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Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy

The unique optical properties of gold nanorods (GNRs) have recently drawn considerable interest from those working in in vivo biomolecular sensing and bioimaging. Especially appealing in these applications is the plasmon-enhanced photoluminescence of GNRs induced by two-photon excitation at infrared...

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Autores principales: Chen, Nai-Tzu, Tang, Kuo-Chun, Chung, Ming-Fang, Cheng, Shih-Hsun, Huang, Ching-Mao, Chu, Chia-Hui, Chou, Pi-Tai, Souris, Jeffrey S., Chen, Chin-Tu, Mou, Chung-Yuan, Lo, Leu-Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063978/
https://www.ncbi.nlm.nih.gov/pubmed/24955141
http://dx.doi.org/10.7150/thno.8934
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author Chen, Nai-Tzu
Tang, Kuo-Chun
Chung, Ming-Fang
Cheng, Shih-Hsun
Huang, Ching-Mao
Chu, Chia-Hui
Chou, Pi-Tai
Souris, Jeffrey S.
Chen, Chin-Tu
Mou, Chung-Yuan
Lo, Leu-Wei
author_facet Chen, Nai-Tzu
Tang, Kuo-Chun
Chung, Ming-Fang
Cheng, Shih-Hsun
Huang, Ching-Mao
Chu, Chia-Hui
Chou, Pi-Tai
Souris, Jeffrey S.
Chen, Chin-Tu
Mou, Chung-Yuan
Lo, Leu-Wei
author_sort Chen, Nai-Tzu
collection PubMed
description The unique optical properties of gold nanorods (GNRs) have recently drawn considerable interest from those working in in vivo biomolecular sensing and bioimaging. Especially appealing in these applications is the plasmon-enhanced photoluminescence of GNRs induced by two-photon excitation at infrared wavelengths, owing to the significant penetration depth of infrared light in tissue. Unfortunately, many studies have also shown that often the intensity of pulsed coherent irradiation of GNRs needed results in irreversible deformation of GNRs, greatly reducing their two-photon luminescence (TPL) emission intensity. In this work we report the design, synthesis, and evaluation of mesoporous silica-encased gold nanorods (MS-GNRs) that incorporate photosensitizers (PSs) for two-photon-activated photodynamic therapy (TPA-PDT). The PSs, doped into the nano-channels of the mesoporous silica shell, can be efficiently excited via intra-particle plasmonic resonance energy transfer from the encased two-photon excited gold nanorod and further generates cytotoxic singlet oxygen for cancer eradication. In addition, due to the mechanical support provided by encapsulating mesoporous silica matrix against thermal deformation, the two-photon luminescence stability of GNRs was significantly improved; after 100 seconds of 800 nm repetitive laser pulse with the 30 times higher than average power for imaging acquisition, MS-GNR luminescence intensity exhibited ~260% better resistance to deformation than that of the uncoated gold nanorods. These results strongly suggest that MS-GNRs with embedded PSs might provide a promising photodynamic therapy for the treatment of deeply situated cancers via plasmonic resonance energy transfer.
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spelling pubmed-40639782014-06-20 Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy Chen, Nai-Tzu Tang, Kuo-Chun Chung, Ming-Fang Cheng, Shih-Hsun Huang, Ching-Mao Chu, Chia-Hui Chou, Pi-Tai Souris, Jeffrey S. Chen, Chin-Tu Mou, Chung-Yuan Lo, Leu-Wei Theranostics Research Paper The unique optical properties of gold nanorods (GNRs) have recently drawn considerable interest from those working in in vivo biomolecular sensing and bioimaging. Especially appealing in these applications is the plasmon-enhanced photoluminescence of GNRs induced by two-photon excitation at infrared wavelengths, owing to the significant penetration depth of infrared light in tissue. Unfortunately, many studies have also shown that often the intensity of pulsed coherent irradiation of GNRs needed results in irreversible deformation of GNRs, greatly reducing their two-photon luminescence (TPL) emission intensity. In this work we report the design, synthesis, and evaluation of mesoporous silica-encased gold nanorods (MS-GNRs) that incorporate photosensitizers (PSs) for two-photon-activated photodynamic therapy (TPA-PDT). The PSs, doped into the nano-channels of the mesoporous silica shell, can be efficiently excited via intra-particle plasmonic resonance energy transfer from the encased two-photon excited gold nanorod and further generates cytotoxic singlet oxygen for cancer eradication. In addition, due to the mechanical support provided by encapsulating mesoporous silica matrix against thermal deformation, the two-photon luminescence stability of GNRs was significantly improved; after 100 seconds of 800 nm repetitive laser pulse with the 30 times higher than average power for imaging acquisition, MS-GNR luminescence intensity exhibited ~260% better resistance to deformation than that of the uncoated gold nanorods. These results strongly suggest that MS-GNRs with embedded PSs might provide a promising photodynamic therapy for the treatment of deeply situated cancers via plasmonic resonance energy transfer. Ivyspring International Publisher 2014-05-30 /pmc/articles/PMC4063978/ /pubmed/24955141 http://dx.doi.org/10.7150/thno.8934 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Chen, Nai-Tzu
Tang, Kuo-Chun
Chung, Ming-Fang
Cheng, Shih-Hsun
Huang, Ching-Mao
Chu, Chia-Hui
Chou, Pi-Tai
Souris, Jeffrey S.
Chen, Chin-Tu
Mou, Chung-Yuan
Lo, Leu-Wei
Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title_full Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title_fullStr Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title_full_unstemmed Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title_short Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy
title_sort enhanced plasmonic resonance energy transfer in mesoporous silica-encased gold nanorod for two-photon-activated photodynamic therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063978/
https://www.ncbi.nlm.nih.gov/pubmed/24955141
http://dx.doi.org/10.7150/thno.8934
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