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The influence of process variables of preparation of oxycellulose beads on their dissolution profile
M. Bajerová, J. Muselík, J. Gajdziok, R. Masteiková, K. Dvorácková,
Language English Country Poland
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 1998
ROAD: Directory of Open Access Scholarly Resources
from 1998
PubMed
23614283
Knihovny.cz E-resources
- MeSH
- Anti-Inflammatory Agents, Non-Steroidal chemistry MeSH
- Chemistry, Pharmaceutical MeSH
- Calcium Chloride chemistry MeSH
- Diffusion MeSH
- Diclofenac chemistry MeSH
- Technology, Pharmaceutical methods MeSH
- Kinetics MeSH
- Hydrogen-Ion Concentration MeSH
- Delayed-Action Preparations MeSH
- Methylcellulose analogs & derivatives chemistry MeSH
- Drug Carriers * MeSH
- Surface Properties MeSH
- Cross-Linking Reagents chemistry MeSH
- Solubility MeSH
- Temperature MeSH
- Ultrasonics MeSH
- Particle Size MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
Particles preparation from biodegradable polymers as carriers for the controlled release of drugs has been the focus of many investigations and the subject of a growing field of research in recent years. The aim of this study was to develop and optimize the preparation of oxycellulose beads containing diclofenac sodium as a model drug. Particle size, surface, drug content and encapsulation efficiency were evaluated, drug dissolution profiles were measured and drug release mechanism estimated. The prepared oxycellulose beads were uniform in size with encapsulation efficiency ranging from 53.2 to 74.9%. The lower temperature of the crosslinking solution and its saturation with diclofenac sodium increased the encapsulation efficiency, especially when both parameters were combined. The application of ultrasound had a negative effect on drug encapsulation. The dissolution of diclofenac sodium in pH 1.2 was close to zero as its solubility in this medium is very limited. The drug release in pH 6.8 lasted from 10 to 16 h showing biphasic behavior with a significant lag time. T1/2 decreased with increasing encapsulation efficiency and ultrasound application. Diclofenac sodium was released from the prepared oxycellulose particles by diffusion as well as by erosion process; ahigh correlation was found with zero order kinetics.
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- $a Bajerová, Martina $u Department of Pharmaceutics, Faculty of Pharmacy, University of Veterinary and Pharmaceutical Sciences Brno, Palackého 1/3, 612 42 Brno, Czech Republic. martina.bajerova@seznam.cz
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- $a Particles preparation from biodegradable polymers as carriers for the controlled release of drugs has been the focus of many investigations and the subject of a growing field of research in recent years. The aim of this study was to develop and optimize the preparation of oxycellulose beads containing diclofenac sodium as a model drug. Particle size, surface, drug content and encapsulation efficiency were evaluated, drug dissolution profiles were measured and drug release mechanism estimated. The prepared oxycellulose beads were uniform in size with encapsulation efficiency ranging from 53.2 to 74.9%. The lower temperature of the crosslinking solution and its saturation with diclofenac sodium increased the encapsulation efficiency, especially when both parameters were combined. The application of ultrasound had a negative effect on drug encapsulation. The dissolution of diclofenac sodium in pH 1.2 was close to zero as its solubility in this medium is very limited. The drug release in pH 6.8 lasted from 10 to 16 h showing biphasic behavior with a significant lag time. T1/2 decreased with increasing encapsulation efficiency and ultrasound application. Diclofenac sodium was released from the prepared oxycellulose particles by diffusion as well as by erosion process; ahigh correlation was found with zero order kinetics.
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