Distinctive Nanogels as High-Efficiency Transdermal Carriers for Skin Wound Healing
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Published:2020-03-01
Issue:3
Volume:16
Page:304-314
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ISSN:1550-7033
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Container-title:Journal of Biomedical Nanotechnology
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language:en
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Short-container-title:j biomed nanotechnol
Author:
Uk Son Seong,Jang Soojin,Choi Yuna,Park Mirae,Son Hye Young,Huh Yong-Min,Yeom Soo-Jin,Ham Moon Sun,Lee Do Kyung,Kim Han-Na,Jin Yeung-Bae,Kang Taejoon,Jung Juyeon,Lim Eun-Kyung
Abstract
We propose that nanogels (HLGs) prepared by simply blending an epidermal growth factor (EGF)-loaded hyaluronan (HA)-based nanoformulation and poloxamers can be efficient transdermal drug carriers. In particular, due to the thermogelling behavior of poloxamer, when the HLGs, which are
liquid at room temperature, are applied to the skin's surface, they form a gel at skin temperature. First, lipid-based nanoformulations (EGF-LNs) were fabricated by the lipid thin film method and then chemically conjugated with HA on the surface of the films to prepare EGF-loaded HA-based
nanoformulations (EGF-HLNs). Both EGF-LNs and EGF-HLNs exhibited a uniform size and spherical lamellar structure. The EGF-HLN was added to a poloxamer solution to form EGF-HLG, which is a liquid at room temperature and a gel at skin temperature. HLGs have been shown to be able to deliver and
permeate EGF well into the skin using both in vitro and in vivo systems, thus serving as an effective transdermal delivery system. In addition, it has been confirmed that this system could be a possible implantable drug carrier. Therefore, HLGs, which are uncomplicated and easily
prepared, are expected to be easily used not only in the pharmaceutical field but also in the cosmetic field.
Publisher
American Scientific Publishers
Subject
Pharmaceutical Science,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering
Cited by
1 articles.
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