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Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility

Nanomedicine covers the application of nanotechnologies in medicine. Of particular interest is the setup of highly-cytocompatible nanoparticles for use as drug carriers and/or for medical imaging. In this context, luminescent nanoparticles are appealing nanodevices with great potential for imaging o...

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Autores principales: Gómez-Morales, Jaime, Verdugo-Escamilla, Cristóbal, Fernández-Penas, Raquel, Parra-Milla, Carmen María, Drouet, Christophe, Maube-Bosc, Françoise, Oltolina, Francesca, Prat, Maria, Fernández-Sánchez, Jorge Fernando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077401/
https://www.ncbi.nlm.nih.gov/pubmed/35541482
http://dx.doi.org/10.1039/c7ra12536d
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author Gómez-Morales, Jaime
Verdugo-Escamilla, Cristóbal
Fernández-Penas, Raquel
Parra-Milla, Carmen María
Drouet, Christophe
Maube-Bosc, Françoise
Oltolina, Francesca
Prat, Maria
Fernández-Sánchez, Jorge Fernando
author_facet Gómez-Morales, Jaime
Verdugo-Escamilla, Cristóbal
Fernández-Penas, Raquel
Parra-Milla, Carmen María
Drouet, Christophe
Maube-Bosc, Françoise
Oltolina, Francesca
Prat, Maria
Fernández-Sánchez, Jorge Fernando
author_sort Gómez-Morales, Jaime
collection PubMed
description Nanomedicine covers the application of nanotechnologies in medicine. Of particular interest is the setup of highly-cytocompatible nanoparticles for use as drug carriers and/or for medical imaging. In this context, luminescent nanoparticles are appealing nanodevices with great potential for imaging of tumor or other targetable cells, and several strategies are under investigation. Biomimetic apatite nanoparticles represent candidates of choice in nanomedicine due to their high intrinsic biocompatibility and to the highly accommodative properties of the apatite structure, allowing many ionic substitutions. In this work, the preparation of biomimetic (bone-like) citrate-coated carbonated apatite nanoparticles doped with europium ions is explored using the citrate-based thermal decomplexing approach. The technique allows the preparation of the single apatitic phase with nanosized dimensions only at Eu(3+) doping concentrations ≤0.01 M at some timepoints. The presence of the citrate coating on the particle surface (as found in bone nanoapatites) and Eu(3+) substituting Ca(2+) is beneficial for the preparation of stable suspensions at physiological pH, as witnessed by the ζ-potential versus pH characterizations. The sensitized luminescence features of the solid particles, as a function of the Eu(3+) doping concentrations and the maturation times, have been thoroughly investigated, while those of particles in suspensions have been investigated at different pHs, ionic strengths and temperatures. Their cytocompatibility is illustrated in vitro on two selected cell types, the GTL-16 human carcinoma cells and the m17.ASC murine mesenchymal stem cells. This contribution shows the potentiality of the thermal decomplexing method for the setup of luminescent biomimetic apatite nanoprobes with controlled features for use in bioimaging.
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spelling pubmed-90774012022-05-09 Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility Gómez-Morales, Jaime Verdugo-Escamilla, Cristóbal Fernández-Penas, Raquel Parra-Milla, Carmen María Drouet, Christophe Maube-Bosc, Françoise Oltolina, Francesca Prat, Maria Fernández-Sánchez, Jorge Fernando RSC Adv Chemistry Nanomedicine covers the application of nanotechnologies in medicine. Of particular interest is the setup of highly-cytocompatible nanoparticles for use as drug carriers and/or for medical imaging. In this context, luminescent nanoparticles are appealing nanodevices with great potential for imaging of tumor or other targetable cells, and several strategies are under investigation. Biomimetic apatite nanoparticles represent candidates of choice in nanomedicine due to their high intrinsic biocompatibility and to the highly accommodative properties of the apatite structure, allowing many ionic substitutions. In this work, the preparation of biomimetic (bone-like) citrate-coated carbonated apatite nanoparticles doped with europium ions is explored using the citrate-based thermal decomplexing approach. The technique allows the preparation of the single apatitic phase with nanosized dimensions only at Eu(3+) doping concentrations ≤0.01 M at some timepoints. The presence of the citrate coating on the particle surface (as found in bone nanoapatites) and Eu(3+) substituting Ca(2+) is beneficial for the preparation of stable suspensions at physiological pH, as witnessed by the ζ-potential versus pH characterizations. The sensitized luminescence features of the solid particles, as a function of the Eu(3+) doping concentrations and the maturation times, have been thoroughly investigated, while those of particles in suspensions have been investigated at different pHs, ionic strengths and temperatures. Their cytocompatibility is illustrated in vitro on two selected cell types, the GTL-16 human carcinoma cells and the m17.ASC murine mesenchymal stem cells. This contribution shows the potentiality of the thermal decomplexing method for the setup of luminescent biomimetic apatite nanoprobes with controlled features for use in bioimaging. The Royal Society of Chemistry 2018-01-10 /pmc/articles/PMC9077401/ /pubmed/35541482 http://dx.doi.org/10.1039/c7ra12536d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Gómez-Morales, Jaime
Verdugo-Escamilla, Cristóbal
Fernández-Penas, Raquel
Parra-Milla, Carmen María
Drouet, Christophe
Maube-Bosc, Françoise
Oltolina, Francesca
Prat, Maria
Fernández-Sánchez, Jorge Fernando
Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title_full Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title_fullStr Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title_full_unstemmed Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title_short Luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
title_sort luminescent biomimetic citrate-coated europium-doped carbonated apatite nanoparticles for use in bioimaging: physico-chemistry and cytocompatibility
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077401/
https://www.ncbi.nlm.nih.gov/pubmed/35541482
http://dx.doi.org/10.1039/c7ra12536d
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