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Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement

Malaria is still a serious public health problem in some parts of the world. The problems of recurrence and drug resistance are increasingly more serious. Thus, it is necessary to develop a novel antimalarial agent. The objectives of this study were to construct a novel compound antimalarial transde...

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Autores principales: Shen, Shuo, Liu, Shu-Zhi, Zhang, Yu-Shi, Du, Mao-Bo, Liang, Ai-Hua, Song, Li-Hua, Ye, Zu-Guang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4494185/
https://www.ncbi.nlm.nih.gov/pubmed/26170661
http://dx.doi.org/10.2147/IJN.S83402
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author Shen, Shuo
Liu, Shu-Zhi
Zhang, Yu-Shi
Du, Mao-Bo
Liang, Ai-Hua
Song, Li-Hua
Ye, Zu-Guang
author_facet Shen, Shuo
Liu, Shu-Zhi
Zhang, Yu-Shi
Du, Mao-Bo
Liang, Ai-Hua
Song, Li-Hua
Ye, Zu-Guang
author_sort Shen, Shuo
collection PubMed
description Malaria is still a serious public health problem in some parts of the world. The problems of recurrence and drug resistance are increasingly more serious. Thus, it is necessary to develop a novel antimalarial agent. The objectives of this study were to construct a novel compound antimalarial transdermal nanosystem–ethosomal cataplasm, to investigate its characteristics and efficiency, and to systematically explore the penetration-enhancing mechanisms of ethosomal cataplasm. Artesunate-loaded ethosomes and febrifugine-loaded ethosomes were prepared, and their characteristics were evaluated. Drug-loaded ethosomes were incorporated in the matrix of cataplasm to form the compound antimalarial ethosomal cataplasm. With the help of ethosomal technology, the accumulated permeation quantity of artesunate significantly increased at 8 hours after administration, which was 1.57 times as much as that of conventional cataplasm. Soon after administration, the ethosomal cataplasm could make a large quantity of antimalarial drug quickly penetrate through skin, then the remaining drug in the ethosomal cataplasm could be steadily released. These characteristics of ethosomal cataplasm are favorable for antimalarial drugs to kill Plasmodium spp. quickly and prevent the resurgence of Plasmodium spp. As expected, the ethosomal cataplasm showed good antimalarial efficiency in this experiment. The negative conversion rates were 100% and the recurrence rates were 0% at all dosages. The mechanism of penetration enhancement of the ethosomal cataplasm was systematically explored using an optics microscope, polarization microscope, and transmission electron microscopy. The microstructure, ultrastructure, and birefringent structure in skin were observed. Data obtained in this study showed that the application of ethosomal technology to antimalarial cataplasm could improve the transdermal delivery of drug, enhance the efficacy, and facilitate practical application in clinic.
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spelling pubmed-44941852015-07-13 Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement Shen, Shuo Liu, Shu-Zhi Zhang, Yu-Shi Du, Mao-Bo Liang, Ai-Hua Song, Li-Hua Ye, Zu-Guang Int J Nanomedicine Original Research Malaria is still a serious public health problem in some parts of the world. The problems of recurrence and drug resistance are increasingly more serious. Thus, it is necessary to develop a novel antimalarial agent. The objectives of this study were to construct a novel compound antimalarial transdermal nanosystem–ethosomal cataplasm, to investigate its characteristics and efficiency, and to systematically explore the penetration-enhancing mechanisms of ethosomal cataplasm. Artesunate-loaded ethosomes and febrifugine-loaded ethosomes were prepared, and their characteristics were evaluated. Drug-loaded ethosomes were incorporated in the matrix of cataplasm to form the compound antimalarial ethosomal cataplasm. With the help of ethosomal technology, the accumulated permeation quantity of artesunate significantly increased at 8 hours after administration, which was 1.57 times as much as that of conventional cataplasm. Soon after administration, the ethosomal cataplasm could make a large quantity of antimalarial drug quickly penetrate through skin, then the remaining drug in the ethosomal cataplasm could be steadily released. These characteristics of ethosomal cataplasm are favorable for antimalarial drugs to kill Plasmodium spp. quickly and prevent the resurgence of Plasmodium spp. As expected, the ethosomal cataplasm showed good antimalarial efficiency in this experiment. The negative conversion rates were 100% and the recurrence rates were 0% at all dosages. The mechanism of penetration enhancement of the ethosomal cataplasm was systematically explored using an optics microscope, polarization microscope, and transmission electron microscopy. The microstructure, ultrastructure, and birefringent structure in skin were observed. Data obtained in this study showed that the application of ethosomal technology to antimalarial cataplasm could improve the transdermal delivery of drug, enhance the efficacy, and facilitate practical application in clinic. Dove Medical Press 2015-06-30 /pmc/articles/PMC4494185/ /pubmed/26170661 http://dx.doi.org/10.2147/IJN.S83402 Text en © 2015 Shen et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. 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
Shen, Shuo
Liu, Shu-Zhi
Zhang, Yu-Shi
Du, Mao-Bo
Liang, Ai-Hua
Song, Li-Hua
Ye, Zu-Guang
Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title_full Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title_fullStr Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title_full_unstemmed Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title_short Compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
title_sort compound antimalarial ethosomal cataplasm: preparation, evaluation, and mechanism of penetration enhancement
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4494185/
https://www.ncbi.nlm.nih.gov/pubmed/26170661
http://dx.doi.org/10.2147/IJN.S83402
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