOI: 10.3390/vaccines11040725
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