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Jarlier V., Nicolas M.H., Fournier G. and Philippon A., 1988. Extented broad-spectrum Béta-lactamases
confiring transferable resistance to newer beta-lactam agents enterobacteriaceae : hopital prevalence and
susceptiblity patterns. Revue of infection decreases. 10 ; 867-878.
Jerboui Z., Boudabouz A., Zouhdi M. and BenRejeb S., 1998. Sensibilité aux antibiotiques des souches de
Pseudomonas aeruginosa isolées en milieu hospitalier à Tunis. Biologie infectiologie. 1998-tome IV-N°1
Jouini A., Vinue L., Ben Slama K., Saenz Y., Klibi1 N., Hammami S, Boudabous1 A and Torres K. 2007.
Characterization of CTX-M and SHV extended-spectrum b-lactamases and associated resistance genes in
Escherichia coli strains of food samples in Tunisia . Journal of Antimicrobial Chemotherapy (2007) 60, 1137–
1141.
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Karray H., Hammami A., Mahjoubi F., Bouaziz M., Damak J. and Jeddi H.M., 1993, In vitro study of the
sensitivity to antibiotics of 213 Pseudomonas aeruginosa strains isolated in an intensive car unit of the Sfax
Hospital (Tunisia). Pathol.Biol,(Paris). 41 :307-12.
Kim J., Park Y.J, Kim S.I, Kang M.W, Lee S.O. et Lee K.Y, 2004. Nosocomial outbreak by Proteus mirabilis
produicing extented-spectrum b-lactamases VEB-1 in Korean university hospital, Journal of antimicrobial
Chemotherapy. 54(6) : 1144-1147.
Kim S.H. et Wei C., 2006. Antibiotic resistance and Caco-2 cell invasion of Pseudomonas aeruginosa isolates
from farm environments and retail products. International Journal of Food Microbiology 115 (2007) 356–363.
Kim J., Kang H.Y. and Lee Y., 2008. The identification of CTX-M-14, and CMY-1 enzymes in Escherichia
coli isolated from the Han River in Korea. The Journal of Microbiology, October 2008, p. 478-481
Krueger T.S., Clark E.A., Nix D.E., 2001, In vitro susceptibility of Stenotrophomonas maltophilia to various
antimicrobial combinations, Diagnostic Microbiology and Infectious Disease 41 (2001) 71–78.
Kümmerer K., 2003. The significance of antibiotics in the environment. Journal of Antimicrobial
Chemotherapy 52: 5-7.
Kümmerer K., 2004. Resitance in the environment. Journal of Antimicrobial Chemotherapy 54: 311- 320.
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Lateef A., Oloke J.F., Gueguin kana e B. 2005. The prevalence of bacterial resistance in clinical food,
water and some environmental samples in southwest Nigeria. Environmental Monitoring and assessment
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Lavigne J.-P., Gaillard J.-B., Bourg G., Tichit C., Lecaillon E., Sotto A., (2008). Étude de souches
de Stenotrophomonas maltophilia sécrétrices de BLSE : détection de CTX-M et étude de la virulence§
Extended-spectrum b-lactamases-producing Stenotrophomonas maltophilia strains: CTX-M enzymes
detection and virulence study. Pathologie Biologie 56 447–453
Ledent P., Raquet X., Joris B., Vanbeeumen J., et Frere J. M., 1993. A comparative study of classD b-lactamases. Biochem. J. 292: 555-562
Le Minor R. et Veron M, .1989. Bactériologie médicale 2
ieme édition. Médecine-science, Flamarion,
Paris.
Livermore D.M., 1995. B-lactamses in laboratory and clinical resitance. In : Heritage J., 1999.
56
Jarlier V., Nicolas M.H., Fournier G. and Philippon A., 1988. Extented broad-spectrum Béta-lactamases
confiring transferable resistance to newer beta-lactam agents enterobacteriaceae : hopital prevalence and
susceptiblity patterns. Revue of infection decreases. 10 ; 867-878.
Jerboui Z., Boudabouz A., Zouhdi M. and BenRejeb S., 1998. Sensibilité aux antibiotiques des souches de
Pseudomonas aeruginosa isolées en milieu hospitalier à Tunis. Biologie infectiologie. 1998-tome IV-N°1
Jouini A., Vinue L., Ben Slama K., Saenz Y., Klibi1 N., Hammami S, Boudabous1 A and Torres K. 2007.
Characterization of CTX-M and SHV extended-spectrum b-lactamases and associated resistance genes in
Escherichia coli strains of food samples in Tunisia . Journal of Antimicrobial Chemotherapy (2007) 60, 1137–
1141.
K
K K
K
Karray H., Hammami A., Mahjoubi F., Bouaziz M., Damak J. and Jeddi H.M., 1993, In vitro study of the
sensitivity to antibiotics of 213 Pseudomonas aeruginosa strains isolated in an intensive car unit of the Sfax
Hospital (Tunisia). Pathol.Biol,(Paris). 41 :307-12.
Kim J., Park Y.J, Kim S.I, Kang M.W, Lee S.O. et Lee K.Y, 2004. Nosocomial outbreak by Proteus mirabilis
produicing extented-spectrum b-lactamases VEB-1 in Korean university hospital, Journal of antimicrobial
Chemotherapy. 54(6) : 1144-1147.
Kim S.H. et Wei C., 2006. Antibiotic resistance and Caco-2 cell invasion of Pseudomonas aeruginosa isolates
from farm environments and retail products. International Journal of Food Microbiology 115 (2007) 356–363.
Kim J., Kang H.Y. and Lee Y., 2008. The identification of CTX-M-14, and CMY-1 enzymes in Escherichia
coli isolated from the Han River in Korea. The Journal of Microbiology, October 2008, p. 478-481
Krueger T.S., Clark E.A., Nix D.E., 2001, In vitro susceptibility of Stenotrophomonas maltophilia to various
antimicrobial combinations, Diagnostic Microbiology and Infectious Disease 41 (2001) 71–78.
Kümmerer K., 2003. The significance of antibiotics in the environment. Journal of Antimicrobial
Chemotherapy 52: 5-7.
Kümmerer K., 2004. Resitance in the environment. Journal of Antimicrobial Chemotherapy 54: 311- 320.
L
L L
L
Lateef A., Oloke J.F., Gueguin kana e B. 2005. The prevalence of bacterial resistance in clinical food,
water and some environmental samples in southwest Nigeria. Environmental Monitoring and assessment
100. p. 59-69.
Lavigne J.-P., Gaillard J.-B., Bourg G., Tichit C., Lecaillon E., Sotto A., (2008). Étude de souches
de Stenotrophomonas maltophilia sécrétrices de BLSE : détection de CTX-M et étude de la virulence§
Extended-spectrum b-lactamases-producing Stenotrophomonas maltophilia strains: CTX-M enzymes
detection and virulence study. Pathologie Biologie 56 447–453
Ledent P., Raquet X., Joris B., Vanbeeumen J., et Frere J. M., 1993. A comparative study of classD b-lactamases. Biochem. J. 292: 555-562
Le Minor R. et Veron M, .1989. Bactériologie médicale 2
ieme édition. Médecine-science, Flamarion,
Paris.
Livermore D.M., 1995. B-lactamses in laboratory and clinical resitance. In : Heritage J., 1999.
