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Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection

Development of synthetic strategies to combat Staphylococcal infections, especially those caused by methicillin resistant Staphyloccus aureus (MRSA), needs immediate attention. In this manuscript we report the ability of aryl-alkyl-lysines, simple membrane active small molecules, to treat infections...

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Autores principales: Ghosh, Chandradhish, Manjunath, Goutham B., Konai, Mohini M., Uppu, Divakara S. S. M., Hoque, Jiaul, Paramanandham, Krishnamoorthy, Shome, Bibek R., Haldar, Jayanta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684391/
https://www.ncbi.nlm.nih.gov/pubmed/26669634
http://dx.doi.org/10.1371/journal.pone.0144094
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author Ghosh, Chandradhish
Manjunath, Goutham B.
Konai, Mohini M.
Uppu, Divakara S. S. M.
Hoque, Jiaul
Paramanandham, Krishnamoorthy
Shome, Bibek R.
Haldar, Jayanta
author_facet Ghosh, Chandradhish
Manjunath, Goutham B.
Konai, Mohini M.
Uppu, Divakara S. S. M.
Hoque, Jiaul
Paramanandham, Krishnamoorthy
Shome, Bibek R.
Haldar, Jayanta
author_sort Ghosh, Chandradhish
collection PubMed
description Development of synthetic strategies to combat Staphylococcal infections, especially those caused by methicillin resistant Staphyloccus aureus (MRSA), needs immediate attention. In this manuscript we report the ability of aryl-alkyl-lysines, simple membrane active small molecules, to treat infections caused by planktonic cells, persister cells and biofilms of MRSA. A representative compound, NCK-10, did not induce development of resistance in planktonic cells in multiple passages and retained activity in varying environments of pH and salinity. At low concentrations the compound was able to depolarize and permeabilize the membranes of S. aureus persister cells rapidly. Treatment with the compound not only eradicated pre-formed MRSA biofilms, but also brought down viable counts in bacterial biofilms. In a murine model of MRSA skin infection, the compound was more effective than fusidic acid in bringing down the bacterial burden. Overall, this class of molecules bears potential as antibacterial agents against skin-infections.
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spelling pubmed-46843912015-12-31 Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection Ghosh, Chandradhish Manjunath, Goutham B. Konai, Mohini M. Uppu, Divakara S. S. M. Hoque, Jiaul Paramanandham, Krishnamoorthy Shome, Bibek R. Haldar, Jayanta PLoS One Research Article Development of synthetic strategies to combat Staphylococcal infections, especially those caused by methicillin resistant Staphyloccus aureus (MRSA), needs immediate attention. In this manuscript we report the ability of aryl-alkyl-lysines, simple membrane active small molecules, to treat infections caused by planktonic cells, persister cells and biofilms of MRSA. A representative compound, NCK-10, did not induce development of resistance in planktonic cells in multiple passages and retained activity in varying environments of pH and salinity. At low concentrations the compound was able to depolarize and permeabilize the membranes of S. aureus persister cells rapidly. Treatment with the compound not only eradicated pre-formed MRSA biofilms, but also brought down viable counts in bacterial biofilms. In a murine model of MRSA skin infection, the compound was more effective than fusidic acid in bringing down the bacterial burden. Overall, this class of molecules bears potential as antibacterial agents against skin-infections. Public Library of Science 2015-12-15 /pmc/articles/PMC4684391/ /pubmed/26669634 http://dx.doi.org/10.1371/journal.pone.0144094 Text en © 2015 Ghosh et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ghosh, Chandradhish
Manjunath, Goutham B.
Konai, Mohini M.
Uppu, Divakara S. S. M.
Hoque, Jiaul
Paramanandham, Krishnamoorthy
Shome, Bibek R.
Haldar, Jayanta
Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title_full Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title_fullStr Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title_full_unstemmed Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title_short Aryl-Alkyl-Lysines: Agents That Kill Planktonic Cells, Persister Cells, Biofilms of MRSA and Protect Mice from Skin-Infection
title_sort aryl-alkyl-lysines: agents that kill planktonic cells, persister cells, biofilms of mrsa and protect mice from skin-infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684391/
https://www.ncbi.nlm.nih.gov/pubmed/26669634
http://dx.doi.org/10.1371/journal.pone.0144094
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