Cargando…

Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows

Broadband near‐infrared (NIR) photothermal and photoacoustic agents covering from the first NIR (NIR‐I) to the second NIR (NIR‐II) biowindow are of great significance for imaging and therapy of cancers. In this work, ultrathin two‐dimensional plasmonic PtAg nanosheets are discovered with strong broa...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Ying, Shen, Qi, Li, Qi, He, Panpan, Li, Jinyan, Huang, Feng, Wang, Jing, Duan, Yefan, Shen, Chuang, Saleem, Faisal, Luo, Zhimin, Wang, Lianhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425935/
https://www.ncbi.nlm.nih.gov/pubmed/34247445
http://dx.doi.org/10.1002/advs.202100386
_version_ 1783749943585931264
author Zhang, Ying
Shen, Qi
Li, Qi
He, Panpan
Li, Jinyan
Huang, Feng
Wang, Jing
Duan, Yefan
Shen, Chuang
Saleem, Faisal
Luo, Zhimin
Wang, Lianhui
author_facet Zhang, Ying
Shen, Qi
Li, Qi
He, Panpan
Li, Jinyan
Huang, Feng
Wang, Jing
Duan, Yefan
Shen, Chuang
Saleem, Faisal
Luo, Zhimin
Wang, Lianhui
author_sort Zhang, Ying
collection PubMed
description Broadband near‐infrared (NIR) photothermal and photoacoustic agents covering from the first NIR (NIR‐I) to the second NIR (NIR‐II) biowindow are of great significance for imaging and therapy of cancers. In this work, ultrathin two‐dimensional plasmonic PtAg nanosheets are discovered with strong broadband light absorption from NIR‐I to NIR‐II biowindow, which exhibit outstanding photothermal and photoacoustic effects under both 785 and 1064 nm lasers. Photothermal conversion efficiencies (PCEs) of PtAg nanosheets reach 19.2% under 785 nm laser and 45.7% under 1064 nm laser. The PCE under 1064 nm laser is higher than those of most reported inorganic NIR‐II photothermal nanoagents. After functionalization with folic acid modified thiol‐poly(ethylene glycol) (SH‐PEG‐FA), PtAg nanosheets endowed with good biocompatibility and 4T1 tumor‐targeted function give high performances for photoacoustic imaging (PAI) and photothermal therapy (PTT) in vivo under both 785 and 1064 nm lasers. The effective ablation of tumors in mice can be realized without side effects and tumor metastasis by PAI‐guided PTT of PtAg nanosheets under 785 or 1064 nm laser. The results demonstrate that the prepared PtAg nanosheets with ultrathin thickness and small size can serve as a promising phototheranostic nanoplatform for PAI‐guided PTT of tumors in both NIR‐I and NIR‐II biowindows.
format Online
Article
Text
id pubmed-8425935
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-84259352021-09-13 Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows Zhang, Ying Shen, Qi Li, Qi He, Panpan Li, Jinyan Huang, Feng Wang, Jing Duan, Yefan Shen, Chuang Saleem, Faisal Luo, Zhimin Wang, Lianhui Adv Sci (Weinh) Research Articles Broadband near‐infrared (NIR) photothermal and photoacoustic agents covering from the first NIR (NIR‐I) to the second NIR (NIR‐II) biowindow are of great significance for imaging and therapy of cancers. In this work, ultrathin two‐dimensional plasmonic PtAg nanosheets are discovered with strong broadband light absorption from NIR‐I to NIR‐II biowindow, which exhibit outstanding photothermal and photoacoustic effects under both 785 and 1064 nm lasers. Photothermal conversion efficiencies (PCEs) of PtAg nanosheets reach 19.2% under 785 nm laser and 45.7% under 1064 nm laser. The PCE under 1064 nm laser is higher than those of most reported inorganic NIR‐II photothermal nanoagents. After functionalization with folic acid modified thiol‐poly(ethylene glycol) (SH‐PEG‐FA), PtAg nanosheets endowed with good biocompatibility and 4T1 tumor‐targeted function give high performances for photoacoustic imaging (PAI) and photothermal therapy (PTT) in vivo under both 785 and 1064 nm lasers. The effective ablation of tumors in mice can be realized without side effects and tumor metastasis by PAI‐guided PTT of PtAg nanosheets under 785 or 1064 nm laser. The results demonstrate that the prepared PtAg nanosheets with ultrathin thickness and small size can serve as a promising phototheranostic nanoplatform for PAI‐guided PTT of tumors in both NIR‐I and NIR‐II biowindows. John Wiley and Sons Inc. 2021-07-11 /pmc/articles/PMC8425935/ /pubmed/34247445 http://dx.doi.org/10.1002/advs.202100386 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zhang, Ying
Shen, Qi
Li, Qi
He, Panpan
Li, Jinyan
Huang, Feng
Wang, Jing
Duan, Yefan
Shen, Chuang
Saleem, Faisal
Luo, Zhimin
Wang, Lianhui
Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title_full Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title_fullStr Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title_full_unstemmed Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title_short Ultrathin Two‐Dimensional Plasmonic PtAg Nanosheets for Broadband Phototheranostics in Both NIR‐I and NIR‐II Biowindows
title_sort ultrathin two‐dimensional plasmonic ptag nanosheets for broadband phototheranostics in both nir‐i and nir‐ii biowindows
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425935/
https://www.ncbi.nlm.nih.gov/pubmed/34247445
http://dx.doi.org/10.1002/advs.202100386
work_keys_str_mv AT zhangying ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT shenqi ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT liqi ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT hepanpan ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT lijinyan ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT huangfeng ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT wangjing ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT duanyefan ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT shenchuang ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT saleemfaisal ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT luozhimin ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows
AT wanglianhui ultrathintwodimensionalplasmonicptagnanosheetsforbroadbandphototheranosticsinbothniriandniriibiowindows