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Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery

For the development of surface-functionalized gold nanoparticles as cellular probes and delivery agents, we have synthesized hetero-bifunctional poly(ethylene glycol) (PEG, MW 1500) having a thiol group on one terminus and a reactive functional group on the other for use as a flexible spacer. Coumar...

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Detalles Bibliográficos
Autores principales: Shenoy, Dinesh, Fu, Wei, Li, Jane, Crasto, Curtis, Jones, Graham, DiMarzio, Charles, Sridhar, Srinivas, Amiji, Mansoor
Formato: Texto
Lenguaje:English
Publicado: Dove Medical Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1351208/
https://www.ncbi.nlm.nih.gov/pubmed/16467923
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author Shenoy, Dinesh
Fu, Wei
Li, Jane
Crasto, Curtis
Jones, Graham
DiMarzio, Charles
Sridhar, Srinivas
Amiji, Mansoor
author_facet Shenoy, Dinesh
Fu, Wei
Li, Jane
Crasto, Curtis
Jones, Graham
DiMarzio, Charles
Sridhar, Srinivas
Amiji, Mansoor
author_sort Shenoy, Dinesh
collection PubMed
description For the development of surface-functionalized gold nanoparticles as cellular probes and delivery agents, we have synthesized hetero-bifunctional poly(ethylene glycol) (PEG, MW 1500) having a thiol group on one terminus and a reactive functional group on the other for use as a flexible spacer. Coumarin, a model fluorescent dye, was conjugated to one end of the PEG spacer and gold nanoparticles were modified with coumarin-PEG-thiol. Surface attachment of coumarin through the PEG spacer decreased the fluorescence quenching effect of gold nanoparticles. The results of cellular cytotoxicity and fluorescence confocal analyses showed that the PEG spacer-modified nanoparticles were essentially non-toxic and could be efficiently internalized in the cells within 1 hour of incubation. Intracellular particle tracking using a Keck 3-D Fusion Microscope System showed that the functionalized gold nanoparticles were rapidly internalized in the cells and localized in the peri-nuclear region. Using the PEG spacer, the gold nano-platform can be conjugated with a variety of biologically relevant ligands such as fluorescent dyes, antibodies, etc in order to target, probe, and induce a stimulus at the target site.
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spelling pubmed-13512082008-06-20 Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery Shenoy, Dinesh Fu, Wei Li, Jane Crasto, Curtis Jones, Graham DiMarzio, Charles Sridhar, Srinivas Amiji, Mansoor Int J Nanomedicine Original Research For the development of surface-functionalized gold nanoparticles as cellular probes and delivery agents, we have synthesized hetero-bifunctional poly(ethylene glycol) (PEG, MW 1500) having a thiol group on one terminus and a reactive functional group on the other for use as a flexible spacer. Coumarin, a model fluorescent dye, was conjugated to one end of the PEG spacer and gold nanoparticles were modified with coumarin-PEG-thiol. Surface attachment of coumarin through the PEG spacer decreased the fluorescence quenching effect of gold nanoparticles. The results of cellular cytotoxicity and fluorescence confocal analyses showed that the PEG spacer-modified nanoparticles were essentially non-toxic and could be efficiently internalized in the cells within 1 hour of incubation. Intracellular particle tracking using a Keck 3-D Fusion Microscope System showed that the functionalized gold nanoparticles were rapidly internalized in the cells and localized in the peri-nuclear region. Using the PEG spacer, the gold nano-platform can be conjugated with a variety of biologically relevant ligands such as fluorescent dyes, antibodies, etc in order to target, probe, and induce a stimulus at the target site. Dove Medical Press 2006-03 /pmc/articles/PMC1351208/ /pubmed/16467923 Text en © 2006 Dove Medical Press Limited. All rights reserved
spellingShingle Original Research
Shenoy, Dinesh
Fu, Wei
Li, Jane
Crasto, Curtis
Jones, Graham
DiMarzio, Charles
Sridhar, Srinivas
Amiji, Mansoor
Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title_full Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title_fullStr Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title_full_unstemmed Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title_short Surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
title_sort surface functionalization of gold nanoparticles using hetero-bifunctional poly(ethylene glycol) spacer for intracellular tracking and delivery
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1351208/
https://www.ncbi.nlm.nih.gov/pubmed/16467923
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