Bacteriophages and food safety: An updated overview
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Syeda Mahvish Zahra | S. Biswas | A. Imran | M. Afzaal | Rehman Ali | Ifrah Usman | Adil Rasool | Fakhar Islam | Umber Shehzadi | Mohd Asif Shah | G. Hussain | Anamika Chauhan | Yuosra Amer Ali | Sadaf Khurshid
[1] F. Saeed,et al. Isolation and antioxidant characterization of theaflavin for neuroprotective effect in mice model , 2023, Food science & nutrition.
[2] F. Saeed,et al. Valorization of mustard and sesame oilseed cakes for food application through eco‐innovative technologies , 2023, Food science & nutrition.
[3] B. Jagannathan,et al. Bacteriophage-mediated control of pre- and post-harvest produce quality and safety , 2022, LWT.
[4] F. Saeed,et al. Applications of green technologies‐based approaches for food safety enhancement: A comprehensive review , 2022, Food science & nutrition.
[5] M. Garvey. Bacteriophages and the One Health Approach to Combat Multidrug Resistance: Is This the Way? , 2020, Antibiotics.
[6] Lucas P. P. Braga,et al. Impact of phages on soil bacterial communities and nitrogen availability under different assembly scenarios , 2020, Microbiome.
[7] T. Miyamoto,et al. Isolation and application of bacteriophages alone or in combination with nisin against planktonic and biofilm cells of Staphylococcus aureus , 2020, Applied Microbiology and Biotechnology.
[8] A. Sulakvelidze,et al. Phage Biocontrol Improves Food Safety by Significantly Reducing the Level and Prevalence of Escherichia coli O157:H7 in Various Foods. , 2020, Journal of food protection.
[9] R. Barrangou,et al. In Vivo Targeting of Clostridioides difficile Using Phage-Delivered CRISPR-Cas3 Antimicrobials , 2020, mBio.
[10] S. Ha,et al. Characterization of Salmonella spp.-specific bacteriophages and their biocontrol application in chicken breast meat. , 2020, Journal of food science.
[11] Maoda Pang,et al. Broad host range phage vB-LmoM-SH3-3 reduces the risk of Listeria contamination in two types of ready-to-eat food , 2020 .
[12] Siyun Wang,et al. Inactivation of Salmonella enterica on post-harvest cantaloupe and lettuce by a lytic bacteriophage cocktail , 2019, Current Research in Food Science.
[13] R. Holley,et al. SalmoFresh™ effectiveness in controlling Salmonella on romaine lettuce, mung bean sprouts and seeds. , 2019, International journal of food microbiology.
[14] A. Góes-Neto,et al. Bacteriophages as Alternatives to Antibiotics in Clinical Care , 2019, Antibiotics.
[15] H. Hosseini,et al. Drug Resistance and the Prevention Strategies in Food Borne Bacteria: An Update Review , 2019, Advanced pharmaceutical bulletin.
[16] A. Franks,et al. Bacteriophages in Natural and Artificial Environments , 2019, Pathogens.
[17] W. Tan,et al. Efficacy and potential of phage therapy against multidrug resistant Shigella spp. , 2019, PeerJ.
[18] A. Coffey,et al. Bacteriophages in Food Applications: From Foe to Friend. , 2019, Annual review of food science and technology.
[19] V. Aquili,et al. Evaluation of a novel cocktail of six lytic bacteriophages against Shiga toxin-producing Escherichia coli in broth, milk and meat. , 2018, Food microbiology.
[20] Xiaohong Wang,et al. Isolation, characterization, and application of a novel specific Salmonella bacteriophage in different food matrices. , 2018, Food research international.
[21] K. Warriner,et al. Challenges in the microbiological food safety of fresh produce: Limitations of post-harvest washing and the need for alternative interventions , 2017 .
[22] Henry C. Lin,et al. Phage therapy: An alternative to antibiotics in the age of multi-drug resistance , 2017, World journal of gastrointestinal pharmacology and therapeutics.
[23] Che wan Jasimah Bt wan Mohamed Radzi,et al. Use of a lytic bacteriophage to control Salmonella Enteritidis in retail food , 2017 .
[24] Manrong Li,et al. Bacteriophage preparation lytic for Shigella significantly reduces Shigella sonnei contamination in various foods , 2017, PloS one.
[25] L. Brøndsted,et al. Significance of phage-host interactions for biocontrol of Campylobacter jejuni in food , 2017 .
[26] HongYingying,et al. Treatment of Salmonella-Contaminated Eggs and Pork with a Broad-Spectrum, Single Bacteriophage: Assessment of Efficacy and Resistance Development , 2016 .
[27] A. Yousef,et al. Developing and optimizing bacteriophage treatment to control enterohemorrhagic Escherichia coli on fresh produce. , 2016, International journal of food microbiology.
[28] A. Sulakvelidze,et al. Effect of a bacteriophage cocktail in combination with modified atmosphere packaging in controlling Listeria monocytogenes on fresh-cut spinach , 2016 .
[29] H. Anany,et al. Development of prototypes of bioactive packaging materials based on immobilized bacteriophages for control of growth of bacterial pathogens in foods. , 2016, International journal of food microbiology.
[30] Manrong Li,et al. Bacteriophage cocktail significantly reduces or eliminates Listeria monocytogenes contamination on lettuce, apples, cheese, smoked salmon and frozen foods. , 2015, Food microbiology.
[31] A. Deep,et al. Lytic bacteriophages as biocontrol agents of foodborne pathogens , 2015 .
[32] V. Mai,et al. Bacteriophage administration significantly reduces Shigella colonization and shedding by Shigella-challenged mice without deleterious side effects and distortions in the gut microbiota , 2015, Bacteriophage.
[33] R. Nannapaneni,et al. Reduction of Salmonella on chicken meat and chicken skin by combined or sequential application of lytic bacteriophage with chemical antimicrobials. , 2015, International journal of food microbiology.
[34] Ran Wang,et al. Bio-Control of Salmonella Enteritidis in Foods Using Bacteriophages , 2015, Viruses.
[35] A. Górski,et al. Phages in the global fruit and vegetable industry , 2015, Journal of applied microbiology.
[36] Małgorzata B. Łobocka,et al. [Lysis of bacterial cells in the process of bacteriophage release--canonical and newly discovered mechanisms]. , 2015, Postepy higieny i medycyny doswiadczalnej.
[37] H. Neve,et al. Primary Isolation Strain Determines Both Phage Type and Receptors Recognised by Campylobacter jejuni Bacteriophages , 2015, PloS one.
[38] K. Stingl,et al. Reduction of Campylobacter jejuni in Broiler Chicken by Successive Application of Group II and Group III Phages , 2014, PloS one.
[39] M. Geyer,et al. Postharvest treatments of fresh produce , 2014, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[40] C. Balague,et al. Hard Surfaces Decontamination of Enteropathogenic and Shiga Toxin-Producing Escherichia coli using Bacteriophages , 2014 .
[41] A. Kropinski,et al. Efficacy of bacteriophage LISTEX™P100 combined with chemical antimicrobials in reducing Listeria monocytogenes in cooked turkey and roast beef. , 2013, International journal of food microbiology.
[42] L. Krause,et al. Safety analysis of a Russian phage cocktail: from metagenomic analysis to oral application in healthy human subjects. , 2013, Virology.
[43] S. Opal,et al. A historical overview of bacteriophage therapy as an alternative to antibiotics for the treatment of bacterial pathogens , 2013, Virulence.
[44] Manrong Li,et al. Bacteriophages lytic for Salmonella rapidly reduce Salmonella contamination on glass and stainless steel surfaces , 2013, Bacteriophage.
[45] S. Sillankorva,et al. Bacteriophages and Their Role in Food Safety , 2012, International journal of microbiology.
[46] M. Widdowson,et al. Foodborne Illness Acquired in the United States—Major Pathogens , 2011, Emerging infectious diseases.
[47] B. Martínez,et al. Bacteriophages and their application in food safety , 2008, Letters in applied microbiology.
[48] R. Raya,et al. Isolation and Characterization of a New T-Even Bacteriophage, CEV1, and Determination of Its Potential To Reduce Escherichia coli O157:H7 Levels in Sheep , 2006, Applied and Environmental Microbiology.
[49] Mark A Mueller,et al. Phage therapy reduces Campylobacter jejuni colonization in broilers. , 2005, Veterinary microbiology.
[50] G. Greer,et al. Bacteriophage Control of Foodborne Bacteria , 2005 .
[51] J. Whichard,et al. Suppression of Salmonella growth by wild-type and large-plaque variants of bacteriophage Felix O1 in liquid culture and on chicken frankfurters. , 2003, Journal of food protection.
[52] Shuliang Liu,et al. Characterization of the narrow-spectrum bacteriophage LSE7621 towards Salmonella Enteritidis and its biocontrol potential on lettuce and tofu , 2020 .
[53] S. Rawat. Food Spoilage: Microorganisms and their prevention , 2015 .