TY - JOUR
T1 - Can resistance against quorum-sensing interference be selected?
AU - Garcia-Contreras, Rodolfo
AU - Maeda, Toshinari
AU - Wood, Thomas K.
N1 - Funding Information:
This work was supported by grants from SEP/CONACyT-Mexico no.152794 to R-GC and by the Army Research Office (W911NF-14-1-0279) to TKW. TKW is the Biotechnology Endowed Chair at the Pennsylvania State University.
Publisher Copyright:
© 2016 International Society for Microbial Ecology.
PY - 2016/1/1
Y1 - 2016/1/1
N2 - Quorum-sensing (QS) interference is a novel therapy to fight bacterial infections that, unlike conventional antibiotic treatments, is focused on reducing the damage caused by pathogens (virulence) rather than focused on inhibiting their growth. Given this ideal, it was predicted that this approach will be impervious to or at least much less prone to resistance in bacterial populations. However, recently, resistance mechanisms against well-characterized quorum quenchers (QQs) have been found in the laboratory as well as in clinical strains, demonstrating that the rise of resistance against these kinds of compounds is possible. Nevertheless, it has been argued that even if resistance mechanisms against QS interference exist, this fact does not guarantee that resistance will spread. In the present work, we discuss recent insights derived from the latest experiments to address this question. In addition, we explain how environmental conditions like the stress produced by the host immune system may influence the selection of resistance and eventually lead to the selection of QS interference-resistant bacteria in a clinical setting.
AB - Quorum-sensing (QS) interference is a novel therapy to fight bacterial infections that, unlike conventional antibiotic treatments, is focused on reducing the damage caused by pathogens (virulence) rather than focused on inhibiting their growth. Given this ideal, it was predicted that this approach will be impervious to or at least much less prone to resistance in bacterial populations. However, recently, resistance mechanisms against well-characterized quorum quenchers (QQs) have been found in the laboratory as well as in clinical strains, demonstrating that the rise of resistance against these kinds of compounds is possible. Nevertheless, it has been argued that even if resistance mechanisms against QS interference exist, this fact does not guarantee that resistance will spread. In the present work, we discuss recent insights derived from the latest experiments to address this question. In addition, we explain how environmental conditions like the stress produced by the host immune system may influence the selection of resistance and eventually lead to the selection of QS interference-resistant bacteria in a clinical setting.
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U2 - 10.1038/ismej.2015.84
DO - 10.1038/ismej.2015.84
M3 - Review article
C2 - 26023871
AN - SCOPUS:84930260701
SN - 1751-7362
VL - 10
SP - 4
EP - 10
JO - ISME Journal
JF - ISME Journal
IS - 1
ER -