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In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites

Near‐infrared (NIR) persistent phosphor ZnGa(2)O(4):Cr(3+) (ZGC) has unique deep‐tissue rechargeable afterglow properties. However, the current synthesis leads to agglomerated products with irregular morphologies and wide size distributions. Herein, we report on in vivo rechargeable mesoporous SiO(2...

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Detalles Bibliográficos
Autores principales: Li, Zhanjun, Zhang, Yuanwei, Wu, Xiang, Wu, Xiaoqiong, Maudgal, Rohit, Zhang, Hongwu, Han, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4941782/
https://www.ncbi.nlm.nih.gov/pubmed/27419003
http://dx.doi.org/10.1002/advs.201500001
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author Li, Zhanjun
Zhang, Yuanwei
Wu, Xiang
Wu, Xiaoqiong
Maudgal, Rohit
Zhang, Hongwu
Han, Gang
author_facet Li, Zhanjun
Zhang, Yuanwei
Wu, Xiang
Wu, Xiaoqiong
Maudgal, Rohit
Zhang, Hongwu
Han, Gang
author_sort Li, Zhanjun
collection PubMed
description Near‐infrared (NIR) persistent phosphor ZnGa(2)O(4):Cr(3+) (ZGC) has unique deep‐tissue rechargeable afterglow properties. However, the current synthesis leads to agglomerated products with irregular morphologies and wide size distributions. Herein, we report on in vivo rechargeable mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) (mZGC) afterglow NIR‐emitting nanocomposites that are made by a simple, one‐step mesoporous template method. At less than 600 °C, pores in mesoporous silica nanoparticles (MSNs) act as nanoreactors to generate in situ ZnGa(2)O(4):Cr(3+) NIR‐persistent phosphors. The as‐synthesized mZGC preserves defined size, morphology, and mesoporous nanostructure of the MSNs. The persistent luminescence of the as‐synthesized mZGC is recharged in a simulated deep‐tissue environment (e.g., ≈8 mm pork slab) in vitro by using red light (620 nm). Moreover, mZGC can be repeatedly activated in vivo for persistent luminescence imaging in a live mouse model by using white LED as a light source. Our concept of utilizing mesoporous silica as nanoreactor to fabricate ZGC PL nanoparticles with controllable morphology and preserved porous nanostructure paves a new way to the development and the wide application of deep tissue rechargeable ZGC in photonics and biophotonics.
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spelling pubmed-49417822016-07-12 In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites Li, Zhanjun Zhang, Yuanwei Wu, Xiang Wu, Xiaoqiong Maudgal, Rohit Zhang, Hongwu Han, Gang Adv Sci (Weinh) Full Papers Near‐infrared (NIR) persistent phosphor ZnGa(2)O(4):Cr(3+) (ZGC) has unique deep‐tissue rechargeable afterglow properties. However, the current synthesis leads to agglomerated products with irregular morphologies and wide size distributions. Herein, we report on in vivo rechargeable mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) (mZGC) afterglow NIR‐emitting nanocomposites that are made by a simple, one‐step mesoporous template method. At less than 600 °C, pores in mesoporous silica nanoparticles (MSNs) act as nanoreactors to generate in situ ZnGa(2)O(4):Cr(3+) NIR‐persistent phosphors. The as‐synthesized mZGC preserves defined size, morphology, and mesoporous nanostructure of the MSNs. The persistent luminescence of the as‐synthesized mZGC is recharged in a simulated deep‐tissue environment (e.g., ≈8 mm pork slab) in vitro by using red light (620 nm). Moreover, mZGC can be repeatedly activated in vivo for persistent luminescence imaging in a live mouse model by using white LED as a light source. Our concept of utilizing mesoporous silica as nanoreactor to fabricate ZGC PL nanoparticles with controllable morphology and preserved porous nanostructure paves a new way to the development and the wide application of deep tissue rechargeable ZGC in photonics and biophotonics. John Wiley and Sons Inc. 2015-02-09 /pmc/articles/PMC4941782/ /pubmed/27419003 http://dx.doi.org/10.1002/advs.201500001 Text en © 2015 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Li, Zhanjun
Zhang, Yuanwei
Wu, Xiang
Wu, Xiaoqiong
Maudgal, Rohit
Zhang, Hongwu
Han, Gang
In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title_full In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title_fullStr In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title_full_unstemmed In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title_short In Vivo Repeatedly Charging Near‐Infrared‐Emitting Mesoporous SiO(2)/ZnGa(2)O(4):Cr(3+) Persistent Luminescence Nanocomposites
title_sort in vivo repeatedly charging near‐infrared‐emitting mesoporous sio(2)/znga(2)o(4):cr(3+) persistent luminescence nanocomposites
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4941782/
https://www.ncbi.nlm.nih.gov/pubmed/27419003
http://dx.doi.org/10.1002/advs.201500001
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