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Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins

Amphiphilic kanamycins derived from the classic antibiotic kanamycin have attracted interest due to their novel bioactivities beyond inhibition of bacteria. In this study, the recently described 4″,6″-diaryl amphiphilic kanamycins reported as inhibitors of connexin were examined for their antifungal...

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Autores principales: Alfindee, Madher N., Subedi, Yagya P., Grilley, Michelle M., Takemoto, Jon Y., Chang, Cheng-Wei T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571828/
https://www.ncbi.nlm.nih.gov/pubmed/31100822
http://dx.doi.org/10.3390/molecules24101882
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author Alfindee, Madher N.
Subedi, Yagya P.
Grilley, Michelle M.
Takemoto, Jon Y.
Chang, Cheng-Wei T.
author_facet Alfindee, Madher N.
Subedi, Yagya P.
Grilley, Michelle M.
Takemoto, Jon Y.
Chang, Cheng-Wei T.
author_sort Alfindee, Madher N.
collection PubMed
description Amphiphilic kanamycins derived from the classic antibiotic kanamycin have attracted interest due to their novel bioactivities beyond inhibition of bacteria. In this study, the recently described 4″,6″-diaryl amphiphilic kanamycins reported as inhibitors of connexin were examined for their antifungal activities. Nearly all 4″,6″-diaryl amphiphilic kanamycins tested had antifungal activities comparable to those of 4″,6″-dialkyl amphiphilic kanamycins, reported previously against several fungal strains. The minimal growth inhibitory concentrations (MICs) correlated with the degree of amphiphilicity (cLogD) of the di-substituted amphiphilic kanamycins. Using the fluorogenic dyes, SYTOX(TM) Green and propidium iodide, the most active compounds at the corresponding MICs or at 2×MICs caused biphasic dye fluorescence increases over time with intact cells. Further lowering the concentrations to half MICs caused first-order dye fluorescence increases. Interestingly, 4×MIC or 8×MIC levels resulted in fluorescence suppression that did not correlate with the MIC and plasma membrane permeabilization. The results show that 4″,6″-diaryl amphiphilic kanamycins are antifungal and that amphiphilicity parameter cLogD is useful for the design of the most membrane-active versions. A cautionary limitation of fluorescence suppression was revealed when using fluorogenic dyes to measure cell-permeation mechanisms with these antifungals at high concentrations. Finally, 4″,6″-diaryl amphiphilic kanamycins elevate the production of cellular reactive oxygen species as other reported amphiphilic kanamycins.
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spelling pubmed-65718282019-06-18 Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins Alfindee, Madher N. Subedi, Yagya P. Grilley, Michelle M. Takemoto, Jon Y. Chang, Cheng-Wei T. Molecules Article Amphiphilic kanamycins derived from the classic antibiotic kanamycin have attracted interest due to their novel bioactivities beyond inhibition of bacteria. In this study, the recently described 4″,6″-diaryl amphiphilic kanamycins reported as inhibitors of connexin were examined for their antifungal activities. Nearly all 4″,6″-diaryl amphiphilic kanamycins tested had antifungal activities comparable to those of 4″,6″-dialkyl amphiphilic kanamycins, reported previously against several fungal strains. The minimal growth inhibitory concentrations (MICs) correlated with the degree of amphiphilicity (cLogD) of the di-substituted amphiphilic kanamycins. Using the fluorogenic dyes, SYTOX(TM) Green and propidium iodide, the most active compounds at the corresponding MICs or at 2×MICs caused biphasic dye fluorescence increases over time with intact cells. Further lowering the concentrations to half MICs caused first-order dye fluorescence increases. Interestingly, 4×MIC or 8×MIC levels resulted in fluorescence suppression that did not correlate with the MIC and plasma membrane permeabilization. The results show that 4″,6″-diaryl amphiphilic kanamycins are antifungal and that amphiphilicity parameter cLogD is useful for the design of the most membrane-active versions. A cautionary limitation of fluorescence suppression was revealed when using fluorogenic dyes to measure cell-permeation mechanisms with these antifungals at high concentrations. Finally, 4″,6″-diaryl amphiphilic kanamycins elevate the production of cellular reactive oxygen species as other reported amphiphilic kanamycins. MDPI 2019-05-16 /pmc/articles/PMC6571828/ /pubmed/31100822 http://dx.doi.org/10.3390/molecules24101882 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alfindee, Madher N.
Subedi, Yagya P.
Grilley, Michelle M.
Takemoto, Jon Y.
Chang, Cheng-Wei T.
Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title_full Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title_fullStr Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title_full_unstemmed Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title_short Antifungal Activities of 4″,6″-Disubstituted Amphiphilic Kanamycins
title_sort antifungal activities of 4″,6″-disubstituted amphiphilic kanamycins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571828/
https://www.ncbi.nlm.nih.gov/pubmed/31100822
http://dx.doi.org/10.3390/molecules24101882
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