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Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants

On-demand, localized release of drugs in precisely controlled, patient-specific time sequences represents an ideal scenario for pharmacological treatment of various forms of hormone imbalances, malignant cancers, osteoporosis, diabetic conditions and others. We present a wirelessly operated, implant...

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Autores principales: Lee, Chi Hwan, Kim, Hojun, Harburg, Daniel V, Park, Gayoung, Ma, Yinji, Pan, Taisong, Kim, Jae Soon, Lee, Na Yeon, Kim, Bong Hoon, Jang, Kyung-In, Kang, Seung-Kyun, Huang, Yonggang, Kim, Jeongmin, Lee, Kyung-Mi, Leal, Cecilia, Rogers, John A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4861403/
https://www.ncbi.nlm.nih.gov/pubmed/27175221
http://dx.doi.org/10.1038/am.2015.114
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author Lee, Chi Hwan
Kim, Hojun
Harburg, Daniel V
Park, Gayoung
Ma, Yinji
Pan, Taisong
Kim, Jae Soon
Lee, Na Yeon
Kim, Bong Hoon
Jang, Kyung-In
Kang, Seung-Kyun
Huang, Yonggang
Kim, Jeongmin
Lee, Kyung-Mi
Leal, Cecilia
Rogers, John A
author_facet Lee, Chi Hwan
Kim, Hojun
Harburg, Daniel V
Park, Gayoung
Ma, Yinji
Pan, Taisong
Kim, Jae Soon
Lee, Na Yeon
Kim, Bong Hoon
Jang, Kyung-In
Kang, Seung-Kyun
Huang, Yonggang
Kim, Jeongmin
Lee, Kyung-Mi
Leal, Cecilia
Rogers, John A
author_sort Lee, Chi Hwan
collection PubMed
description On-demand, localized release of drugs in precisely controlled, patient-specific time sequences represents an ideal scenario for pharmacological treatment of various forms of hormone imbalances, malignant cancers, osteoporosis, diabetic conditions and others. We present a wirelessly operated, implantable drug delivery system that offers such capabilities in a form that undergoes complete bioresorption after an engineered functional period, thereby obviating the need for surgical extraction. The device architecture combines thermally actuated lipid membranes embedded with multiple types of drugs, configured in spatial arrays and co-located with individually addressable, wireless elements for Joule heating. The result provides the ability for externally triggered, precision dosage of drugs with high levels of control and negligible unwanted leakage, all without the need for surgical removal. In vitro and in vivo investigations reveal all of the underlying operational and materials aspects, as well as the basic efficacy and biocompatibility of these systems.
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spelling pubmed-48614032016-11-01 Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants Lee, Chi Hwan Kim, Hojun Harburg, Daniel V Park, Gayoung Ma, Yinji Pan, Taisong Kim, Jae Soon Lee, Na Yeon Kim, Bong Hoon Jang, Kyung-In Kang, Seung-Kyun Huang, Yonggang Kim, Jeongmin Lee, Kyung-Mi Leal, Cecilia Rogers, John A NPG Asia Mater Article On-demand, localized release of drugs in precisely controlled, patient-specific time sequences represents an ideal scenario for pharmacological treatment of various forms of hormone imbalances, malignant cancers, osteoporosis, diabetic conditions and others. We present a wirelessly operated, implantable drug delivery system that offers such capabilities in a form that undergoes complete bioresorption after an engineered functional period, thereby obviating the need for surgical extraction. The device architecture combines thermally actuated lipid membranes embedded with multiple types of drugs, configured in spatial arrays and co-located with individually addressable, wireless elements for Joule heating. The result provides the ability for externally triggered, precision dosage of drugs with high levels of control and negligible unwanted leakage, all without the need for surgical removal. In vitro and in vivo investigations reveal all of the underlying operational and materials aspects, as well as the basic efficacy and biocompatibility of these systems. 2015-11-27 2015-11 /pmc/articles/PMC4861403/ /pubmed/27175221 http://dx.doi.org/10.1038/am.2015.114 Text en This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Lee, Chi Hwan
Kim, Hojun
Harburg, Daniel V
Park, Gayoung
Ma, Yinji
Pan, Taisong
Kim, Jae Soon
Lee, Na Yeon
Kim, Bong Hoon
Jang, Kyung-In
Kang, Seung-Kyun
Huang, Yonggang
Kim, Jeongmin
Lee, Kyung-Mi
Leal, Cecilia
Rogers, John A
Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title_full Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title_fullStr Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title_full_unstemmed Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title_short Biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
title_sort biological lipid membranes for on-demand, wireless drug delivery from thin, bioresorbable electronic implants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4861403/
https://www.ncbi.nlm.nih.gov/pubmed/27175221
http://dx.doi.org/10.1038/am.2015.114
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