Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery

Research in this thesis developed a new class of plasmonic vesicular nanostructures assembled from amphiphilic gold nanocrystals (nanoparticles and nanorods) coated with mixed hydrophilic and hydrophobic polymer brushes. The integration of gold nanocrystals with two types of chemically distinct poly...

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Main Author: Song, Jibin
Other Authors: School of Chemical and Biomedical Engineering
Format: Theses and Dissertations
Language:English
Published: 2014
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Online Access:http://hdl.handle.net/10356/61619
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-616192023-03-03T15:58:11Z Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery Song, Jibin School of Chemical and Biomedical Engineering Duan Hongwei DRNTU::Engineering Research in this thesis developed a new class of plasmonic vesicular nanostructures assembled from amphiphilic gold nanocrystals (nanoparticles and nanorods) coated with mixed hydrophilic and hydrophobic polymer brushes. The integration of gold nanocrystals with two types of chemically distinct polymer grafts, which are analogous to block copolymers as a whole, creates a new type of hybrid building blocks inheriting the amphiphilicity-driven self-assembly of block copolymers to form vesicular structures. The disruption of the plasmonic vesicles can be triggered by stimuli mechanisms inherent to either of the polymer or the nanocrystal. To fulfill the different requirements of drug delivery, three types of plasmonic vesicles were prepared by using amphiphilic gold nanocrystals with pH responsive, photo-active and biodegradable polymers as hydrophobic brush, respectively, while the hydrophilic brush was maintained as poly(ethylene glycol) PEG. These plasmonic vesicles with hollow cavity can play multifunctional roles as traceable delivery carriers for anticancer drugs and plasmonic imaging probes to specifically label targeted cancer cells and trace intracellular drug delivery. Furthermore, integration of photothermal effect of gold nanorods and large loading capacity of the vesicles provides opportunities for localized synergistic photothermal ablation and photo-activated chemotherapy, which have shown higher efficiency in killing targeted cancer cells than either single therapeutic modality. Doctor of Philosophy (SCBE) 2014-06-17T03:48:00Z 2014-06-17T03:48:00Z 2014 2014 Thesis http://hdl.handle.net/10356/61619 en 175 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Song, Jibin
Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
description Research in this thesis developed a new class of plasmonic vesicular nanostructures assembled from amphiphilic gold nanocrystals (nanoparticles and nanorods) coated with mixed hydrophilic and hydrophobic polymer brushes. The integration of gold nanocrystals with two types of chemically distinct polymer grafts, which are analogous to block copolymers as a whole, creates a new type of hybrid building blocks inheriting the amphiphilicity-driven self-assembly of block copolymers to form vesicular structures. The disruption of the plasmonic vesicles can be triggered by stimuli mechanisms inherent to either of the polymer or the nanocrystal. To fulfill the different requirements of drug delivery, three types of plasmonic vesicles were prepared by using amphiphilic gold nanocrystals with pH responsive, photo-active and biodegradable polymers as hydrophobic brush, respectively, while the hydrophilic brush was maintained as poly(ethylene glycol) PEG. These plasmonic vesicles with hollow cavity can play multifunctional roles as traceable delivery carriers for anticancer drugs and plasmonic imaging probes to specifically label targeted cancer cells and trace intracellular drug delivery. Furthermore, integration of photothermal effect of gold nanorods and large loading capacity of the vesicles provides opportunities for localized synergistic photothermal ablation and photo-activated chemotherapy, which have shown higher efficiency in killing targeted cancer cells than either single therapeutic modality.
author2 School of Chemical and Biomedical Engineering
author_facet School of Chemical and Biomedical Engineering
Song, Jibin
format Theses and Dissertations
author Song, Jibin
author_sort Song, Jibin
title Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
title_short Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
title_full Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
title_fullStr Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
title_full_unstemmed Self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
title_sort self-assembled plasmonic vesicles of amphiphilic gold nanocrystals for traceable drug delivery
publishDate 2014
url http://hdl.handle.net/10356/61619
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