Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system

The acrylated palm oil (APO) nanoparticle is a potential product that can be used as carriers in medical field. The main focus of the present study was to study the potential of the APO nanoparticles for used in a controlled drug delivery system. The microemulsion system is used as a medium to inc...

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Main Authors: Tajau, Rida, Fathy, Siti Farhana, Salleh, Mek Zah, Ibrahim, Nor Azowa, Ismail, Maznah, Hashim, Kamaruddin
Format: Article
Language:English
Published: Malaysian Nuclear Agency 2013
Online Access:http://psasir.upm.edu.my/id/eprint/12828/1/Acrylated%20palm%20oil%20nanoparticle%20synthesized%20by%20radiation-induced%20process%20as%20a%20controlled%20drug%20delivery%20system.pdf
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author Tajau, Rida
Fathy, Siti Farhana
Salleh, Mek Zah
Ibrahim, Nor Azowa
Ismail, Maznah
Hashim, Kamaruddin
author_facet Tajau, Rida
Fathy, Siti Farhana
Salleh, Mek Zah
Ibrahim, Nor Azowa
Ismail, Maznah
Hashim, Kamaruddin
author_sort Tajau, Rida
collection UPM
description The acrylated palm oil (APO) nanoparticle is a potential product that can be used as carriers in medical field. The main focus of the present study was to study the potential of the APO nanoparticles for used in a controlled drug delivery system. The microemulsion system is used as a medium to incorporate an active substance such as Thymoquinone (TQ) into the APO polymeric micelle and then the radiation technique is used as a tool for the synthesis of TQ-loaded APO nanoparticle. The nano-size TQ-loaded APO particles resulted the particle size of less than 150 nm with spherical in shape. The TQ release profile was carried out in potassium buffer saline (PBS) solutions (pH 7.4) at 37°C. And, the zero-order model has been used to determine the mechanism of the drug release from the corresponding nanoparticles, respectively. The TQ release was found to be sustained and controlled in pH 7.4. At pH 7.4, the release of TQ followed the zero-order model. The in-vitro drug release study showed a good prospect of the APO nanoparticle on being a potential drug carrier as there are toxic against colon cancer cells and not toxic towards normal cells. This suggested that the APO product produce using this radiation technique can be developed into different type of carrier systems for controlled drug release applications.
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spelling upm.eprints-128282018-06-11T08:35:24Z http://psasir.upm.edu.my/id/eprint/12828/ Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system Tajau, Rida Fathy, Siti Farhana Salleh, Mek Zah Ibrahim, Nor Azowa Ismail, Maznah Hashim, Kamaruddin The acrylated palm oil (APO) nanoparticle is a potential product that can be used as carriers in medical field. The main focus of the present study was to study the potential of the APO nanoparticles for used in a controlled drug delivery system. The microemulsion system is used as a medium to incorporate an active substance such as Thymoquinone (TQ) into the APO polymeric micelle and then the radiation technique is used as a tool for the synthesis of TQ-loaded APO nanoparticle. The nano-size TQ-loaded APO particles resulted the particle size of less than 150 nm with spherical in shape. The TQ release profile was carried out in potassium buffer saline (PBS) solutions (pH 7.4) at 37°C. And, the zero-order model has been used to determine the mechanism of the drug release from the corresponding nanoparticles, respectively. The TQ release was found to be sustained and controlled in pH 7.4. At pH 7.4, the release of TQ followed the zero-order model. The in-vitro drug release study showed a good prospect of the APO nanoparticle on being a potential drug carrier as there are toxic against colon cancer cells and not toxic towards normal cells. This suggested that the APO product produce using this radiation technique can be developed into different type of carrier systems for controlled drug release applications. Malaysian Nuclear Agency 2013 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/12828/1/Acrylated%20palm%20oil%20nanoparticle%20synthesized%20by%20radiation-induced%20process%20as%20a%20controlled%20drug%20delivery%20system.pdf Tajau, Rida and Fathy, Siti Farhana and Salleh, Mek Zah and Ibrahim, Nor Azowa and Ismail, Maznah and Hashim, Kamaruddin (2013) Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system. Jurnal Sains Nuklear Malaysia, 25 (2). pp. 20-29. ISSN 2232-0946 https://jsnm.nuclearmalaysia.gov.my/index.php/jsnm/article/view/87
spellingShingle Tajau, Rida
Fathy, Siti Farhana
Salleh, Mek Zah
Ibrahim, Nor Azowa
Ismail, Maznah
Hashim, Kamaruddin
Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title_full Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title_fullStr Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title_full_unstemmed Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title_short Acrylated palm oil nanoparticle synthesized by radiation-induced process as a controlled drug delivery system
title_sort acrylated palm oil nanoparticle synthesized by radiation induced process as a controlled drug delivery system
url http://psasir.upm.edu.my/id/eprint/12828/1/Acrylated%20palm%20oil%20nanoparticle%20synthesized%20by%20radiation-induced%20process%20as%20a%20controlled%20drug%20delivery%20system.pdf
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AT sallehmekzah acrylatedpalmoilnanoparticlesynthesizedbyradiationinducedprocessasacontrolleddrugdeliverysystem
AT ibrahimnorazowa acrylatedpalmoilnanoparticlesynthesizedbyradiationinducedprocessasacontrolleddrugdeliverysystem
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AT hashimkamaruddin acrylatedpalmoilnanoparticlesynthesizedbyradiationinducedprocessasacontrolleddrugdeliverysystem