Author/Authors :
Akbari، Jafar نويسنده Faculty of Pharmacy,Department of Pharmaceutics,Mazandaran University of Medical Sciences,Sari,Iran , , Saeedi، Majid نويسنده Faculty of Pharmacy, Pharmaceutical Sciences Research Center,Department of Pharmaceutics,Mazandaran University of Medical Sciences,Sari,Iran , , Morteza-Semnani، Katayoun نويسنده Pharmaceutical Sciences Research Center, Faculty of Pharmacy,Department of Medicinal Chemistry,Mazandaran University of Medical Sciences,Sari,Iran , , Sadeghi Ghadi، Zaynab نويسنده Faculty of Pharmacy,Department of Pharmaceutics,Mazandaran University of Medical Sciences,Sari,Iran , , Hosseini، Saeed نويسنده Pharmaceutical Sciences Research Center,Mazandaran University of Medical Sciences,Sari,Iran ,
Abstract :
In this study the effect of liquisolid technique on the dissolution profile of spironolactone was evaluated. Different formulations of spironolactone liquisolid
compacts were prepared using various amounts of non-volatile vehicles (Poly ethylene glycol 400 and glycerin). The ratio of microcrystalline cellulose (as carrier) to silica (as coating powder material) was 20 for all formulations. After preparing tablets by
direct compression with constant compression load, the release profiles were evaluated by USP paddle method. Differential scanning calorimeter (DSC) and FTIR were used to evaluate any interaction between spironolactone and other ingredients. The
liquisolid tablets exhibited significantly higher dissolution rates in comparison with conventionally direct compressed tablets. Furthermore results showed dissolution rate enhancement of liquisolid tablets by increase in the amounts of non-volatile vehicles.
Differential scanning calorimetry showed that, the drug has got solubilized in the liquid vehicle. FT-IR spectroscopy studies of pure spironolactone, liquisolid compacts, glycerin and PEG400 supported solubilization of the drug in the liquid vehicle too. The
FT-IR spectra also showed that no interactions have been occurred between spironolactone and other ingredients. In conclusion the liquisolid technique can be a suitable method in order to prepare rapid release tablets of poorly water-soluble drugs
such as spironolactone.
Keywords :
dissolution rate , PEG 400 , spironolactone , liquisolid technique