Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol

The objective of this study was to develop a formulation for propofol injection at various concentrations (1 and 2%) using palm oil-based nanoemulsion as the carrier. The nanoemulsions were characterised by globule size distribution (Dv 90 value), zeta potential, pH and viscosity determination. The...

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Main Authors: Prasetyo, Bayu Eko, Norazrina Azmi, Ahmad Fuad Shamsuddin
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2018
Online Access:http://journalarticle.ukm.my/12221/1/17312-76556-1-PB.pdf
http://journalarticle.ukm.my/12221/
http://ejournal.ukm.my/jskm/issue/view/685
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Institution: Universiti Kebangsaan Malaysia
Language: English
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spelling my-ukm.journal.122212018-10-19T21:08:07Z http://journalarticle.ukm.my/12221/ Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol Prasetyo, Bayu Eko Norazrina Azmi, Ahmad Fuad Shamsuddin, The objective of this study was to develop a formulation for propofol injection at various concentrations (1 and 2%) using palm oil-based nanoemulsion as the carrier. The nanoemulsions were characterised by globule size distribution (Dv 90 value), zeta potential, pH and viscosity determination. The physicochemical stability and accelerated stability of the formulations were also evaluated. Stability studies were performed for 6 months at 4, 16, 25 and 40oC storage temperatures. The propofol content was analysed by HPLC study. The characterisation result of propofol nanoemulsion 1 and 2% showed good globule size distributions in Dv 90 values of 284 ± 1.15 nm and 304 ± 1.20 nm and also stable zeta potential values of-43.37 ± 0.96 mV and -40.97 ± 1.36 mV, respectively. Accelerated test showed that the formulations have excellent stability with no physical changes observed after centrifugation, autoclaving at 121oC for 15 mins, shaking for 12 hours and thermal cycling test. The stability studies indicated that propofol emulsion show good stability for 6 months when stored at 4 ± 1oC and 16 ± 1oC based on Dv 90 values, zeta potential, and pH readings. No changes in propofol concentrations were observed after 6 months storage. Overall, propofol in palm oil-based nanoemulsions as carrier was found to be stable and can be used as an alternative anaesthetic injection. Penerbit Universiti Kebangsaan Malaysia 2018 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/12221/1/17312-76556-1-PB.pdf Prasetyo, Bayu Eko and Norazrina Azmi, and Ahmad Fuad Shamsuddin, (2018) Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol. Jurnal Sains Kesihatan Malaysia, 16 (2). pp. 5-13. ISSN 1675-8161 http://ejournal.ukm.my/jskm/issue/view/685
institution Universiti Kebangsaan Malaysia
building Perpustakaan Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description The objective of this study was to develop a formulation for propofol injection at various concentrations (1 and 2%) using palm oil-based nanoemulsion as the carrier. The nanoemulsions were characterised by globule size distribution (Dv 90 value), zeta potential, pH and viscosity determination. The physicochemical stability and accelerated stability of the formulations were also evaluated. Stability studies were performed for 6 months at 4, 16, 25 and 40oC storage temperatures. The propofol content was analysed by HPLC study. The characterisation result of propofol nanoemulsion 1 and 2% showed good globule size distributions in Dv 90 values of 284 ± 1.15 nm and 304 ± 1.20 nm and also stable zeta potential values of-43.37 ± 0.96 mV and -40.97 ± 1.36 mV, respectively. Accelerated test showed that the formulations have excellent stability with no physical changes observed after centrifugation, autoclaving at 121oC for 15 mins, shaking for 12 hours and thermal cycling test. The stability studies indicated that propofol emulsion show good stability for 6 months when stored at 4 ± 1oC and 16 ± 1oC based on Dv 90 values, zeta potential, and pH readings. No changes in propofol concentrations were observed after 6 months storage. Overall, propofol in palm oil-based nanoemulsions as carrier was found to be stable and can be used as an alternative anaesthetic injection.
format Article
author Prasetyo, Bayu Eko
Norazrina Azmi,
Ahmad Fuad Shamsuddin,
spellingShingle Prasetyo, Bayu Eko
Norazrina Azmi,
Ahmad Fuad Shamsuddin,
Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
author_facet Prasetyo, Bayu Eko
Norazrina Azmi,
Ahmad Fuad Shamsuddin,
author_sort Prasetyo, Bayu Eko
title Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
title_short Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
title_full Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
title_fullStr Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
title_full_unstemmed Preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
title_sort preparation and physical stability evaluation of palm oil-based nanoemulsion as a drug delivery system for propofol
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2018
url http://journalarticle.ukm.my/12221/1/17312-76556-1-PB.pdf
http://journalarticle.ukm.my/12221/
http://ejournal.ukm.my/jskm/issue/view/685
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