Literature DB >> 31269400

Adaptive Evolution of Escherichia coli to Ciprofloxacin in Controlled Stress Environments: Contrasting Patterns of Resistance in Spatially Varying versus Uniformly Mixed Concentration Conditions.

Jinzi Deng1, Lang Zhou2, Robert A Sanford3, Lauren A Shechtman4,5, Yiran Dong1,6, Reinaldo E Alcalde2, Mayandi Sivaguru1, Glenn A Fried1, Charles J Werth2, Bruce W Fouke1,3,7.   

Abstract

A microfluidic gradient chamber (MGC) and a homogeneous batch culturing system were used to evaluate whether spatial concentration gradients of the antibiotic ciprofloxacin allow development of greater antibiotic resistance in Escherichia coli strain 307 (E. coli 307) compared to exclusively temporal concentration gradients, as indicated in an earlier study. A linear spatial gradient of ciprofloxacin and Luria-Bertani broth (LB) medium was established and maintained by diffusion over 5 days across a well array in the MGC, with relative concentrations along the gradient of 1.7-7.7× the original minimum inhibitory concentration (MICoriginal). The E. coli biomass increased in wells with lower ciprofloxacin concentrations, and only a low level of resistance to ciprofloxacin was detected in the recovered cells (∼2× MICoriginal). Homogeneous batch culture experiments were performed with the same temporal exposure history to ciprofloxacin concentration, the same and higher initial cell densities, and the same and higher nutrient (i.e., LB) concentrations as in the MGC. In all batch experiments, E. coli 307 developed higher ciprofloxacin resistance after exposure, ranging from 4 to 24× MICoriginal in all replicates. Hence, these results suggest that the presence of spatial gradients appears to reduce the driving force for E. coli 307 adaptation to ciprofloxacin, which suggests that results from batch experiments may over predict the development of antibiotic resistance in natural environments.

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Year:  2019        PMID: 31269400     DOI: 10.1021/acs.est.9b00881

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  The role of chemotaxis and efflux pumps on nitrate reduction in the toxic regions of a ciprofloxacin concentration gradient.

Authors:  Reinaldo E Alcalde; Christopher M Dundas; Yiran Dong; Robert A Sanford; Benjamin Keith Keitz; Bruce W Fouke; Charles J Werth
Journal:  ISME J       Date:  2021-04-29       Impact factor: 11.217

2.  Emergence of Resistant Escherichia coli Mutants in Microfluidic On-Chip Antibiotic Gradients.

Authors:  Krisztina Nagy; Barbara Dukic; Orsolya Hodula; Ágnes Ábrahám; Eszter Csákvári; László Dér; Miles T Wetherington; Janneke Noorlag; Juan E Keymer; Péter Galajda
Journal:  Front Microbiol       Date:  2022-03-22       Impact factor: 5.640

  2 in total

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