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Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel

In this study, the ability of nanocarriers containing protein transduction domains (PTDs) of various classes to improve cutaneous paclitaxel delivery and efficacy in skin tumor models was evaluated. Microemulsions (MEs) were prepared by mixing a surfactant blend (polyoxyethylene 10 oleoyl ether, eth...

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Autores principales: Pepe, Dominique, Carvalho, Vanessa FM, McCall, Melissa, de Lemos, Débora P, Lopes, Luciana B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4869655/
https://www.ncbi.nlm.nih.gov/pubmed/27274232
http://dx.doi.org/10.2147/IJN.S97331
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author Pepe, Dominique
Carvalho, Vanessa FM
McCall, Melissa
de Lemos, Débora P
Lopes, Luciana B
author_facet Pepe, Dominique
Carvalho, Vanessa FM
McCall, Melissa
de Lemos, Débora P
Lopes, Luciana B
author_sort Pepe, Dominique
collection PubMed
description In this study, the ability of nanocarriers containing protein transduction domains (PTDs) of various classes to improve cutaneous paclitaxel delivery and efficacy in skin tumor models was evaluated. Microemulsions (MEs) were prepared by mixing a surfactant blend (polyoxyethylene 10 oleoyl ether, ethanol and propylene glycol), monocaprylin, and water. The PTD transportan (ME-T), penetratin (ME-P), or TAT (ME-TAT) was added at a concentration of 1 mM to the plain ME. All MEs displayed nanometric size (32.3–40.7 nm) and slight positive zeta potential (+4.1 mV to +6.8 mV). Skin penetration of paclitaxel from the MEs was assessed for 1–12 hours using porcine skin and Franz diffusion cells. Among the PTD-containing formulations, paclitaxel skin (stratum corneum + epidermis and dermis) penetration at 12 hours was maximized with ME-T, whereas ME-TAT provided the lowest penetration (1.6-fold less). This is consistent with the stronger ability of ME-T to increase transepidermal water loss (2.4-fold compared to water) and tissue permeability. The influence of PTD addition on the ME irritation potential was assessed by measuring interleukin-1α expression and viability of bioengineered skin equivalents. A 1.5- to 1.8-fold increase in interleukin-1α expression was induced by ME-T compared to the other formulations, but this effect was less pronounced (5.8-fold) than that mediated by the moderate irritant Triton. Because ME-T maximized paclitaxel cutaneous localization while being safer than Triton, its efficacy was assessed against basal cell carcinoma cells and a bioengineered three-dimensional melanoma model. Paclitaxel-containing ME-T reduced cells and tissue viability by twofold compared to drug solutions, suggesting the potential clinical usefulness of the formulation for the treatment of cutaneous tumors.
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spelling pubmed-48696552016-06-07 Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel Pepe, Dominique Carvalho, Vanessa FM McCall, Melissa de Lemos, Débora P Lopes, Luciana B Int J Nanomedicine Original Research In this study, the ability of nanocarriers containing protein transduction domains (PTDs) of various classes to improve cutaneous paclitaxel delivery and efficacy in skin tumor models was evaluated. Microemulsions (MEs) were prepared by mixing a surfactant blend (polyoxyethylene 10 oleoyl ether, ethanol and propylene glycol), monocaprylin, and water. The PTD transportan (ME-T), penetratin (ME-P), or TAT (ME-TAT) was added at a concentration of 1 mM to the plain ME. All MEs displayed nanometric size (32.3–40.7 nm) and slight positive zeta potential (+4.1 mV to +6.8 mV). Skin penetration of paclitaxel from the MEs was assessed for 1–12 hours using porcine skin and Franz diffusion cells. Among the PTD-containing formulations, paclitaxel skin (stratum corneum + epidermis and dermis) penetration at 12 hours was maximized with ME-T, whereas ME-TAT provided the lowest penetration (1.6-fold less). This is consistent with the stronger ability of ME-T to increase transepidermal water loss (2.4-fold compared to water) and tissue permeability. The influence of PTD addition on the ME irritation potential was assessed by measuring interleukin-1α expression and viability of bioengineered skin equivalents. A 1.5- to 1.8-fold increase in interleukin-1α expression was induced by ME-T compared to the other formulations, but this effect was less pronounced (5.8-fold) than that mediated by the moderate irritant Triton. Because ME-T maximized paclitaxel cutaneous localization while being safer than Triton, its efficacy was assessed against basal cell carcinoma cells and a bioengineered three-dimensional melanoma model. Paclitaxel-containing ME-T reduced cells and tissue viability by twofold compared to drug solutions, suggesting the potential clinical usefulness of the formulation for the treatment of cutaneous tumors. Dove Medical Press 2016-05-11 /pmc/articles/PMC4869655/ /pubmed/27274232 http://dx.doi.org/10.2147/IJN.S97331 Text en © 2016 Pepe et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Pepe, Dominique
Carvalho, Vanessa FM
McCall, Melissa
de Lemos, Débora P
Lopes, Luciana B
Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title_full Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title_fullStr Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title_full_unstemmed Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title_short Transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
title_sort transportan in nanocarriers improves skin localization and antitumor activity of paclitaxel
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4869655/
https://www.ncbi.nlm.nih.gov/pubmed/27274232
http://dx.doi.org/10.2147/IJN.S97331
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