Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment
10.1038/srep42212
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sg-nus-scholar.10635-1797372024-11-09T16:22:15Z Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment Nguyen, L.H Gao, M Lin, J Wu, W Wang, J Chew, S.Y BIOCHEMISTRY nanofiber animal axon chemistry drug delivery system female gene transfer hydrogel intermediate filament metabolism nerve regeneration pathology pathophysiology remyelinization spinal cord spinal cord injury Sprague Dawley rat three dimensional imaging tissue scaffold Animals Axons Drug Delivery Systems Female Gene Transfer Techniques Hydrogels Imaging, Three-Dimensional Intermediate Filaments Nanofibers Nerve Regeneration Rats, Sprague-Dawley Remyelination Spinal Cord Spinal Cord Injuries Tissue Scaffolds 10.1038/srep42212 Scientific Reports 7 42212 2020-10-26T02:51:07Z 2020-10-26T02:51:07Z 2017 Article Nguyen, L.H, Gao, M, Lin, J, Wu, W, Wang, J, Chew, S.Y (2017). Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment. Scientific Reports 7 : 42212. ScholarBank@NUS Repository. https://doi.org/10.1038/srep42212 2045-2322 https://scholarbank.nus.edu.sg/handle/10635/179737 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031 |
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nanofiber animal axon chemistry drug delivery system female gene transfer hydrogel intermediate filament metabolism nerve regeneration pathology pathophysiology remyelinization spinal cord spinal cord injury Sprague Dawley rat three dimensional imaging tissue scaffold Animals Axons Drug Delivery Systems Female Gene Transfer Techniques Hydrogels Imaging, Three-Dimensional Intermediate Filaments Nanofibers Nerve Regeneration Rats, Sprague-Dawley Remyelination Spinal Cord Spinal Cord Injuries Tissue Scaffolds |
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nanofiber animal axon chemistry drug delivery system female gene transfer hydrogel intermediate filament metabolism nerve regeneration pathology pathophysiology remyelinization spinal cord spinal cord injury Sprague Dawley rat three dimensional imaging tissue scaffold Animals Axons Drug Delivery Systems Female Gene Transfer Techniques Hydrogels Imaging, Three-Dimensional Intermediate Filaments Nanofibers Nerve Regeneration Rats, Sprague-Dawley Remyelination Spinal Cord Spinal Cord Injuries Tissue Scaffolds Nguyen, L.H Gao, M Lin, J Wu, W Wang, J Chew, S.Y Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
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10.1038/srep42212 |
author2 |
BIOCHEMISTRY |
author_facet |
BIOCHEMISTRY Nguyen, L.H Gao, M Lin, J Wu, W Wang, J Chew, S.Y |
format |
Article |
author |
Nguyen, L.H Gao, M Lin, J Wu, W Wang, J Chew, S.Y |
author_sort |
Nguyen, L.H |
title |
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
title_short |
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
title_full |
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
title_fullStr |
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
title_full_unstemmed |
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
title_sort |
three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/179737 |
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1821229949554524160 |