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Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery

Percutaneous drug delivery using microneedles (MNs) has been extensively exploited to increase the transdermal permeability of therapeutic drugs. However, it is difficult to control the precise dosage with existing MNs and they need to be attached for a long time, so a more simple and scalable metho...

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Autores principales: Yim, Sang-Gu, Seong, Keum-Yong, Thamarappalli, Akash, Lee, Hyeseon, Lee, Seungsoo, Lee, Sanha, Kim, Semin, Yang, Seung-Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385874/
https://www.ncbi.nlm.nih.gov/pubmed/37514152
http://dx.doi.org/10.3390/pharmaceutics15071966
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author Yim, Sang-Gu
Seong, Keum-Yong
Thamarappalli, Akash
Lee, Hyeseon
Lee, Seungsoo
Lee, Sanha
Kim, Semin
Yang, Seung-Yun
author_facet Yim, Sang-Gu
Seong, Keum-Yong
Thamarappalli, Akash
Lee, Hyeseon
Lee, Seungsoo
Lee, Sanha
Kim, Semin
Yang, Seung-Yun
author_sort Yim, Sang-Gu
collection PubMed
description Percutaneous drug delivery using microneedles (MNs) has been extensively exploited to increase the transdermal permeability of therapeutic drugs. However, it is difficult to control the precise dosage with existing MNs and they need to be attached for a long time, so a more simple and scalable method is required for accurate transdermal drug delivery. In this study, we developed grooved MNs that can be embedded into the skin by mechanical fracture following simple shear actuation. Grooved MNs are prepared from hyaluronic acid (HA), which is a highly biocompatible and biodegradable biopolymer. By adjusting the aspect ratio (length:diameter) of the MN and the position of the groove, the MN tip inserted into the skin can be easily broken by shear force. In addition, it was demonstrated that it is possible to deliver the desired amount of triamcinolone acetonide (TCA) for alopecia areata by controlling the position of the groove structure and the concentration of TCA loaded in the MN. It was also confirmed that the tip of the TCA MN can be accurately delivered into the skin with a high probability (98% or more) by fabricating an easy-to-operate applicator to provide adequate shear force. The grooved MN platform has proven to be able to load the desired amount of a drug and deliver it at the correct dose.
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spelling pubmed-103858742023-07-30 Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery Yim, Sang-Gu Seong, Keum-Yong Thamarappalli, Akash Lee, Hyeseon Lee, Seungsoo Lee, Sanha Kim, Semin Yang, Seung-Yun Pharmaceutics Article Percutaneous drug delivery using microneedles (MNs) has been extensively exploited to increase the transdermal permeability of therapeutic drugs. However, it is difficult to control the precise dosage with existing MNs and they need to be attached for a long time, so a more simple and scalable method is required for accurate transdermal drug delivery. In this study, we developed grooved MNs that can be embedded into the skin by mechanical fracture following simple shear actuation. Grooved MNs are prepared from hyaluronic acid (HA), which is a highly biocompatible and biodegradable biopolymer. By adjusting the aspect ratio (length:diameter) of the MN and the position of the groove, the MN tip inserted into the skin can be easily broken by shear force. In addition, it was demonstrated that it is possible to deliver the desired amount of triamcinolone acetonide (TCA) for alopecia areata by controlling the position of the groove structure and the concentration of TCA loaded in the MN. It was also confirmed that the tip of the TCA MN can be accurately delivered into the skin with a high probability (98% or more) by fabricating an easy-to-operate applicator to provide adequate shear force. The grooved MN platform has proven to be able to load the desired amount of a drug and deliver it at the correct dose. MDPI 2023-07-17 /pmc/articles/PMC10385874/ /pubmed/37514152 http://dx.doi.org/10.3390/pharmaceutics15071966 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yim, Sang-Gu
Seong, Keum-Yong
Thamarappalli, Akash
Lee, Hyeseon
Lee, Seungsoo
Lee, Sanha
Kim, Semin
Yang, Seung-Yun
Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title_full Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title_fullStr Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title_full_unstemmed Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title_short Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
title_sort fast-embeddable grooved microneedles by shear actuation for accurate transdermal drug delivery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385874/
https://www.ncbi.nlm.nih.gov/pubmed/37514152
http://dx.doi.org/10.3390/pharmaceutics15071966
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