Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol

<p>Abstract</p> <p>Novel mixed polymeric micelles formed from biocompatible polymers, poly(ethylene glycol)-poly(lactide) (mPEG-PLA) and polyoxyethylene-660-12-hydroxy stearate (Solutol HS15), were fabricated and used as a nanocarrier for solubilizing poorly soluble anesthetic drug...

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Main Authors: Li Xinru, Zhang Yanhui, Fan Yating, Zhou Yanxia, Wang Xiaoning, Fan Chao, Liu Yan, Zhang Qiang
Format: Article
Language:English
Published: SpringerOpen 2011-01-01
Series:Nanoscale Research Letters
Online Access:http://www.nanoscalereslett.com/content/6/1/275
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spelling doaj-01b10587d61a4d5694478f6e1e0e48502020-11-25T00:30:00ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2011-01-0161275Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofolLi XinruZhang YanhuiFan YatingZhou YanxiaWang XiaoningFan ChaoLiu YanZhang Qiang<p>Abstract</p> <p>Novel mixed polymeric micelles formed from biocompatible polymers, poly(ethylene glycol)-poly(lactide) (mPEG-PLA) and polyoxyethylene-660-12-hydroxy stearate (Solutol HS15), were fabricated and used as a nanocarrier for solubilizing poorly soluble anesthetic drug propofol. The solubilization of propofol by the mixed micelles was more efficient than those made of mPEG-PLA alone. Micelles with the optimized composition of mPEG-PLA/Solutol HS15/propofol = 10/1/5 by weight had particle size of about 101 nm with narrow distribution (polydispersity index of about 0.12). Stability analysis of the mixed micelles in bovine serum albumin (BSA) solution indicated that the diblock copolymer mPEG efficiently protected the BSA adsorption on the mixed micelles because the hydrophobic groups of the copolymer were efficiently screened by mPEG, and propofol-loaded mixed micelles were stable upon storage for at least 6 months. The content of free propofol in the aqueous phase for mixed micelles was lower by 74% than that for the commercial lipid emulsion. No significant differences in times to unconsciousness and recovery of righting reflex were observed between mixed micelles and commercial lipid formulation. The pharmacological effect may serve as pharmaceutical nanocarriers with improved solubilization capacity for poorly soluble drugs.</p> http://www.nanoscalereslett.com/content/6/1/275
collection DOAJ
language English
format Article
sources DOAJ
author Li Xinru
Zhang Yanhui
Fan Yating
Zhou Yanxia
Wang Xiaoning
Fan Chao
Liu Yan
Zhang Qiang
spellingShingle Li Xinru
Zhang Yanhui
Fan Yating
Zhou Yanxia
Wang Xiaoning
Fan Chao
Liu Yan
Zhang Qiang
Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
Nanoscale Research Letters
author_facet Li Xinru
Zhang Yanhui
Fan Yating
Zhou Yanxia
Wang Xiaoning
Fan Chao
Liu Yan
Zhang Qiang
author_sort Li Xinru
title Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
title_short Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
title_full Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
title_fullStr Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
title_full_unstemmed Preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
title_sort preparation and evaluation of novel mixed micelles as nanocarriers for intravenous delivery of propofol
publisher SpringerOpen
series Nanoscale Research Letters
issn 1931-7573
1556-276X
publishDate 2011-01-01
description <p>Abstract</p> <p>Novel mixed polymeric micelles formed from biocompatible polymers, poly(ethylene glycol)-poly(lactide) (mPEG-PLA) and polyoxyethylene-660-12-hydroxy stearate (Solutol HS15), were fabricated and used as a nanocarrier for solubilizing poorly soluble anesthetic drug propofol. The solubilization of propofol by the mixed micelles was more efficient than those made of mPEG-PLA alone. Micelles with the optimized composition of mPEG-PLA/Solutol HS15/propofol = 10/1/5 by weight had particle size of about 101 nm with narrow distribution (polydispersity index of about 0.12). Stability analysis of the mixed micelles in bovine serum albumin (BSA) solution indicated that the diblock copolymer mPEG efficiently protected the BSA adsorption on the mixed micelles because the hydrophobic groups of the copolymer were efficiently screened by mPEG, and propofol-loaded mixed micelles were stable upon storage for at least 6 months. The content of free propofol in the aqueous phase for mixed micelles was lower by 74% than that for the commercial lipid emulsion. No significant differences in times to unconsciousness and recovery of righting reflex were observed between mixed micelles and commercial lipid formulation. The pharmacological effect may serve as pharmaceutical nanocarriers with improved solubilization capacity for poorly soluble drugs.</p>
url http://www.nanoscalereslett.com/content/6/1/275
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