Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites

Electrospun polymeric core–shell nanocomposites are exploited as templates to manipulate molecular self-assembly for preparing structural lipid nanoparticles, during which the confinement effect of fibers together with their core–shell structure, the aqueous environment and the secondary interaction...

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Main Authors: Yu, Deng-Guang, White, Kenneth, Chatterton, Nicholas, Li, Ying, Li, Lingling, Wang, Xia
Format: Article
Language:English
Published: Royal Society of Chemistry 2015
Subjects:
Online Access:https://repository.londonmet.ac.uk/1034/1/RSC%20Adv%20v5%20p9462%202015%20%5BKW057%5D.pdf
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author Yu, Deng-Guang
White, Kenneth
Chatterton, Nicholas
Li, Ying
Li, Lingling
Wang, Xia
author_facet Yu, Deng-Guang
White, Kenneth
Chatterton, Nicholas
Li, Ying
Li, Lingling
Wang, Xia
author_sort Yu, Deng-Guang
collection LMU
description Electrospun polymeric core–shell nanocomposites are exploited as templates to manipulate molecular self-assembly for preparing structural lipid nanoparticles, during which the confinement effect of fibers together with their core–shell structure, the aqueous environment and the secondary interactions, all contributed synergistically to facilitate molecular self-aggregation to produce lipid nanoparticles with a drug entrapment efficiency of 95.9% with a sustained drug release profile.
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spelling oai:repository.londonmet.ac.uk:10342020-06-04T11:56:48Z http://repository.londonmet.ac.uk/1034/ Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites Yu, Deng-Guang White, Kenneth Chatterton, Nicholas Li, Ying Li, Lingling Wang, Xia 540 Chemistry & allied sciences Electrospun polymeric core–shell nanocomposites are exploited as templates to manipulate molecular self-assembly for preparing structural lipid nanoparticles, during which the confinement effect of fibers together with their core–shell structure, the aqueous environment and the secondary interactions, all contributed synergistically to facilitate molecular self-aggregation to produce lipid nanoparticles with a drug entrapment efficiency of 95.9% with a sustained drug release profile. Royal Society of Chemistry 2015 Article PeerReviewed text en https://repository.londonmet.ac.uk/1034/1/RSC%20Adv%20v5%20p9462%202015%20%5BKW057%5D.pdf Yu, Deng-Guang, White, Kenneth, Chatterton, Nicholas, Li, Ying, Li, Lingling and Wang, Xia (2015) Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites. RSC Advances, 5. pp. 9462-9466. ISSN 2046-2069 http://www.rsc.org/advances 10.1039/c4ra14001j
spellingShingle 540 Chemistry & allied sciences
Yu, Deng-Guang
White, Kenneth
Chatterton, Nicholas
Li, Ying
Li, Lingling
Wang, Xia
Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title_full Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title_fullStr Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title_full_unstemmed Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title_short Structural lipid nanoparticles self-assembled from electrospun core-shell polymeric nanocomposites
title_sort structural lipid nanoparticles self assembled from electrospun core shell polymeric nanocomposites
topic 540 Chemistry & allied sciences
url https://repository.londonmet.ac.uk/1034/1/RSC%20Adv%20v5%20p9462%202015%20%5BKW057%5D.pdf
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