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Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone

The optimum condition of acid hydrolysis for hydroxyapatite extraction from bigeye snapper (Priancanthus tayenus) bone and the effects of extraction time (10–60 min) and HCl concentration (2.0–5.0% w/v) on yield and hydroxyapatite properties were determined. The optimum extracted condition was found...

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Autores principales: Jindapon, Nunnuth, Klinmalai, Phatthranit, Surayot, Utoomporn, Tanadchangsaeng, Nuttapol, Pichaiaukrit, Woradej, Phimolsiripol, Yuthana, Vichasilp, Chaluntorn, Wangtueai, Sutee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917361/
https://www.ncbi.nlm.nih.gov/pubmed/36769139
http://dx.doi.org/10.3390/ijms24032776
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author Jindapon, Nunnuth
Klinmalai, Phatthranit
Surayot, Utoomporn
Tanadchangsaeng, Nuttapol
Pichaiaukrit, Woradej
Phimolsiripol, Yuthana
Vichasilp, Chaluntorn
Wangtueai, Sutee
author_facet Jindapon, Nunnuth
Klinmalai, Phatthranit
Surayot, Utoomporn
Tanadchangsaeng, Nuttapol
Pichaiaukrit, Woradej
Phimolsiripol, Yuthana
Vichasilp, Chaluntorn
Wangtueai, Sutee
author_sort Jindapon, Nunnuth
collection PubMed
description The optimum condition of acid hydrolysis for hydroxyapatite extraction from bigeye snapper (Priancanthus tayenus) bone and the effects of extraction time (10–60 min) and HCl concentration (2.0–5.0% w/v) on yield and hydroxyapatite properties were determined. The optimum extracted condition was found using 5% HCl for 60 min, which was 13.4% yield; 19.8 g/100 g Ca content; 9.6 g/100 g P content; 2.1 Ca/P ratio; L*, a*, b*; and ΔE as 84.5, 2.8, 16.5, and 15.6, respectively. The using of 5% NaOH solution was optimum for hydroxyapatite precipitation from the extracted solution. The characteristic and biological properties of the obtained hydroxyapatite were studied. Fourier transform infrared spectroscopy and X-ray diffraction results showed a good comparison between the extracted and commercial hydroxyapatite. The microstructure of the extracted hydroxyapatite from a scanning electron microscope showed an irregular and flat-plate shape, large surface area, and roughness. The extracted hydroxyapatite was non- and low-cytotoxicity at a concentration of 50 and 100–400 µg/mL, respectively. Bovine serum albumin (BSA) adsorption and desorption of hydroxyapatite was studied. An increasing BSA concentration, hydroxyapatite amount, and adsorption time significantly increased protein adsorption on hydroxyapatite. Protein desorption from BSA-loaded hydroxyapatite showed an increase of release initially in the first 4 days and became a steady release rate until 14 days.
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spelling pubmed-99173612023-02-11 Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone Jindapon, Nunnuth Klinmalai, Phatthranit Surayot, Utoomporn Tanadchangsaeng, Nuttapol Pichaiaukrit, Woradej Phimolsiripol, Yuthana Vichasilp, Chaluntorn Wangtueai, Sutee Int J Mol Sci Article The optimum condition of acid hydrolysis for hydroxyapatite extraction from bigeye snapper (Priancanthus tayenus) bone and the effects of extraction time (10–60 min) and HCl concentration (2.0–5.0% w/v) on yield and hydroxyapatite properties were determined. The optimum extracted condition was found using 5% HCl for 60 min, which was 13.4% yield; 19.8 g/100 g Ca content; 9.6 g/100 g P content; 2.1 Ca/P ratio; L*, a*, b*; and ΔE as 84.5, 2.8, 16.5, and 15.6, respectively. The using of 5% NaOH solution was optimum for hydroxyapatite precipitation from the extracted solution. The characteristic and biological properties of the obtained hydroxyapatite were studied. Fourier transform infrared spectroscopy and X-ray diffraction results showed a good comparison between the extracted and commercial hydroxyapatite. The microstructure of the extracted hydroxyapatite from a scanning electron microscope showed an irregular and flat-plate shape, large surface area, and roughness. The extracted hydroxyapatite was non- and low-cytotoxicity at a concentration of 50 and 100–400 µg/mL, respectively. Bovine serum albumin (BSA) adsorption and desorption of hydroxyapatite was studied. An increasing BSA concentration, hydroxyapatite amount, and adsorption time significantly increased protein adsorption on hydroxyapatite. Protein desorption from BSA-loaded hydroxyapatite showed an increase of release initially in the first 4 days and became a steady release rate until 14 days. MDPI 2023-02-01 /pmc/articles/PMC9917361/ /pubmed/36769139 http://dx.doi.org/10.3390/ijms24032776 Text en © 2023 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
Jindapon, Nunnuth
Klinmalai, Phatthranit
Surayot, Utoomporn
Tanadchangsaeng, Nuttapol
Pichaiaukrit, Woradej
Phimolsiripol, Yuthana
Vichasilp, Chaluntorn
Wangtueai, Sutee
Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title_full Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title_fullStr Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title_full_unstemmed Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title_short Preparation, Characterization, and Biological Properties of Hydroxyapatite from Bigeye Snapper (Priancanthus tayenus) Bone
title_sort preparation, characterization, and biological properties of hydroxyapatite from bigeye snapper (priancanthus tayenus) bone
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917361/
https://www.ncbi.nlm.nih.gov/pubmed/36769139
http://dx.doi.org/10.3390/ijms24032776
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