Cargando…

Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)

The use of cheaper and recyclable biomaterials (like eggshells) to synthesize high purity hydroxyapatite (HAp) with better properties (small particle size, large surface area and pore volume) for applications (in environmental remediation, bone augmentation and replacement, and drug delivery systems...

Descripción completa

Detalles Bibliográficos
Autores principales: Ibrahim, Abdul-Rauf, Li, Xiangyun, Zhou, Yulan, Huang, Yan, Chen, Wenwen, Wang, Hongtao, Li, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4425061/
https://www.ncbi.nlm.nih.gov/pubmed/25860950
http://dx.doi.org/10.3390/ijms16047960
_version_ 1782370433356529664
author Ibrahim, Abdul-Rauf
Li, Xiangyun
Zhou, Yulan
Huang, Yan
Chen, Wenwen
Wang, Hongtao
Li, Jun
author_facet Ibrahim, Abdul-Rauf
Li, Xiangyun
Zhou, Yulan
Huang, Yan
Chen, Wenwen
Wang, Hongtao
Li, Jun
author_sort Ibrahim, Abdul-Rauf
collection PubMed
description The use of cheaper and recyclable biomaterials (like eggshells) to synthesize high purity hydroxyapatite (HAp) with better properties (small particle size, large surface area and pore volume) for applications (in environmental remediation, bone augmentation and replacement, and drug delivery systems) is vital since high-purity synthetic calcium sources are expensive. In this work, pure and mesoporous HAp nanopowder with large pore volume (1.4 cm(3)/g) and surface area (284.1 m(2)/g) was produced from raw eggshells at room temperature using a simple two-step procedure. The control of precursor droplets could stabilize the pH value of the reaction solution, because of the size of the needle (of the syringe pump used for precursor additions) leading to production of HAp with high surface area and pore size. The as-produced HAp revealed high ibuprofen (as a model drug) loading (1.38 g/g HAp), enhanced dissolution and controllable release of the drug via solute-saturated supercritical carbon dioxide.
format Online
Article
Text
id pubmed-4425061
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-44250612015-05-20 Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2) Ibrahim, Abdul-Rauf Li, Xiangyun Zhou, Yulan Huang, Yan Chen, Wenwen Wang, Hongtao Li, Jun Int J Mol Sci Article The use of cheaper and recyclable biomaterials (like eggshells) to synthesize high purity hydroxyapatite (HAp) with better properties (small particle size, large surface area and pore volume) for applications (in environmental remediation, bone augmentation and replacement, and drug delivery systems) is vital since high-purity synthetic calcium sources are expensive. In this work, pure and mesoporous HAp nanopowder with large pore volume (1.4 cm(3)/g) and surface area (284.1 m(2)/g) was produced from raw eggshells at room temperature using a simple two-step procedure. The control of precursor droplets could stabilize the pH value of the reaction solution, because of the size of the needle (of the syringe pump used for precursor additions) leading to production of HAp with high surface area and pore size. The as-produced HAp revealed high ibuprofen (as a model drug) loading (1.38 g/g HAp), enhanced dissolution and controllable release of the drug via solute-saturated supercritical carbon dioxide. MDPI 2015-04-09 /pmc/articles/PMC4425061/ /pubmed/25860950 http://dx.doi.org/10.3390/ijms16047960 Text en © 2015 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 license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ibrahim, Abdul-Rauf
Li, Xiangyun
Zhou, Yulan
Huang, Yan
Chen, Wenwen
Wang, Hongtao
Li, Jun
Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title_full Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title_fullStr Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title_full_unstemmed Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title_short Synthesis of Spongy-Like Mesoporous Hydroxyapatite from Raw Waste Eggshells for Enhanced Dissolution of Ibuprofen Loaded via Supercritical CO(2)
title_sort synthesis of spongy-like mesoporous hydroxyapatite from raw waste eggshells for enhanced dissolution of ibuprofen loaded via supercritical co(2)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4425061/
https://www.ncbi.nlm.nih.gov/pubmed/25860950
http://dx.doi.org/10.3390/ijms16047960
work_keys_str_mv AT ibrahimabdulrauf synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT lixiangyun synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT zhouyulan synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT huangyan synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT chenwenwen synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT wanghongtao synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2
AT lijun synthesisofspongylikemesoporoushydroxyapatitefromrawwasteeggshellsforenhanceddissolutionofibuprofenloadedviasupercriticalco2