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Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment

The transdermal delivery of therapeutic agents amplifying a local concentration of active molecules have received considerable attention in wide biomedical applications, especially in vaccine development and medical beauty. Unlike oral or subcutaneous injections, this approach can not only avoid the...

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Autores principales: Fang, Jen-Hung, Liu, Che-Hau, Hsu, Ru-Siou, Chen, Yin-Yu, Chiang, Wen-Hsuan, Wang, Hui-Min David, Hu, Shang-Hsiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7362218/
https://www.ncbi.nlm.nih.gov/pubmed/32580298
http://dx.doi.org/10.3390/polym12061392
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author Fang, Jen-Hung
Liu, Che-Hau
Hsu, Ru-Siou
Chen, Yin-Yu
Chiang, Wen-Hsuan
Wang, Hui-Min David
Hu, Shang-Hsiu
author_facet Fang, Jen-Hung
Liu, Che-Hau
Hsu, Ru-Siou
Chen, Yin-Yu
Chiang, Wen-Hsuan
Wang, Hui-Min David
Hu, Shang-Hsiu
author_sort Fang, Jen-Hung
collection PubMed
description The transdermal delivery of therapeutic agents amplifying a local concentration of active molecules have received considerable attention in wide biomedical applications, especially in vaccine development and medical beauty. Unlike oral or subcutaneous injections, this approach can not only avoid the loss of efficacy of oral drugs due to the liver’s first-pass effect but also reduce the risk of infection by subcutaneous injection. In this study, a magneto-responsive transdermal composite microneedle (MNs) with a mesoporous iron oxide nanoraspberry (MIO), that can improve the drug delivery efficiency, was fabricated by using a 3D printing-molding method. With loading of Minoxidil (Mx, a medication commonly used to slow the progression of hair loss and speed the process of hair regrowth), MNs can break the barrier of the stratum corneum through the puncture ability, and control the delivery dose for treating androgenetic alopecia (AGA). By 3D printing process, the sizes and morphologies of MNs is able to be, easily, architected. The MIOs were embedded into the tip of MNs which can deliver Mx as well as generate mild heating for hair growth, which is potentially attributed by the expansion of hair follicle and drug penetration. Compared to the mice without any treatments, the hair density of mice exhibited an 800% improvement after being treated by MNs with MF at 10-days post-treatment.
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spelling pubmed-73622182020-07-21 Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment Fang, Jen-Hung Liu, Che-Hau Hsu, Ru-Siou Chen, Yin-Yu Chiang, Wen-Hsuan Wang, Hui-Min David Hu, Shang-Hsiu Polymers (Basel) Article The transdermal delivery of therapeutic agents amplifying a local concentration of active molecules have received considerable attention in wide biomedical applications, especially in vaccine development and medical beauty. Unlike oral or subcutaneous injections, this approach can not only avoid the loss of efficacy of oral drugs due to the liver’s first-pass effect but also reduce the risk of infection by subcutaneous injection. In this study, a magneto-responsive transdermal composite microneedle (MNs) with a mesoporous iron oxide nanoraspberry (MIO), that can improve the drug delivery efficiency, was fabricated by using a 3D printing-molding method. With loading of Minoxidil (Mx, a medication commonly used to slow the progression of hair loss and speed the process of hair regrowth), MNs can break the barrier of the stratum corneum through the puncture ability, and control the delivery dose for treating androgenetic alopecia (AGA). By 3D printing process, the sizes and morphologies of MNs is able to be, easily, architected. The MIOs were embedded into the tip of MNs which can deliver Mx as well as generate mild heating for hair growth, which is potentially attributed by the expansion of hair follicle and drug penetration. Compared to the mice without any treatments, the hair density of mice exhibited an 800% improvement after being treated by MNs with MF at 10-days post-treatment. MDPI 2020-06-22 /pmc/articles/PMC7362218/ /pubmed/32580298 http://dx.doi.org/10.3390/polym12061392 Text en © 2020 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
Fang, Jen-Hung
Liu, Che-Hau
Hsu, Ru-Siou
Chen, Yin-Yu
Chiang, Wen-Hsuan
Wang, Hui-Min David
Hu, Shang-Hsiu
Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title_full Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title_fullStr Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title_full_unstemmed Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title_short Transdermal Composite Microneedle Composed of Mesoporous Iron Oxide Nanoraspberry and PVA for Androgenetic Alopecia Treatment
title_sort transdermal composite microneedle composed of mesoporous iron oxide nanoraspberry and pva for androgenetic alopecia treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7362218/
https://www.ncbi.nlm.nih.gov/pubmed/32580298
http://dx.doi.org/10.3390/polym12061392
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