In Vitro Pharmacodynamic Models to Evaluate Anti-infective Pharmacodynamics

Author:

Rose Warren

Publisher

Springer New York

Reference54 articles.

1. LaPlante KL, Leonard SN, Andes DR, Craig WA, Rybak MJ (2008) Activities of clindamycin, daptomycin, doxycycline, linezolid, trimethoprim-sulfamethoxazole, and vancomycin against community-associated methicillin-resistant Staphylococcus aureus with inducible clindamycin resistance in murine thigh infection and in vitro pharmacodynamic models. Antimicrob Agents Chemother 52(6):2156–2162. doi: 10.1128/AAC.01046-07 , AAC.01046-07 [pii]

2. Rose WE, Schulz LT, Andes D, Striker R, Berti AD, Hutson PR, Shukla SK (2012) Addition of ceftaroline to daptomycin after emergence of daptomycin-nonsusceptible Staphylococcus aureus during therapy improves antibacterial activity. Antimicrob Agents Chemother 56(10):5296–5302. doi: 10.1128/AAC.00797-12 , AAC.00797-12 [pii]

3. Vidaillac C, Gardete S, Tewhey R, Sakoulas G, Kaatz GW, Rose WE, Tomasz A, Rybak MJ (2013) Alternative mutational pathways to intermediate resistance to vancomycin in methicillin-resistant Staphylococcus aureus. J Infect Dis 208(1):67–74. doi: 10.1093/infdis/jit127

4. Rybak MJ, Allen GP, Hershberger E (2001) In vitro antibiotic pharmacodynamic models. In: Nightingale CH, Murakawa T, Ambrose PG (eds) Antimicrobial pharmacodynamics in theory and clinical practice. Marcell Dekker, New York, pp 41–65

5. Firsov AA, Zinner SH, Lubenko IY (2007) In vitro dynamic models as tools to predict antibiotic pharmacodynamics. In: Nightingale CH, Ambrose PG, Drusano GL, Murakawa T (eds) Antimicrobial pharmacodynamics in theory and clinical practice, 2nd edn. CRC Press, New York, pp 45–78

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