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Lia M. Junie, Mihaela L. Vică, Mirel Glevitzky and Horea V. Matei

References Alvarez-Suarez, J. M. , Tulipani, S., Daimy Díaz, D., Estevez, Y., Romandini, S., Giampieri, F., Damiani, E. , Astolfi, P., Bompadre, S., Battino, M. (2010). Antioxidant and antimicrobial capacity of several monofloral Cuban honeys and their correlation with color, polyphenol content and other chemical compounds. Food and Chemical Toxicology, 48, 2490-2499. Anthimidou, E., & Mossialos, D. (2013). Antibacterial activity of Greek and Cypriot honeys against Staphylococcus aureus and Pseudomonas aeruginosa in comparison

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Faith I. Akinnibosun and Odaro S. Imade

burning question, Frontiers in Microbiology 5 (2014) 334 – 337. [10]. R. Boss, G. Overesch, A. Baumgartner, Antimicrobial resistance of Escherichia coli , Enterococci , P seudomonas aeruginosa , and Staphylococcus aureus from raw fish and seafood imported into Switzerland, Journal of Food Protection 79 (2016) 1240 – 1246. [11]. M.O. Efuntoye, K.B. Olurin, G.C. Jegede, Bacterial flora from healthy Clarias gariepinus and their antimicrobial resistance pattern, Advanced Journal of Food Science and Technology 4 (2012) 121 – 125. [12]. F.O. Ekundayo

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Warisa Amornrit, Veerachat Muangsombut, Tanapol Wangteeraprasert and Sunee Korbsrisate

expression in Caco-2 human intestinal cells. J Nutr. 2001; 131:1452-8. 8. Bullen JJ, Ward CG, Wallis SN. Virulence and the role of iron in Pseudomonas aeruginosa infection. Infect Immun. 1974; 10:443-50. 9. Wuthiekanun V, Smith MD, Dance DA, White NJ. Isolation of Pseudomonas pseudomallei from soil in north-eastern Thailand. Trans R Soc Trop Med Hyg. 1995; 89:41-3. 10. Schaible UE, Kaufmann SH. Iron and microbial infection. Nat Rev Microbiol. 2004; 2:946-53. 11. Loprasert S, Sallabhan R, Whangsuk W, Mongkolsuk

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Martin Pivokonský, Lenka Pivokonská, Jitka Bäumeltová and Petra Bubáková

matter. Z. Wasser-Abwasser-Forsch. , 19, 219-228. CHIN Y. P., AIKEN G., O'LONGHLIN E., 1994: Molecular weight, polydispersity and spectroscopic properties of aquatic humic substances. Environ. Sci. Tech. , 28, 1853-1858. CHOW C. W. K., van LEEUWEN J. A., DRIKAS M., FABRIS R., SPARK K.M., PAGE D.W., 1999: The impact of the character of natural organic matter in conventional treatment with alum. Wat. Sci. Technol. , 40, 97-104. CROUE J. P., LEFEBVRE E., MARTIN B., LEGUBE B., 1993: Removal of

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Valentina Josan, Inna Rastimesina, Olga Postolachi and Tatiana Gutul

Angazi M., Alizadeh S., Bardania H., 2013. The effect of magnetic Fe3O4 nanoparticles on the growth of genetically manipulated bacterium, Pseudomonas aeruginosa (PTSOX4). Iranian Journal of Biotechnology, 11(1): 41-46. Kiran G.S., Nishanth L.A., Priyadharshini S., Anitha R., Selvin J., 2014. Effect of Fe nanoparticle on growth and glycolipid biosurfactant production under solid state culture by marine Nocardiopsis sp. MSA13A. BMC Biotechnology, 2014, 14: 48. McKee M.S., Filser J., 2016. Impacts of metal-based engineered nanomaterials on

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Yuchi Jia

-N-acetylglucosamine transferase (MurA) and inhibit MurA activity irreversibly, thus blocking the first step of bacterial cytoderm synthesis effectively and then destroying the bacteria [ 2 ]. Fosfomycin is a rapid bactericide for the bacterial breeding season; it has excellent antibacterial activity against Gram-positive bacteria (such as Staphylococcus aureus and Enterococcus ) and Gram-negative bacteria (such as Enterobacteriaceae , Haemophilus , Pseudomonas aeruginosa , and so on). In addition, fosfomycin also has good antibacterial effects on methicillin-resistant Staphylococcus

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Michał Blatkiewicz, Bolesław Tabiś and Stanisław Ledakowicz

biofilm formation by Salmonella enterica serovar typhimurium, App. Environ. Microbiol., 74, 6639-6648. DOI: 10.1128/AEM.01262-08. Kommedal R., Bakke R., 2003. Modeling Pseudomonas Aeruginosa Biofilm Detachment. HiT Working Paper, Telemark University College, 3/2003, 1-29. Laspidou C.S., Aravas N., 2007. Variation in the mechanical properties of a porous multi-phase biofilm under compression due to void closure. Water Sci. Technol., 55, 447-453. DOI: 10.2166/wst.2007.289. Liao Q., Wang Y., Wang Y., Chen R., Zhu X., Pu Y

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Kome Otokunefor, Victor Ogechi Osogho and Chijindu Precious Nwankwo

Bacteria. Fourth edition (1985). Cambridge University Press, London. Davis, R., and Brown, P.D., 2016. Multiple antibiotic resistance index, fitness and virulence potential in respiratory Pseudomonas aeruginosa from Jamaica. J Med Microb., 65(4), 261-271. de Been, M., Lanza, V.F., de Toro, M., Scharringa, J., Dohmen, W., Du, Y., Hu, J., Lei, Y., Li, N., Tooming-Klunderud, A., and Heederik, D.J., 2014. Dissemination of cephalosporin resistance genes between Escherichia coli strains from farm animals and humans by specific plasmid lineages. PLoS Genetics. 10

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Pawana Panomket

.1097/00002480-199207000-00013 Khoury A Lam K Ellis B Costerton JW. Prevention and control of bacterial infections associated with medical devices ASAIO J 1992 38 174 8 20 Gillbert P, Das J, Foley I. Biofilm susceptibility to antimicrobials. Adv Dent Res. 1997; 11:160-7. 10.1177/08959374970110010701 Gillbert P Das J Foley I. Biofilm susceptibility to antimicrobials Adv Dent Res 1997 11 160 7 21 Ishida H, Ishida Y, Kurosaka Y, Otani T, Sato K, Kobayashi H. In vitro and in vivo activities of levofloxacin against biofilm-producing Pseudomonas aeruginosa . Antimicrob Agents Chemother.1998; 42

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Zefiryn Cybulski, Katarzyna Schmidt, Alicja Grabiec, Zofia Talaga, Piotr Bociąg, Jacek Wojciechowicz, Andrzej Roszak and Witold Kycler

References 1. Cybulski Z, Kjaeldgaard P. Resistance to oral antibiotics in urinary coliform strains isolated between 2000 and 2008 in Sønderborg area, Denmark. Int J Antimicrob Agents 2010; 35: 516-7. 2. Bouza E, San Juan R, Muñoz P, Voss A, Kluytmans J. Co-operative Group of the European Study Group on Nosocomial Infections: A European perspective on nosocomial urinary tract infections I. Report on the microbiology workload, etiology and antimicrobial susceptibility (ESGNI-003 study). European Study Group on