Biofilm removal mediated by Salmonella phages from chicken-related sources
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Xinglian Xu | Linlin Cai | Huhu Wang | Lingling Zhang | Zhenzhen Ning | Lingling Zhang | Linlin Cai | Ying Chen
[1] T. Sicheritz-Pontén,et al. Complete Genome Sequence of Salmonella enterica Bacteriophage PRF-SP1 , 2021, Microbiology resource announcements.
[2] A. Wieliczko,et al. Genomic and functional characterization of five novel Salmonella-targeting bacteriophages , 2021, Virology Journal.
[3] S. S. Giri,et al. Isolation and Characterization of Salmonella Jumbo-Phage pSal-SNUABM-04 , 2020, Viruses.
[4] Xinglian Xu,et al. Modeling the elimination of mature biofilms formed by Staphylococcus aureus and Salmonella spp. Using combined ultrasound and disinfectants. , 2020, Ultrasonics sonochemistry.
[5] N. Murru,et al. Antimicrobial Susceptibility Testing for Salmonella Serovars Isolated from Food Samples: Five-Year Monitoring (2015–2019) , 2020, Antibiotics.
[6] P. Domingo-Calap,et al. Phages for Biofilm Removal , 2020, Antibiotics.
[7] A. Górski,et al. Bacteriophages and Lysins in Biofilm Control , 2020, Virologica Sinica.
[8] A. Wieliczko,et al. Salmonella biofilm development: Structure and significance , 2019 .
[9] K. Fairfull‐Smith,et al. Bacterial Biofilm Eradication Agents: A Current Review , 2019, Front. Chem..
[10] M. Islam,et al. Application of a Phage Cocktail for Control of Salmonella in Foods and Reducing Biofilms , 2019, Viruses.
[11] JianHe Sun,et al. Isolation and characterization of a broad-spectrum phage of multiple drug resistant Salmonella and its therapeutic utility in mice. , 2019, Microbial pathogenesis.
[12] Ota Samek,et al. Monitoring Candida parapsilosis and Staphylococcus epidermidis Biofilms by a Combination of Scanning Electron Microscopy and Raman Spectroscopy , 2018, Sensors.
[13] J. B. Aswathanarayan,et al. Inhibition of biofilm formation and quorum sensing mediated phenotypes by berberine in Pseudomonas aeruginosa and Salmonella typhimurium , 2018, RSC advances.
[14] Yimin Zhang,et al. The Characterization of Biofilm Formation and Detection of Biofilm-Related Genes in Salmonella Isolated from Beef Processing Plants. , 2018, Foodborne pathogens and disease.
[15] P. Nocerino,et al. Exopolymeric substances (EPS) from Salmonella enterica: polymers, proteins and their interactions with plants and abiotic surfaces , 2018, Journal of Microbiology.
[16] S. Sillankorva,et al. Control of Salmonella Enteritidis on food contact surfaces with bacteriophage PVP-SE2 , 2018, Biofouling.
[17] A. Sulakvelidze,et al. Bacteriophage Applications for Food Production and Processing , 2018, Viruses.
[18] J. Pirnay,et al. Guidelines to Compose an Ideal Bacteriophage Cocktail. , 2018, Methods in molecular biology.
[19] Guang-hong Zhou,et al. Characterization of attachment and biofilm formation by meat-borne Enterobacteriaceae strains associated with spoilage , 2017 .
[20] J. Miranda,et al. Effect of Food Residues in Biofilm Formation on Stainless Steel and Polystyrene Surfaces by Salmonella enterica Strains Isolated from Poultry Houses , 2017, Foods.
[21] Siyun Wang,et al. Characterization of Four Novel Bacteriophages Isolated from British Columbia for Control of Non-typhoidal Salmonella in Vitro and on Sprouting Alfalfa Seeds , 2017, Front. Microbiol..
[22] M. Wang,et al. Preliminary Transcriptome Analysis of Mature Biofilm and Planktonic Cells of Salmonella Enteritidis Exposure to Acid Stress , 2017, Front. Microbiol..
[23] G. Nychas,et al. Anti-adhesion and Anti-biofilm Potential of Organosilane Nanoparticles against Foodborne Pathogens , 2017, Front. Microbiol..
[24] Guang-hong Zhou,et al. Response of long-term acid stress to biofilm formation of meat-related Salmonella Enteritidis , 2016 .
[25] Gaddi Blumrosen,et al. Eradication of multidrug‐resistant pseudomonas biofilm with pulsed electric fields , 2016, Biotechnology and bioengineering.
[26] Xinglian Xu,et al. Insights into the transcriptome profile of mature biofilm of Salmonella Typhimurium on stainless steels surface , 2015 .
[27] Rebeca Zamora-Sanabria,et al. Salmonella contamination risk points in broiler carcasses during slaughter line processing. , 2014, Journal of food protection.
[28] M. Wiedmann,et al. Salmonella phages isolated from dairy farms in Thailand show wider host range than a comparable set of phages isolated from U.S. dairy farms. , 2014, Veterinary microbiology.
[29] S. Sillankorva,et al. Bacteriophage attack as an anti-biofilm strategy. , 2014, Methods in molecular biology.
[30] Guang-hong Zhou,et al. In situ characterization and analysis of Salmonella biofilm formation under meat processing environments using a combined microscopic and spectroscopic approach. , 2013, International journal of food microbiology.
[31] M. Xian,et al. Inducible cell lysis systems in microbial production of bio-based chemicals , 2013, Applied Microbiology and Biotechnology.
[32] M. Wiedmann,et al. Genomic characterization provides new insight into Salmonella phage diversity , 2013, BMC Genomics.
[33] J. Moniz-Pereira,et al. Diversity in bacterial lysis systems: bacteriophages show the way. , 2013, FEMS microbiology reviews.
[34] F. Fang,et al. Functional groups characteristics of EPS in biofilm growing on different carriers. , 2013, Chemosphere.
[35] Sang-Do Ha,et al. Biofilm formation in food industries: A food safety concern , 2013 .
[36] H. Ackermann,et al. Isolation and characterization of a rare waterborne lytic phage of Salmonella enterica serovar Paratyphi B. , 2013, Canadian journal of microbiology.
[37] G. Woo,et al. wksl3, a New Biocontrol Agent for Salmonella enterica Serovars Enteritidis and Typhimurium in Foods: Characterization, Application, Sequence Analysis, and Oral Acute Toxicity Study , 2013, Applied and Environmental Microbiology.
[38] D. Reynolds,et al. Characterization of the Salmonella bacteriophage vB_SenS-Ent1. , 2012, The Journal of general virology.
[39] S. Sillankorva,et al. Use of newly isolated phages for control of Pseudomonas aeruginosa PAO1 and ATCC 10145 biofilms. , 2011, Research in microbiology.
[40] V. Ricci,et al. Exploiting the Role of TolC in Pathogenicity: Identification of a Bacteriophage for Eradication of Salmonella Serovars from Poultry , 2010, Applied and Environmental Microbiology.
[41] Xianming Shi,et al. Biofilm formation and food safety in food industries , 2009 .
[42] R. Niessner,et al. Combined use of confocal laser scanning microscopy (CLSM) and Raman microscopy (RM): investigations on EPS-Matrix. , 2009, Water research.
[43] P. Knežević,et al. A colorimetric microtiter plate method for assessment of phage effect on Pseudomonas aeruginosa biofilm. , 2008, Journal of microbiological methods.
[44] A. Weintraub,et al. Interaction of a Salmonella enteritidis O-antigen octasaccharide with the phage P22 tailspike protein by NMR spectroscopy and docking studies , 2008, Glycoconjugate Journal.
[45] J. Heinemann,et al. Isolation and characterization of bacteriophages infecting Salmonella spp. , 2006, FEMS microbiology letters.
[46] Jon R. Saunders,et al. Phage‐mediated transfer of virulence genes , 2001 .