Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications
One new, promising approach in the medical field is represented by hydroxyapatite doped with luminescent materials for biomedical luminescence imaging. The use of hydroxyapatite-based luminescent materials is an interesting area of research because of the attractive characteristics of such materials...
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doaj-98dd702af36e40c0b6161f7dd39a48812020-11-25T00:19:01ZengMDPI AGNanomaterials2079-49912019-02-019223910.3390/nano9020239nano9020239Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical ApplicationsIonela Andreea Neacsu0Alexandra Elena Stoica1Bogdan Stefan Vasile2Ecaterina Andronescu3Faculty of Applied Chemistry and Materials Science, Politehnica University of Bucharest, 1-7 Polizu Street, Bucharest 011061, RomaniaFaculty of Applied Chemistry and Materials Science, Politehnica University of Bucharest, 1-7 Polizu Street, Bucharest 011061, RomaniaFaculty of Applied Chemistry and Materials Science, Politehnica University of Bucharest, 1-7 Polizu Street, Bucharest 011061, RomaniaFaculty of Applied Chemistry and Materials Science, Politehnica University of Bucharest, 1-7 Polizu Street, Bucharest 011061, RomaniaOne new, promising approach in the medical field is represented by hydroxyapatite doped with luminescent materials for biomedical luminescence imaging. The use of hydroxyapatite-based luminescent materials is an interesting area of research because of the attractive characteristics of such materials, which include biodegradability, bioactivity, biocompatibility, osteoconductivity, non-toxicity, and their non-inflammatory nature, as well their accessibility for surface adaptation. It is well known that hydroxyapatite, the predominant inorganic component of bones, serves a substantial role in tissue engineering, drug and gene delivery, and many other biomedical areas. Hydroxyapatite, to the detriment of other host matrices, has attracted substantial attention for its ability to bind to luminescent materials with high efficiency. Its capacity to integrate a large assortment of substitutions for Ca<sup>2+</sup>, PO<sub>4</sub><sup>3−</sup>, and/or OH<sup>−</sup> ions is attributed to the versatility of its apatite structure. This paper summarizes the most recently developed fluorescent materials based on hydroxyapatite, which use rare earth elements (REEs) as dopants, such as terbium (Tb<sup>3+</sup>), erbium (Er<sup>3+</sup>), europium (Eu<sup>3+</sup>), lanthanum (La<sup>3+</sup>), or dysprosium (Dy<sup>3+</sup>), that have been developed in the biomedical field.https://www.mdpi.com/2079-4991/9/2/239luminescent materialshydroxyapatitebioimagingrare earth elements |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ionela Andreea Neacsu Alexandra Elena Stoica Bogdan Stefan Vasile Ecaterina Andronescu |
spellingShingle |
Ionela Andreea Neacsu Alexandra Elena Stoica Bogdan Stefan Vasile Ecaterina Andronescu Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications Nanomaterials luminescent materials hydroxyapatite bioimaging rare earth elements |
author_facet |
Ionela Andreea Neacsu Alexandra Elena Stoica Bogdan Stefan Vasile Ecaterina Andronescu |
author_sort |
Ionela Andreea Neacsu |
title |
Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications |
title_short |
Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications |
title_full |
Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications |
title_fullStr |
Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications |
title_full_unstemmed |
Luminescent Hydroxyapatite Doped with Rare Earth Elements for Biomedical Applications |
title_sort |
luminescent hydroxyapatite doped with rare earth elements for biomedical applications |
publisher |
MDPI AG |
series |
Nanomaterials |
issn |
2079-4991 |
publishDate |
2019-02-01 |
description |
One new, promising approach in the medical field is represented by hydroxyapatite doped with luminescent materials for biomedical luminescence imaging. The use of hydroxyapatite-based luminescent materials is an interesting area of research because of the attractive characteristics of such materials, which include biodegradability, bioactivity, biocompatibility, osteoconductivity, non-toxicity, and their non-inflammatory nature, as well their accessibility for surface adaptation. It is well known that hydroxyapatite, the predominant inorganic component of bones, serves a substantial role in tissue engineering, drug and gene delivery, and many other biomedical areas. Hydroxyapatite, to the detriment of other host matrices, has attracted substantial attention for its ability to bind to luminescent materials with high efficiency. Its capacity to integrate a large assortment of substitutions for Ca<sup>2+</sup>, PO<sub>4</sub><sup>3−</sup>, and/or OH<sup>−</sup> ions is attributed to the versatility of its apatite structure. This paper summarizes the most recently developed fluorescent materials based on hydroxyapatite, which use rare earth elements (REEs) as dopants, such as terbium (Tb<sup>3+</sup>), erbium (Er<sup>3+</sup>), europium (Eu<sup>3+</sup>), lanthanum (La<sup>3+</sup>), or dysprosium (Dy<sup>3+</sup>), that have been developed in the biomedical field. |
topic |
luminescent materials hydroxyapatite bioimaging rare earth elements |
url |
https://www.mdpi.com/2079-4991/9/2/239 |
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