Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching

Folic acid insufficiency has long been related to the occurrence of various diseases. However, the loss of integrity of folic acid has led to the investigation of strategies to improve the vitamin stability and controlled release. Porous silicon nanoparticle is an attractive inorganic material for d...

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Main Authors: Haidary, Sazan M., Córcoles, Emma Paola, Ali, Nihad K.
Format: Article
Language:English
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/49459/1/EmmaPaolaC%C3%B3rcoles2013_Folicaciddeliverydevice.pdf
http://eprints.utm.my/id/eprint/49459/
http://www.electrochemsci.org
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.494592018-10-14T08:22:10Z http://eprints.utm.my/id/eprint/49459/ Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching Haidary, Sazan M. Córcoles, Emma Paola Ali, Nihad K. QD Chemistry Folic acid insufficiency has long been related to the occurrence of various diseases. However, the loss of integrity of folic acid has led to the investigation of strategies to improve the vitamin stability and controlled release. Porous silicon nanoparticle is an attractive inorganic material for drug delivery applications due to its biocompatibility and tunable degradation behavior. The aim of this work is to produce porous silicon nanoparticles with suitable dimensions for loading folic acid. Porous silicon was fabricated by anodic electrochemical etching in a Teflon cell containing a 1:4 (v/v) solution of 49% aqueous HF in ethanol. Pores between 15 and 20 nm in diameter were obtained and the highly degradable porous silicon was stabilized to SiO2 structures by thermal oxidation. Folic acid was loaded into these structures by simple adsorption and the release was examined by UV absorption spectroscopy. The surface morphology of porous silicon delivery device in each stage of the fabrication was characterized by FE-SEM, X-ray spectrometer, FTIR, and XRD and the drug loading confirmed based on the comparison with pure folic acid spectra. pSi nanoparticles showed optimal folic acid delivery capabilities (60 % released after 6 h) and due to its simple fabrication method and its intrinsic optical properties have the potential to be used as a diagnostic and therapeutic point of care tool 2013 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/49459/1/EmmaPaolaC%C3%B3rcoles2013_Folicaciddeliverydevice.pdf Haidary, Sazan M. and Córcoles, Emma Paola and Ali, Nihad K. (2013) Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching. International Journal of Electrochemical Science, 8 (7). pp. 9956-9966. ISSN 1452-3981 http://www.electrochemsci.org
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QD Chemistry
spellingShingle QD Chemistry
Haidary, Sazan M.
Córcoles, Emma Paola
Ali, Nihad K.
Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
description Folic acid insufficiency has long been related to the occurrence of various diseases. However, the loss of integrity of folic acid has led to the investigation of strategies to improve the vitamin stability and controlled release. Porous silicon nanoparticle is an attractive inorganic material for drug delivery applications due to its biocompatibility and tunable degradation behavior. The aim of this work is to produce porous silicon nanoparticles with suitable dimensions for loading folic acid. Porous silicon was fabricated by anodic electrochemical etching in a Teflon cell containing a 1:4 (v/v) solution of 49% aqueous HF in ethanol. Pores between 15 and 20 nm in diameter were obtained and the highly degradable porous silicon was stabilized to SiO2 structures by thermal oxidation. Folic acid was loaded into these structures by simple adsorption and the release was examined by UV absorption spectroscopy. The surface morphology of porous silicon delivery device in each stage of the fabrication was characterized by FE-SEM, X-ray spectrometer, FTIR, and XRD and the drug loading confirmed based on the comparison with pure folic acid spectra. pSi nanoparticles showed optimal folic acid delivery capabilities (60 % released after 6 h) and due to its simple fabrication method and its intrinsic optical properties have the potential to be used as a diagnostic and therapeutic point of care tool
format Article
author Haidary, Sazan M.
Córcoles, Emma Paola
Ali, Nihad K.
author_facet Haidary, Sazan M.
Córcoles, Emma Paola
Ali, Nihad K.
author_sort Haidary, Sazan M.
title Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
title_short Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
title_full Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
title_fullStr Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
title_full_unstemmed Folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
title_sort folic acid delivery device based on porous silicon nanoparticles synthesized by electrochemical etching
publishDate 2013
url http://eprints.utm.my/id/eprint/49459/1/EmmaPaolaC%C3%B3rcoles2013_Folicaciddeliverydevice.pdf
http://eprints.utm.my/id/eprint/49459/
http://www.electrochemsci.org
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