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Open AccessJournal ArticleDOI

Selection of resistant bacteria at very low antibiotic concentrations.

TLDR
It is suggested that the low antibiotic concentrations found in many natural environments are important for enrichment and maintenance of resistance in bacterial populations.
Abstract
The widespread use of antibiotics is selecting for a variety of resistance mechanisms that seriously challenge our ability to treat bacterial infections. Resistant bacteria can be selected at the high concentrations of antibiotics used therapeutically, but what role the much lower antibiotic concentrations present in many environments plays in selection remains largely unclear. Here we show using highly sensitive competition experiments that selection of resistant bacteria occurs at extremely low antibiotic concentrations. Thus, for three clinically important antibiotics, drug concentrations up to several hundred-fold below the minimal inhibitory concentration of susceptible bacteria could enrich for resistant bacteria, even when present at a very low initial fraction. We also show that de novo mutants can be selected at sub-MIC concentrations of antibiotics, and we provide a mathematical model predicting how rapidly such mutants would take over in a susceptible population. These results add another dimension to the evolution of resistance and suggest that the low antibiotic concentrations found in many natural environments are important for enrichment and maintenance of resistance in bacterial populations.

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Citations
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Journal ArticleDOI

Antibiotic concentrations in raw hospital wastewater surpass minimal selective and minimal inhibitory concentrations of resistant Acinetobacter baylyi strains.

TL;DR: The abundance of strains with meropenem and ciprofloxacin resistance in hospital wastewater and drains is explained by the fact that these antibiotics exert an influence and select resistant bacteria, if they exceed the MSCs (minimal selective concentrations) of resistant strains.
Journal ArticleDOI

High prevalence of unstable antibiotic heteroresistance in cyanobacteria causes resistance underestimation.

TL;DR: In this article, the prevalence and mechanisms of antibiotic heteroresistance in cyanobacterial strains isolated from 50 sites across four eutrophicated lakes in China were profiled and the authors highlighted the potential for susceptibility misclassification highlighted underestimation of cyanobacteria-derived antibiotic resistance.
Posted ContentDOI

Towards a general model for predicting minimal metal concentrations co-selecting for antibiotic resistance plasmids

TL;DR: Using mathematical modelling to provide a general mechanistic framework to predict minimal co-selective concentrations for metals, given knowledge of their toxicity at different concentrations could be used as the basis for defining standards to mitigate risks of antimicrobial resistance applicable to a wide range of environments, including manure, slurry and other waste streams.
Dissertation

Antibiotic resistance and environmental factors : focusing on the situation in Odisha, India

TL;DR: This Thesis presents a meta-analysis of community Perception of relation of Behavioural and Social Environment with Antibiotic Resistance and Observations on Quantitative Association between Natural Environment and Antibiotics Resistance in India.
Journal ArticleDOI

In vitro investigations of Staphylococcus aureus biofilms in physiological fluids suggest that current antibiotic delivery systems may be limited

TL;DR: In this article , the authors used a novel animal model of long-bone fixation with vancomycin- or gentamicin-controlled release and measured the levels of antibiotic achieved at the site of release and in the surrounding tissue.
References
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Journal ArticleDOI

Stochastic Gene Expression in a Single Cell

TL;DR: This work constructed strains of Escherichia coli that enable detection of noise and discrimination between the two mechanisms by which it is generated and reveals how low intracellular copy numbers of molecules can fundamentally limit the precision of gene regulation.
Journal ArticleDOI

Antibiotics in the aquatic environment - A review - Part II

TL;DR: This review brings up important questions that are still open, and addresses some significant issues which must be tackled in the future for a better understanding of the behavior of antibiotics in the environment, as well as the risks associated with their occurrence.
Journal ArticleDOI

Heavy use of prophylactic antibiotics in aquaculture: a growing problem for human and animal health and for the environment

TL;DR: Global efforts are needed to promote more judicious use of prophylactic antibiotics in aquaculture as accumulating evidence indicates that unrestricted use is detrimental to fish, terrestrial animals, and human health and the environment.
Journal ArticleDOI

Antibiotic resistance and its cost: is it possible to reverse resistance?

TL;DR: The findings suggest that the fitness costs of resistance will allow susceptible bacteria to outcompete resistant bacteria if the selective pressure from antibiotics is reduced, and that the rate of reversibility will be slow at the community level.
Journal ArticleDOI

Antibiotics and antibiotic resistance genes in natural environments.

TL;DR: The large majority of antibiotics currently used for treating infections and the antibiotic resistance genes acquired by human pathogens each have an environmental origin and the function of these elements in their environmental reservoirs may be very distinct from the “weapon-shield” role they play in clinical settings.
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