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Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography

Multimodal imaging, integrating several modalities including down- and up-conversion luminescence, T(1)- and T(2)(T(2)*)-weighted MRI, and CT contrasting in one system, is very promising for improved diagnosis of severe medical disorders. To reach the goal, it is necessary to develop suitable nanopa...

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Autores principales: Shapoval, Oleksandr, Oleksa, Viktoriia, Šlouf, Miroslav, Lobaz, Volodymyr, Trhlíková, Olga, Filipová, Marcela, Janoušková, Olga, Engstová, Hana, Pankrác, Jan, Modrý, Adam, Herynek, Vít, Ježek, Petr, Šefc, Luděk, Horák, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830756/
https://www.ncbi.nlm.nih.gov/pubmed/33467188
http://dx.doi.org/10.3390/nano11010230
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author Shapoval, Oleksandr
Oleksa, Viktoriia
Šlouf, Miroslav
Lobaz, Volodymyr
Trhlíková, Olga
Filipová, Marcela
Janoušková, Olga
Engstová, Hana
Pankrác, Jan
Modrý, Adam
Herynek, Vít
Ježek, Petr
Šefc, Luděk
Horák, Daniel
author_facet Shapoval, Oleksandr
Oleksa, Viktoriia
Šlouf, Miroslav
Lobaz, Volodymyr
Trhlíková, Olga
Filipová, Marcela
Janoušková, Olga
Engstová, Hana
Pankrác, Jan
Modrý, Adam
Herynek, Vít
Ježek, Petr
Šefc, Luděk
Horák, Daniel
author_sort Shapoval, Oleksandr
collection PubMed
description Multimodal imaging, integrating several modalities including down- and up-conversion luminescence, T(1)- and T(2)(T(2)*)-weighted MRI, and CT contrasting in one system, is very promising for improved diagnosis of severe medical disorders. To reach the goal, it is necessary to develop suitable nanoparticles that are highly colloidally stable in biologically relevant media. Here, hydrophilic poly(N,N-dimethylacrylamide-N-acryloylglycine methyl ester)-alendronate-[P(DMA-AGME)-Ale]-coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) nanoparticles were synthesized by a coprecipitation method in ethylene glycol (EG) followed by coating with the polymer. The particles were tho-roughly characterized by a dynamic light scattering (DLS), transmission electron microscopy (TEM), Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), X-ray energy dispersive spectroscopy (EDAX), selected area electron diffraction (SAED), elemental ana-lysis and fluorescence spectroscopy. Aqueous particle dispersions exhibited excellent colloidal stability in water and physiological buffers. In vitro toxicity assessments suggested no or only mild toxicity of the surface-engineered Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) particles in a wide range of concentrations. Internalization of the particles by several types of cells, including HeLa, HF, HepG2, and INS, was confirmed by a down- and up-conversion confocal microscopy. Newly developed particles thus proved to be an efficient contrast agent for fluorescence imaging, T(1)- and T(2)(T(2)*)-weighted magnetic resonance imaging (MRI), and computed tomography (CT).
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spelling pubmed-78307562021-01-26 Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography Shapoval, Oleksandr Oleksa, Viktoriia Šlouf, Miroslav Lobaz, Volodymyr Trhlíková, Olga Filipová, Marcela Janoušková, Olga Engstová, Hana Pankrác, Jan Modrý, Adam Herynek, Vít Ježek, Petr Šefc, Luděk Horák, Daniel Nanomaterials (Basel) Article Multimodal imaging, integrating several modalities including down- and up-conversion luminescence, T(1)- and T(2)(T(2)*)-weighted MRI, and CT contrasting in one system, is very promising for improved diagnosis of severe medical disorders. To reach the goal, it is necessary to develop suitable nanoparticles that are highly colloidally stable in biologically relevant media. Here, hydrophilic poly(N,N-dimethylacrylamide-N-acryloylglycine methyl ester)-alendronate-[P(DMA-AGME)-Ale]-coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) nanoparticles were synthesized by a coprecipitation method in ethylene glycol (EG) followed by coating with the polymer. The particles were tho-roughly characterized by a dynamic light scattering (DLS), transmission electron microscopy (TEM), Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), X-ray energy dispersive spectroscopy (EDAX), selected area electron diffraction (SAED), elemental ana-lysis and fluorescence spectroscopy. Aqueous particle dispersions exhibited excellent colloidal stability in water and physiological buffers. In vitro toxicity assessments suggested no or only mild toxicity of the surface-engineered Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) particles in a wide range of concentrations. Internalization of the particles by several types of cells, including HeLa, HF, HepG2, and INS, was confirmed by a down- and up-conversion confocal microscopy. Newly developed particles thus proved to be an efficient contrast agent for fluorescence imaging, T(1)- and T(2)(T(2)*)-weighted magnetic resonance imaging (MRI), and computed tomography (CT). MDPI 2021-01-16 /pmc/articles/PMC7830756/ /pubmed/33467188 http://dx.doi.org/10.3390/nano11010230 Text en © 2021 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shapoval, Oleksandr
Oleksa, Viktoriia
Šlouf, Miroslav
Lobaz, Volodymyr
Trhlíková, Olga
Filipová, Marcela
Janoušková, Olga
Engstová, Hana
Pankrác, Jan
Modrý, Adam
Herynek, Vít
Ježek, Petr
Šefc, Luděk
Horák, Daniel
Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title_full Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title_fullStr Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title_full_unstemmed Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title_short Colloidally Stable P(DMA-AGME)-Ale-Coated Gd(Tb)F(3):Tb(3+)(Gd(3+)),Yb(3+),Nd(3+) Nanoparticles as a Multimodal Contrast Agent for Down- and Upconversion Luminescence, Magnetic Resonance Imaging, and Computed Tomography
title_sort colloidally stable p(dma-agme)-ale-coated gd(tb)f(3):tb(3+)(gd(3+)),yb(3+),nd(3+) nanoparticles as a multimodal contrast agent for down- and upconversion luminescence, magnetic resonance imaging, and computed tomography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830756/
https://www.ncbi.nlm.nih.gov/pubmed/33467188
http://dx.doi.org/10.3390/nano11010230
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