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In Vivo Collection and SEM Identification of Oral Biofilm Using Indirect Composite Prototype Restorations. Clinical and Laboratory Study

;20(1):37-50. 5. Guggenheim B, Giertsen E, Schüpbach P, et al. Validation of an in vitro biofilm model of supragingival plaque. J Dent Res 2001;80(1):363-70. 6. Shapiro S, Giertsen E, Guggenheim B. An in vitro oral biofilm model for comparing the efficacy of antimicrobial mouthrinses. Caries Res 2002; 36(2):93-100. 7. Ready D, Roberts AP, Pratten J, et al. Composition and antibiotic resistance profile of microcosm dental plaques before and after exposure to tetracycline. J Antimicrob Chemother 2002;49(5):769-75. 8. Zou Y, Lee Y, Huh J, et al. Synergistic

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Multidrug Resistance Among Enterococci at a Tertiary Care Hospital in Northern Bulgaria

other antibiotics. J Infect Chcmothcr. 2011; 17(4):575-8. 28. Salem-Bekhit MM, Moussa L Muharram MM, Alanazy FK, Hefiti HM. Prevalence and antimiaobial resistance pattern of multidrug-rcsistant cntrcrococci isolated from clinical specimens. Indian J Med Microbiol. 2012;30( I );44-51. 29. Frazzon A, Gama BA, Hames V, Bierhals CG, Pereira RL Gucdcs AG ct al. Prevalence of antimicrobial resistance and molecular characterization of tetracycline resistance mediated by ref (M) and let (L) genes in Enterococcus spp. isolated from food in

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Successful Continuation of Peritoneal Dialysis after "Sweet" Hydrothorax

: 1702. 23. Benz RL, Schleifer CR. Hydrothorax in continuous ambulatory peritoneal dialysis: successful treatment with intrapleural tetracycline and a review of the literature. Am J Kidney Dis 1985; 5: 13640. 24. Catizone L, Zuchelli A, Zucchelli P. Hydrothorax in a PD patient: successful treatment with intrapleural autologous blood instillation. Adv Perit Dial 1991; 7: 8690. 25. Chao SH, Tsai TJ. Recurrent hydrothorax following repeated pleurodesis using autologous blood. Perit Dial Int 1993; 13: 3212. 26

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Morphology and Elemental Composition of Product Obtained from Struvite Fluidized Bed Reactor

, Z. H., Chen, L. S., Chen, R. B., Zhang, F. Z., Jiang, H. X., Tang, N., & Smith, B. R. Root release and metabolism of organic acids in tea plants in response to phosphorus supply. Journal of plant physiology , (2011) 168 (7), 644-652. 15. Lou, Y., Ye, Z. L., Chen, S., Wei, Q., Zhang, J., & Ye, X. Influences of dissolved organic matters on tetracyclines transport in the process of struvite recovery from swine wastewater. Water research , (2018) 134 , 311-326. 16. Maaß, O., Grundmann P., von Bock und Polach C. Added-value from innovative value chains

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Antimicrobial susceptibility of Prototheca zopfii isolated from bovine mastitis

.: Protothecosis successfully treated with amikacin combined with tetracyclines. Mycoses 2004, 47, 156-158.

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Adjunctive Subantimicrobial Dose Doxycycline in the Treatment of Chronic Periodontitis in Type 2 Diabetic Patients: A Unique Combination Therapy

;291:223-234. 7. Ingman T, Tervahartiala T, Ding Y, Tschesche H, Haerian A, Kinane DF et al. Matrix metalloproteinases and their inhibitors in gingival crevicular fluid and saliva of periodontitis patients. J Clin Periodontol, 1996;23:1127-1132. 8. Sorsa T, Ingman T, Suomalainen K, Halinen S, Saari H, Konttinen YT et al. Cellular source and tetracycline inhibition of gingival crevicular fluid collagenase of patients with labile diabetes mellitus. J Clin Periodontol, 1992;19:146-149. 9. Correa FO, Gonçalves D, Figueredo CM, Gustafsson A, Orrico SR

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Bacterial flora associated with diseased freshwater ornamental fish

characterization of tetracycline-resistant Citrobacter spp. from catfish. Food Microbiol 2008, 25, 85–91. 20. Olivier K.: World trade in ornamental species. In: Marine Ornamental Species , edited by Cato J., Brown C., Blackwell Publishing, Ames Iowa, 2003, pp. 49–64. 21. Park S.B., Aoki T., Jung T.S.: Pathogenesis of and strategies for preventing Edwardsiella tarda infection in fish. Vet Res 2012, 43, 1–11. 22. Pękala A., Kozińska A., Paździor E., Głowacka H.: Phenotypical and genotypical characterization of Shewanella putrefaciens strains isolated from

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Detection of fluoroquinolone residues in milk using Yersinia spp. strains: towards better sensitivity for flumequine determination

., Vorlová L., Jeřábková J.: A plate diffusion method for detecting fluoroquinolone residues in raw cow’s milk. Czech J Food Sci 2014, 32, 260–264. 18. Nouws J.F.M., Van Egmond H., Smulders I., Loeffen G., Schouten J., Stegeman H.: A microbiological assay system for assessment of raw milk exceeding EU maximum residue levels. Int Dairy J 1999, doi: 10.1016/S0958-6946(99)00026-6. 19. Okerman L., Croubels S., De Baere S., Van Hoof J., De Backer P., De Brabander H.: Inhibition tests for detection and presumptive identification of tetracyclines, beta

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Sewage sludge as a source of triclosan-resistant bacteria

Abbreviations AMP — ampicillin ATB — antibiotics CFU — colony forming units CIP — ciprofloxacin CLSI — Clinical Laboratory Standards Institute CMP — chloramphenicol EQ — equivalent inhabitants EU — European Union EUCAST — European Committee on Antimicrobial Susceptibility Testing GEN — gentamicin MALDI-TOF — Matrix–Assisted Laser Desorption/Ionization–Time of Flight MDR — multidrug-resistance MIC — minimal inhibitory concentration QAC — quaternary ammonium compounds TET — tetracycline WWTP — wastewater treatment

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Concentration changeability of phosphorus, calcium and magnesium in selected partial drainage basins of the River Drwęca

, Effect of river straightening on the hydrochemical properties of floodplain lakes: Observations from the Łyna and Drwęca Rivers: N. Poland, Ecol. Eng. 37(5): 786-795. Grant R., Laubel B., Kronvang B., Andersen H.E., Svendsen L.M., Fuglsang A., 1996, Loss of dissolved and particulate phosphorus from arable catchments by subsurface drainage, Water Res. 30(11): 2633-2642. Harnisz M., Gołaś I., Pietruk M., 2011, Tetracycline-resistant bacteria as indicators of antimicrobial resistance in protected waters - The example of the Drwęca River

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