Low minimum inhibitory concentrations associated with the tetracycline-resistance gene tet(C) in Escherichia coli.
Gabhan Chalmers, Gosia K. Kozak, Elizabeth V. Hillyer, Richard J. Reid‐Smith, Patrick Boerlin
Abstract
Gabhan Chalmers, Gosia K. Kozak, Elizabeth V. Hillyer, Richard J. Reid‐Smith, Patrick Boerlin
Abstract
Twenty-eight Escherichia coli isolates from various animal and environmental sources with defined tetracycline-resistance genotypes for tet(A), tet(B), and tet(C) were tested for their susceptibility to tetracycline by means of both broth microdilution and Etest. All tet(C)-positive isolates had tetracycline minimum inhibitory concentrations clustering around an intermediate susceptibility range of 2 to 16 microg/mL. Detecting tet(C)-positive isolates by means of susceptibility testing may therefore be difficult with use of the current breakpoint for tetracycline of the Clinical and Laboratory Standards Institute guidelines.
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Twenty-eight Escherichia coli isolates from various animal and environmental sources with defined tetracycline-resistance genotypes for tet(A), tet(B), and tet(C) were tested for their susceptibility to tetracycline by means of both broth microdilution and Etest. All tet(C)-positive isolates had tetracycline minimum inhibitory concentrations clustering around an intermediate susceptibility range of 2 to 16 microg/mL. Detecting tet(C)-positive isolates by means of susceptibility testing may therefore be difficult with use of the current breakpoint for tetracycline of the Clinical and Laboratory Standards Institute guidelines.
Key concepts: Tetracycline, Etest, Broth microdilution, Minimum inhibitory concentration, Escherichia coli, Microbiology, Biology, Tetracycline Hydrochloride