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The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)

Cation-substituted hydroxyapatite (HA), standalone or as a composite (blended with polymers or metals), is currently regarded as a noteworthy candidate material for bone repair/regeneration either in the form of powders, porous scaffolds or coatings for endo-osseous dental and orthopaedic implants....

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Autores principales: Chirică, Iuliana Maria, Enciu, Ana-Maria, Tite, Teddy, Dudău, Maria, Albulescu, Lucian, Iconaru, Simona Liliana, Predoi, Daniela, Pasuk, Iuliana, Enculescu, Monica, Radu, Cristian, Mihalcea, Cătălina Gabriela, Popa, Adrian-Claudiu, Rusu, Nicoleta, Niţă, Sultana, Tănase, Cristiana, Stan, George E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305395/
https://www.ncbi.nlm.nih.gov/pubmed/34300727
http://dx.doi.org/10.3390/ma14143808
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author Chirică, Iuliana Maria
Enciu, Ana-Maria
Tite, Teddy
Dudău, Maria
Albulescu, Lucian
Iconaru, Simona Liliana
Predoi, Daniela
Pasuk, Iuliana
Enculescu, Monica
Radu, Cristian
Mihalcea, Cătălina Gabriela
Popa, Adrian-Claudiu
Rusu, Nicoleta
Niţă, Sultana
Tănase, Cristiana
Stan, George E.
author_facet Chirică, Iuliana Maria
Enciu, Ana-Maria
Tite, Teddy
Dudău, Maria
Albulescu, Lucian
Iconaru, Simona Liliana
Predoi, Daniela
Pasuk, Iuliana
Enculescu, Monica
Radu, Cristian
Mihalcea, Cătălina Gabriela
Popa, Adrian-Claudiu
Rusu, Nicoleta
Niţă, Sultana
Tănase, Cristiana
Stan, George E.
author_sort Chirică, Iuliana Maria
collection PubMed
description Cation-substituted hydroxyapatite (HA), standalone or as a composite (blended with polymers or metals), is currently regarded as a noteworthy candidate material for bone repair/regeneration either in the form of powders, porous scaffolds or coatings for endo-osseous dental and orthopaedic implants. As a response to the numerous contradictions reported in literature, this work presents, in one study, the physico-chemical properties and the cytocompatibility response of single cation-doped (Ce, Mg, Sr or Zn) HA nanopowders in a wide concentration range (0.5–5 at.%). The modification of composition, morphology, and structure was multiparametrically monitored via energy dispersive X-ray, X-ray photoelectron, Fourier-transform infrared and micro-Raman spectroscopy methods, as well as by transmission electron microscopy and X-ray diffraction. From a compositional point of view, Ce and Sr were well-incorporated in HA, while slight and pronounced deviations were observed for Mg and Zn, respectively. The change of the lattice parameters, crystallite size, and substituting cation occupation factors either in the Ca(I) or Ca(II) sites were further determined. Sr produced the most important HA structural changes. The in vitro biological performance was evaluated by the (i) determination of leached therapeutic cations (by inductively coupled plasma mass spectrometry) and (ii) assessment of cell behaviour by both conventional assays (e.g., proliferation—3-(4,5-dimethyl thiazol-2-yl) 5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium assay; cytotoxicity—lactate dehydrogenase release assay) and, for the first time, real-time cell analysis (RTCA). Three cell lines were employed: fibroblast, osteoblast, and endothelial. When monophasic, the substituted HA supported the cells’ viability and proliferation without signs of toxicity. The RTCA results indicate the excellent adherence of cells. The study strived to offer a perspective on the behaviour of Ce-, Mg-, Sr-, or Zn-substituted HAs and to deliver a well-encompassing viewpoint on their effects. This can be highly important for the future development of such bioceramics, paving the road toward the identification of candidates with highly promising therapeutic effects.
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spelling pubmed-83053952021-07-25 The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%) Chirică, Iuliana Maria Enciu, Ana-Maria Tite, Teddy Dudău, Maria Albulescu, Lucian Iconaru, Simona Liliana Predoi, Daniela Pasuk, Iuliana Enculescu, Monica Radu, Cristian Mihalcea, Cătălina Gabriela Popa, Adrian-Claudiu Rusu, Nicoleta Niţă, Sultana Tănase, Cristiana Stan, George E. Materials (Basel) Article Cation-substituted hydroxyapatite (HA), standalone or as a composite (blended with polymers or metals), is currently regarded as a noteworthy candidate material for bone repair/regeneration either in the form of powders, porous scaffolds or coatings for endo-osseous dental and orthopaedic implants. As a response to the numerous contradictions reported in literature, this work presents, in one study, the physico-chemical properties and the cytocompatibility response of single cation-doped (Ce, Mg, Sr or Zn) HA nanopowders in a wide concentration range (0.5–5 at.%). The modification of composition, morphology, and structure was multiparametrically monitored via energy dispersive X-ray, X-ray photoelectron, Fourier-transform infrared and micro-Raman spectroscopy methods, as well as by transmission electron microscopy and X-ray diffraction. From a compositional point of view, Ce and Sr were well-incorporated in HA, while slight and pronounced deviations were observed for Mg and Zn, respectively. The change of the lattice parameters, crystallite size, and substituting cation occupation factors either in the Ca(I) or Ca(II) sites were further determined. Sr produced the most important HA structural changes. The in vitro biological performance was evaluated by the (i) determination of leached therapeutic cations (by inductively coupled plasma mass spectrometry) and (ii) assessment of cell behaviour by both conventional assays (e.g., proliferation—3-(4,5-dimethyl thiazol-2-yl) 5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium assay; cytotoxicity—lactate dehydrogenase release assay) and, for the first time, real-time cell analysis (RTCA). Three cell lines were employed: fibroblast, osteoblast, and endothelial. When monophasic, the substituted HA supported the cells’ viability and proliferation without signs of toxicity. The RTCA results indicate the excellent adherence of cells. The study strived to offer a perspective on the behaviour of Ce-, Mg-, Sr-, or Zn-substituted HAs and to deliver a well-encompassing viewpoint on their effects. This can be highly important for the future development of such bioceramics, paving the road toward the identification of candidates with highly promising therapeutic effects. MDPI 2021-07-08 /pmc/articles/PMC8305395/ /pubmed/34300727 http://dx.doi.org/10.3390/ma14143808 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chirică, Iuliana Maria
Enciu, Ana-Maria
Tite, Teddy
Dudău, Maria
Albulescu, Lucian
Iconaru, Simona Liliana
Predoi, Daniela
Pasuk, Iuliana
Enculescu, Monica
Radu, Cristian
Mihalcea, Cătălina Gabriela
Popa, Adrian-Claudiu
Rusu, Nicoleta
Niţă, Sultana
Tănase, Cristiana
Stan, George E.
The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title_full The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title_fullStr The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title_full_unstemmed The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title_short The Physico-Chemical Properties and Exploratory Real-Time Cell Analysis of Hydroxyapatite Nanopowders Substituted with Ce, Mg, Sr, and Zn (0.5–5 at.%)
title_sort physico-chemical properties and exploratory real-time cell analysis of hydroxyapatite nanopowders substituted with ce, mg, sr, and zn (0.5–5 at.%)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305395/
https://www.ncbi.nlm.nih.gov/pubmed/34300727
http://dx.doi.org/10.3390/ma14143808
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