Carbon–carbon-linked (pyrazolylphenyl)oxazolidinones with antibacterial activity against multiple drug resistant gram-positive and fastidious gram-negative bacteria

  • Chi Sing Lee
  • , Debra A. Allwine
  • , Michael R. Barbachyn
  • , Kevin C. Grega
  • , Lester A. Dolak
  • , Charles W. Ford
  • , Randy M. Jensen
  • , Eric P. Seest
  • , Judith C. Hamel
  • , Ronda D. Schaadt
  • , Douglas Stapert
  • , Betty H. Yagi
  • , Gary E. Zurenko
  • , Michael J. Genin*
  • *Corresponding author for this work

Research output: Contribution to journalJournal articlepeer-review

35 Citations (Scopus)

Abstract

In an effort to expand the spectrum of activity of the oxazolidinone class of antibacterial agents to include Gram-negative bacteria, a series of new carbon-carbon linked pyrazolylphenyl analogues has been prepared. The α-N-substituted methyl pyrazole (10α) in the C3-linked series exhibited very good Gram-positive activity with MICs <or=0.5-1 μg/mL and moderate Gram-negative activity with MICs=2-8 μg/mL against Haemophilus influenzae and Moraxella catarrhalis. This analogue was also found to have potent in vivo activity with an ED50=1.9 mg/kg. β-substitution at the C3-linked pyrazole generally results in a loss of activity. The C4-linked pyrazoles are slightly more potent than their counterparts in the C3-linked series. Most of the analogues in the C4-linked series exhibited similar levels of activity in vitro, but lower levels of activity in vivo than 10α. In addition, incorporation of a thioamide moiety in selected C4-linked pyrazole analogues results in an enhancement of in vitro activity leading to compounds several times more potent than eperezolid, linezolid and vancomycin. The thioamide of the N-cyanomethyl pyrazole analogue (34) exhibited an exceptional in vitro activity with MICs of <or= 0.06-0.25 μg/mL against Gram-positive pathogens and with MICs of 1 μg/mL against fastidious Gram-negative pathogens.

Original languageEnglish
Pages (from-to)3243-3253
Number of pages11
JournalBioorganic and Medicinal Chemistry
Volume9
Issue number12
DOIs
Publication statusPublished - Dec 2001

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