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Understanding resistance

François Barbier| Charles-Edouard Luyt
Understanding the Disease
Volume 42, Issue 12 / December , 2016

Pages 2080 - 2083

No abstract available.

References

  1. Bassetti M, De Waele JJ, Eggimann P, Garnacho-Montero J, Kahlmeter G, Menichetti F, Nicolau DP, Paiva JA, Tumbarello M, Welte T, Wilcox M, Zahar JR, Poulakou G (2015) Preventive and therapeutic strategies in critically ill patients with highly resistant bacteria. Intensive Care Med 41(5):776–795
  2. Ruppé E, Woerther PL, Barbier F (2015) Mechanisms of antimicrobial resistance in Gram-negative bacilli. Ann Intensive Care 5:21
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  3. Holmes AH, Moore LS, Sundsfjord A, Steinbakk M, Regmi S, Karkey A, Guerin PJ, Piddock LJ (2016) Understanding the mechanisms and drivers of antimicrobial resistance. Lancet 387(10014):176–187
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  4. Olaitan AO, Morand S, Rolain JM (2014) Mechanisms of polymyxin resistance: acquired and intrinsic resistance in bacteria. Front Microbiol 5:643
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  5. Armand-Lefevre L, Angebault C, Barbier F, Hamelet E, Defrance G, Ruppé E, Bronchard R, Lepeule R, Lucet JC, El Mniai A, Wolff M, Montravers P, Plesiat P, Andremont A (2013) Emergence of imipenem-resistant Gram-negative bacilli in intestinal flora of intensive care patients. Antimicrob Agents Chemother 57(3):1488–1495
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  6. Roux DO, Danilchanka T, Guillard V, Cattoir H, Aschard Y, Fu F, Angoulvant J, Messika JD, Ricard JJ, Mekalanos S, Lory GB, Pier, Skurnik D (2015) Fitness cost of antibiotic susceptibility during bacterial infection. Sci Transl Med 7(297):297ra114
  7. Scharn CR, Tenover FC, Goering RV (2013) Transduction of Staphylococcal Cassette Chromosome mec elements between strains of Staphylococcus aureus. Antimicrob Agents Chemother 57(11):5233–5238
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  8. Liu YY, Wang Y, Walsh TR, Yi LX, Zhang R, Spencer J, Doi Y, Tian G, Dong B, Huang X, Yu LF, Gu D, Ren H, Chen X, Lv L, He D, Zhou H, Liang Z, Liu JH, Shen J (2016) Emergence of plasmid-mediated colistin resistance mechanism MCR-1 in animals and human beings in China: a microbiological and molecular biological study. Lancet Infect Dis 16(2):161–168
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  9. Li A, Yang Y, Miao M, Chavda KD, Mediavilla JR, Xie X, Feng P, Tang YW, Kreiswirth BN, Chen L, Du H (2016) Complete sequences of mcr-1-harboring plasmids from extended-spectrum-beta-lactamase- and carbapenemase-producing Enterobacteriaceae. Antimicrob Agents Chemother 60(7):4351–4354
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  10. Ruppé E, Andremont A (2013) Causes, consequences, and perspectives in the variations of intestinal density of colonization of multidrug-resistant enterobacteria. Front Microbiol 4:129
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  11. Poignant S, Guinard J, Guiguon A, Bret L, Poisson D-M, Boulain T, Barbier F (2015) Risk factors and outcomes of intestinal carriage of AmpC-hyperproducing Enterobacteriaceae in ICU patients. Antimicrob Agents Chemother 60(3):1883–1887
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  12. Millan B, Park H, Hotte N, Mathieu O, Burquiere P, Tompkins TA, Kao D, Madsen KL (2016) Fecal microbiota transplants reduce antibotc-resistant genes in patients with recurrent Clostridium difficile infection. Clin Infect Dis 62(12):1479–1486
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  13. Carlet J (2015) Ten tips on how to win the war against resistance to antibiotics. Intensive Care Med 41:899–901
  14. Wang J, Stephan R, Zurfluh K, Hächler H, Fanning S (2015) Characterization of the genetic environment of blaESBL genes, integrons and toxin-antitoxin systems identified on large transferrable plasmids in multidrug-resistant Escherichia coli. Front Microbiol 5:716
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  15. Diep BA, Stone GG, Basuino L, Graber CJ, Miller A, des Etages SA, Jones A, Palazzolo-Ballance AM, Perdreau-Remington F, Sensabaugh GF, DeLeo FR, Chambers HF (2008) The arginine catabolic mobile element and staphylococcal chromosomal cassette mec linkage: convergence of virulence and resistance in the USA300 clone of methicillin-resistant Staphylococcus aureus. J Infect Dis 197(11):1523–1530
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