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An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates

The treatment of onychomycosis remains problematic even though there are several potent antifungal agents available for patient use. The aim of this investigation was to understand whether the structural modifications that arise when a patient’s nail become infected plates influences the permeation...

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Autores principales: McAuley, W.J., Jones, S.A., Traynor, M.J., Guesné, S., Murdan, S., Brown, M.B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4827374/
https://www.ncbi.nlm.nih.gov/pubmed/26969264
http://dx.doi.org/10.1016/j.ejpb.2016.03.008
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author McAuley, W.J.
Jones, S.A.
Traynor, M.J.
Guesné, S.
Murdan, S.
Brown, M.B.
author_facet McAuley, W.J.
Jones, S.A.
Traynor, M.J.
Guesné, S.
Murdan, S.
Brown, M.B.
author_sort McAuley, W.J.
collection PubMed
description The treatment of onychomycosis remains problematic even though there are several potent antifungal agents available for patient use. The aim of this investigation was to understand whether the structural modifications that arise when a patient’s nail become infected plates influences the permeation of drugs into the nail following topical application. It was hoped that through improving understanding of the nail barrier in the diseased state, the development of more effective topical treatments for onychomycosis could be facilitated. The permeation of three compounds with differing hydrophobicities, caffeine, terbinafine and amorolfine (clog D at pH 7.4 of −0.55, 3.72 and 4.49 respectively), was assessed across both healthy and onychomycosis infected, full thickness, human nail plate sections. Transonychial water loss (TOWL) measurements performed on the healthy and diseased nails supported previous observations that the nail behaves like a porous barrier given the lack of correlation between TOWL values with the thicker, diseased nails. The flux of the more hydrophilic caffeine was twofold greater across diseased in comparison with the healthy nails, whilst the hydrophobic molecules terbinafine and amorolfine showed no statistically significant change in their nail penetration rates. Caffeine flux across the nail was found to correlate with the TOWL measurements, though no correlation existed for the more hydrophobic drugs. These data supported the notion that the nail pores, opened up by the infection, facilitated the passage of hydrophilic molecules, whilst the keratin binding of hydrophobic molecules meant that their transport through the nail plate was unchanged. Therefore, in order to exploit the structural changes induced by nail fungal infection it would be beneficial to develop a small molecular weight, hydrophilic antifungal agent, which exhibits low levels of keratin binding.
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spelling pubmed-48273742016-05-01 An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates McAuley, W.J. Jones, S.A. Traynor, M.J. Guesné, S. Murdan, S. Brown, M.B. Eur J Pharm Biopharm Research Paper The treatment of onychomycosis remains problematic even though there are several potent antifungal agents available for patient use. The aim of this investigation was to understand whether the structural modifications that arise when a patient’s nail become infected plates influences the permeation of drugs into the nail following topical application. It was hoped that through improving understanding of the nail barrier in the diseased state, the development of more effective topical treatments for onychomycosis could be facilitated. The permeation of three compounds with differing hydrophobicities, caffeine, terbinafine and amorolfine (clog D at pH 7.4 of −0.55, 3.72 and 4.49 respectively), was assessed across both healthy and onychomycosis infected, full thickness, human nail plate sections. Transonychial water loss (TOWL) measurements performed on the healthy and diseased nails supported previous observations that the nail behaves like a porous barrier given the lack of correlation between TOWL values with the thicker, diseased nails. The flux of the more hydrophilic caffeine was twofold greater across diseased in comparison with the healthy nails, whilst the hydrophobic molecules terbinafine and amorolfine showed no statistically significant change in their nail penetration rates. Caffeine flux across the nail was found to correlate with the TOWL measurements, though no correlation existed for the more hydrophobic drugs. These data supported the notion that the nail pores, opened up by the infection, facilitated the passage of hydrophilic molecules, whilst the keratin binding of hydrophobic molecules meant that their transport through the nail plate was unchanged. Therefore, in order to exploit the structural changes induced by nail fungal infection it would be beneficial to develop a small molecular weight, hydrophilic antifungal agent, which exhibits low levels of keratin binding. Elsevier Science 2016-05 /pmc/articles/PMC4827374/ /pubmed/26969264 http://dx.doi.org/10.1016/j.ejpb.2016.03.008 Text en © 2016 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
McAuley, W.J.
Jones, S.A.
Traynor, M.J.
Guesné, S.
Murdan, S.
Brown, M.B.
An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title_full An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title_fullStr An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title_full_unstemmed An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title_short An investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
title_sort investigation of how fungal infection influences drug penetration through onychomycosis patient’s nail plates
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4827374/
https://www.ncbi.nlm.nih.gov/pubmed/26969264
http://dx.doi.org/10.1016/j.ejpb.2016.03.008
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