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Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation

Nucleic acid-directed self-assembly provides an attractive method to fabricate prerequisite nanoscale structures for a wide range of technological applications due to the remarkable programmability of DNA/RNA molecules. In this study, exquisite RNAi-AuNP nanoconstructs with various geometries were d...

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Autores principales: Son, Sejin, Kim, Namho, You, Dong Gil, Yoon, Hong Yeol, Yhee, Ji Young, Kim, Kwangmeyung, Kwon, Ick Chan, Kim, Sun Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5196881/
https://www.ncbi.nlm.nih.gov/pubmed/28042312
http://dx.doi.org/10.7150/thno.16042
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author Son, Sejin
Kim, Namho
You, Dong Gil
Yoon, Hong Yeol
Yhee, Ji Young
Kim, Kwangmeyung
Kwon, Ick Chan
Kim, Sun Hwa
author_facet Son, Sejin
Kim, Namho
You, Dong Gil
Yoon, Hong Yeol
Yhee, Ji Young
Kim, Kwangmeyung
Kwon, Ick Chan
Kim, Sun Hwa
author_sort Son, Sejin
collection PubMed
description Nucleic acid-directed self-assembly provides an attractive method to fabricate prerequisite nanoscale structures for a wide range of technological applications due to the remarkable programmability of DNA/RNA molecules. In this study, exquisite RNAi-AuNP nanoconstructs with various geometries were developed by utilizing anti-VEGF siRNA molecules as RNAi-based therapeutics in addition to their role as building blocks for programmed self-assembly. In particular, the anti-VEGF siRNA-functionalized AuNP nanoconstructs can take additional advantage of gold-nanoclusters for photothermal cancer therapeutic agent. A noticeable technical aspect of self-assembled RNAi-AuNP nanoconstructs in this study is the precise conjugation and separation of designated numbers of therapeutic siRNA onto AuNP to develop highly sophisticated RNA-based building blocks capable of creating various geometries of RNAi-AuNP nano-assemblies. The therapeutic potential of RNAi-AuNP nanoconstructs was validated in vivo as well as in vitro by combining heat generation capability of AuNP and anti-angiogenesis mechanism of siRNA. This strategy of combining anti-VEGF mechanism for depleting angiogenesis process at initial tumor progression and complete ablation of residual tumors with photothermal activity of AuNP at later tumor stage showed effective tumor growth inhibition and tumor ablation with PC-3 tumor bearing mice.
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spelling pubmed-51968812017-01-01 Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation Son, Sejin Kim, Namho You, Dong Gil Yoon, Hong Yeol Yhee, Ji Young Kim, Kwangmeyung Kwon, Ick Chan Kim, Sun Hwa Theranostics Research Paper Nucleic acid-directed self-assembly provides an attractive method to fabricate prerequisite nanoscale structures for a wide range of technological applications due to the remarkable programmability of DNA/RNA molecules. In this study, exquisite RNAi-AuNP nanoconstructs with various geometries were developed by utilizing anti-VEGF siRNA molecules as RNAi-based therapeutics in addition to their role as building blocks for programmed self-assembly. In particular, the anti-VEGF siRNA-functionalized AuNP nanoconstructs can take additional advantage of gold-nanoclusters for photothermal cancer therapeutic agent. A noticeable technical aspect of self-assembled RNAi-AuNP nanoconstructs in this study is the precise conjugation and separation of designated numbers of therapeutic siRNA onto AuNP to develop highly sophisticated RNA-based building blocks capable of creating various geometries of RNAi-AuNP nano-assemblies. The therapeutic potential of RNAi-AuNP nanoconstructs was validated in vivo as well as in vitro by combining heat generation capability of AuNP and anti-angiogenesis mechanism of siRNA. This strategy of combining anti-VEGF mechanism for depleting angiogenesis process at initial tumor progression and complete ablation of residual tumors with photothermal activity of AuNP at later tumor stage showed effective tumor growth inhibition and tumor ablation with PC-3 tumor bearing mice. Ivyspring International Publisher 2017-01-01 /pmc/articles/PMC5196881/ /pubmed/28042312 http://dx.doi.org/10.7150/thno.16042 Text en © Ivyspring International Publisher. Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited. See http://ivyspring.com/terms for terms and conditions.
spellingShingle Research Paper
Son, Sejin
Kim, Namho
You, Dong Gil
Yoon, Hong Yeol
Yhee, Ji Young
Kim, Kwangmeyung
Kwon, Ick Chan
Kim, Sun Hwa
Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title_full Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title_fullStr Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title_full_unstemmed Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title_short Antitumor therapeutic application of self-assembled RNAi-AuNP nanoconstructs: Combination of VEGF-RNAi and photothermal ablation
title_sort antitumor therapeutic application of self-assembled rnai-aunp nanoconstructs: combination of vegf-rnai and photothermal ablation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5196881/
https://www.ncbi.nlm.nih.gov/pubmed/28042312
http://dx.doi.org/10.7150/thno.16042
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