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In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes

We have successfully synthesized SiO(2)@(Y(0.5)Gd(0.45)Eu(0.05))(2)O(3) nanocomposites as a potential dual-modality nanoprobe for molecular imaging in vitro. However, their immunotoxicity assessment in vivo remains unknown. In this article, the in vitro biocompatibility of our dual-modality nanoprob...

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Detalles Bibliográficos
Autores principales: Tian, Xiumei, Li, Ermao, Yang, Fanwen, Peng, Ye, Zhu, Jixiang, He, Fupo, Chen, Xiaoming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4159817/
https://www.ncbi.nlm.nih.gov/pubmed/25105724
http://dx.doi.org/10.3390/ijms150813649
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author Tian, Xiumei
Li, Ermao
Yang, Fanwen
Peng, Ye
Zhu, Jixiang
He, Fupo
Chen, Xiaoming
author_facet Tian, Xiumei
Li, Ermao
Yang, Fanwen
Peng, Ye
Zhu, Jixiang
He, Fupo
Chen, Xiaoming
author_sort Tian, Xiumei
collection PubMed
description We have successfully synthesized SiO(2)@(Y(0.5)Gd(0.45)Eu(0.05))(2)O(3) nanocomposites as a potential dual-modality nanoprobe for molecular imaging in vitro. However, their immunotoxicity assessment in vivo remains unknown. In this article, the in vitro biocompatibility of our dual-modality nanoprobes was assayed in terms of cell viability and apoptosis. In vivo immunotoxicity was investigated by monitoring the generation of reactive oxygen species (ROS), cluster of differentiation (CD) markers and cytokines in Balb/c mice. The data show that the in vitro biocompatibility was satisfactory. In addition, the immunotoxicity data revealed there are no significant changes in the expression levels of CD11b and CD71 between the nanoprobe group and the Gd in a diethylenetriaminepentaacetic acid (DTPA) chelator (Gd-DTPA) group 24 h after injection in Balb/c mice (p > 0.05). Importantly, there are significant differences in the expression levels of CD206 and CD25 as well as the secretion of IL-4 and the generation of ROS 24 h after injection (p < 0.05). Transmission electron microscopy (TEM) images showed that few nanoprobes were localized in the phagosomes of liver and lung. In conclusion, the toxic effects of our nanoprobes may mainly result from the aggregation of particles in phagosomes. This accumulation may damage the microstructure of the cells and generate oxidative stress reactions that further stimulate the immune response. Therefore, it is important to evaluate the in vivo immunotoxicity of these rare earth-based biomaterials at the molecular level before molecular imaging in vivo.
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spelling pubmed-41598172014-09-18 In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes Tian, Xiumei Li, Ermao Yang, Fanwen Peng, Ye Zhu, Jixiang He, Fupo Chen, Xiaoming Int J Mol Sci Article We have successfully synthesized SiO(2)@(Y(0.5)Gd(0.45)Eu(0.05))(2)O(3) nanocomposites as a potential dual-modality nanoprobe for molecular imaging in vitro. However, their immunotoxicity assessment in vivo remains unknown. In this article, the in vitro biocompatibility of our dual-modality nanoprobes was assayed in terms of cell viability and apoptosis. In vivo immunotoxicity was investigated by monitoring the generation of reactive oxygen species (ROS), cluster of differentiation (CD) markers and cytokines in Balb/c mice. The data show that the in vitro biocompatibility was satisfactory. In addition, the immunotoxicity data revealed there are no significant changes in the expression levels of CD11b and CD71 between the nanoprobe group and the Gd in a diethylenetriaminepentaacetic acid (DTPA) chelator (Gd-DTPA) group 24 h after injection in Balb/c mice (p > 0.05). Importantly, there are significant differences in the expression levels of CD206 and CD25 as well as the secretion of IL-4 and the generation of ROS 24 h after injection (p < 0.05). Transmission electron microscopy (TEM) images showed that few nanoprobes were localized in the phagosomes of liver and lung. In conclusion, the toxic effects of our nanoprobes may mainly result from the aggregation of particles in phagosomes. This accumulation may damage the microstructure of the cells and generate oxidative stress reactions that further stimulate the immune response. Therefore, it is important to evaluate the in vivo immunotoxicity of these rare earth-based biomaterials at the molecular level before molecular imaging in vivo. MDPI 2014-08-07 /pmc/articles/PMC4159817/ /pubmed/25105724 http://dx.doi.org/10.3390/ijms150813649 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Tian, Xiumei
Li, Ermao
Yang, Fanwen
Peng, Ye
Zhu, Jixiang
He, Fupo
Chen, Xiaoming
In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title_full In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title_fullStr In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title_full_unstemmed In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title_short In Vivo Immunotoxicity of SiO2@(Y0.5Gd0.45Eu0.05)2O3 as Dual-Modality Nanoprobes
title_sort in vivo immunotoxicity of sio2@(y0.5gd0.45eu0.05)2o3 as dual-modality nanoprobes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4159817/
https://www.ncbi.nlm.nih.gov/pubmed/25105724
http://dx.doi.org/10.3390/ijms150813649
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