dc.contributor.author | Maghsoodi, M | |
dc.contributor.author | Hemati, E | |
dc.contributor.author | Qadermazi, B | |
dc.contributor.author | Yari, Z | |
dc.date.accessioned | 2018-08-26T08:57:00Z | |
dc.date.available | 2018-08-26T08:57:00Z | |
dc.date.issued | 2011 | |
dc.identifier.uri | http://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/54518 | |
dc.description.abstract | Purpose: A multiparticular floating-pulsatile drug delivery system was developed for time and site specific drug release of piroxicam. A blend of floating and pulsatile principles of drug delivery system would have the advantage that a drug can be released in the upper GI tract after a definite time period. Methods: Hollow microspheres were prepared by the emulsion solvent diffusion method using Eudragit S as an enteric acrylic polymer with piroxicam at various polymer/drug ratios in a mixture of dichloromethane and ethanol. Developed formulations were evaluated for yield, encapsulation efficiency, particle size, shape, apparent density, buoyancy studies and dissolution studies. Results: The obtained microballoons were spherical with no major surface irregularity and mean particle size ranging from 250 to 380 for different batches. Formulations show a slight amount of relaese ranging from 0.7 to 11% in acidic medium (SGF) with complete release of drug in simulated intestinal fluid (SIF) in less than 3 h. Encapsulation efficiency of different formulations varied from 90 to 98%. The optimum loading amount of drug in the particles was found to impart suitable floatable properties to the microballoons. With increasing polymer/drug ratio, buancy of the microballoons increases accompanied by simultaneous reduction of apparent particle density. Conclusion: A pulsatile release of piroxicam was demonstrated by a simple drug delivery system which could be useful in chronopharmacotherapy of rheumatoid arthritis. é 2011 by Tabriz University of Medical Sciences. | |
dc.language.iso | English | |
dc.relation.ispartof | Advanced Pharmaceutical Bulletin | |
dc.subject | alcohol | |
dc.subject | dichloromethane | |
dc.subject | eudragit | |
dc.subject | hollow microsphere | |
dc.subject | microsphere | |
dc.subject | piroxicam | |
dc.subject | polymer | |
dc.subject | solvent | |
dc.subject | unclassified drug | |
dc.subject | article | |
dc.subject | buoyancy | |
dc.subject | density | |
dc.subject | diffusion | |
dc.subject | dissolution | |
dc.subject | drug formulation | |
dc.subject | drug mixture | |
dc.subject | drug release | |
dc.subject | drug synthesis | |
dc.subject | emulsion | |
dc.subject | encapsulation | |
dc.subject | in vitro study | |
dc.subject | intestine fluid | |
dc.subject | multiparticular floating pulsatile drug delivery system | |
dc.subject | particle size | |
dc.subject | pulsatile drug release | |
dc.subject | simulated intestine fluid | |
dc.title | Hollow microspheres for gastroretentive floating- pulsatile drug delivery: Preparation and in vitro evaluation | |
dc.type | Article | |
dc.citation.volume | 1 | |
dc.citation.issue | 2 | |
dc.citation.spage | 55 | |
dc.citation.epage | 61 | |
dc.citation.index | Scopus | |
dc.identifier.DOI | https://doi.org/10.5681/apb.2011.008 | |