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1.
Braz. J. Pharm. Sci. (Online) ; 53(1): e16050, 2017. tab, graf
Article in English | LILACS | ID: biblio-839441

ABSTRACT

ABSTRACT Continuous wavelet transform (CWT) was proposed for the simultaneous determination and dissolution profiles of valsartan (VAL) and hydrochlorothiazide (HCT) in tablets, without the use of a chemical separation procedure. The CWT approach was applied to the original UV spectra and their ratio spectra in the optimal wavelength ranges. After testing several wavelet families, Mexican hat function-CWT and Daubechies7-CWT (mexh-CWT and db7-CWT, respectively) were found to be suitable for the transformation of the original UV spectra. In the following procedure, mexh-CWT and Coiflets3-CWT (coif3-CWT) were found to be appropriate for the signal analysis of ratio spectra (RS) of VAL/HCT and HCT/VAL. Calibration graphs for VAL and HCT were obtained by measuring db7-CWT and mexh-CWT amplitudes in the transformation of the original absorption spectra and RS-coif-CWT and RS-mexh-CWT amplitudes in the transformation of the ratio spectra. The validity and applicability of the proposed CWT methods were evaluated through the analysis of an independent set of synthetic binary mixtures consisting of VAL and HCT. The proposed signal processing methods were then successfully applied to the simultaneous quantitative evaluation and simultaneous dissolution profiles of the related drugs in commercial tablets, with good agreement reported for the experimental results.


Subject(s)
Tablets/pharmacokinetics , Dissolution/classification , Wavelet Analysis , Valsartan/administration & dosage , Hydrochlorothiazide/administration & dosage , Spectrum Analysis/statistics & numerical data
2.
Acta Pharm ; 61(3): 303-12, 2011 Sep 01.
Article in English | MEDLINE | ID: mdl-21945909

ABSTRACT

Floating dosage forms of acetylsalicylic acid, used for its antithrombotic effect, were developed to prolong gastric residence time and increase bioavailability. In the two-layer tablet formulation, hydroxypropyl methylcellulose (HPMC) of high viscosity and an effervescent mixture of citric acid and sodium bicarbonate formed the floating layer. The release layer contained the drug, direct tableting agent and different types of matrix-forming polymers such as HPMC of low viscosity, sodium carboxymethylcellulose and chitosan. Tablets were prepared using a direct compression technique. The effect of formulation variables on physicochemical and floating properties and the drug release from tablets were investigated. Floating ability was dependent on the amount of effervescent agent and gel-forming polymer of the floating layer. Drug release was prolonged to 8 hours by changing the type and viscosity of the matrix-forming polymer in the drug-loading layer and all formulations showed a diffusion release mechanisms.


Subject(s)
Aspirin/chemistry , Drug Compounding/methods , Drug Delivery Systems , Excipients/chemistry , Fibrinolytic Agents/chemistry , Gastric Mucosa/metabolism , Aspirin/metabolism , Biological Availability , Chitosan/chemistry , Citric Acid/chemistry , Delayed-Action Preparations/chemistry , Delayed-Action Preparations/metabolism , Fibrinolytic Agents/metabolism , Humans , Hypromellose Derivatives , Methylcellulose/analogs & derivatives , Methylcellulose/chemistry , Models, Theoretical , Polymers/chemistry , Pressure , Sodium Bicarbonate/chemistry , Solubility , Stomach/chemistry , Tablets/chemistry , Time Factors , Viscosity
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