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Z Jiabi

Publications and source records attributed to Z Jiabi.

3 recordsLinked to original sources

Formulation and in vitro evaluation of ibuprofen-Carbopol 974P-NF controlled release matrix tablets. III: Influence of co-excipients on release rate of the drug.

In order to assess the potential of carbopol 974P-NF as matrix material in hydrophilic matrix tablets containing a slightly water-soluble drug, ibuprofen (IBF), controlled release matrix tablets of ibuprofen and carbopol 974P-NF, at different drug to polymer ratios, were prepared by the direct compression method. The influence of the concentration of the matrix material (carbopol 974P) and several co-excipients (lactose, microcrystalline cellulose, and starch) on the release rate of the drug was investigated. An in vitro dissolution test in pH 7.2 phosphate buffer solution showed that drug release from all the formulations containing carbopol 974P was considerably prolonged in concentration-dependent manners. Increasing the amount of carbopol 974P in tablets resulted in a reduction in the drug release rate and a linearization of the drug release curve. When the influence of the co-excipients on the release of the drug was examined, all of the co-excipients used in this study enhanced the release rate of IBF. However, lactose demonstrated slower and more linear release behavior as compared in microcrystalline cellulose or starch. The dissolution T50 and T90 values for the three co-excipients were in the order of lactose > microcrystalline cellulose > starch.

Acrylic Resins↗

Preparation, characterization, and dissolution studies of ibuprofen solid dispersions using polyethylene glycol (PEG), talc, and PEG-talc as dispersion carriers.

Solid dispersions of ibuprofen (IBF) were prepared by solvent evaporation method using polyethylene glycol 10000 (PEG), talc, and PEG-talc as dispersion carriers. The drug-carrier(s) interactions in the solid state were investigated using scanning electron microscopy (SEM), differential scanning calorimetry (DSC), and x-ray diffraction analysis. Interactions in the solution were studied by performing dissolution experiments. No important and well-defined chemical interaction was found between the ingredients. The increase in the IBF dissolution rate from the solid dispersions with the carriers used in this study could be attributed to several factors such as improved wettability, local solubilization, and drug particle size reduction.

Calorimetry, Differential Scanning↗

Preparation, characterization, and evaluation of physicochemical properties of different crystalline forms of ibuprofen.

Different crystal forms of ibuprofen (IBF) were prepared using methods such as cooling hot solution of the drug and precipitation of crystals from the drug solution. Scanning electron microscopy (SEM), differential scanning calorimetry (DSC), melting point, x-ray powder diffractometry, infrared absorption spectroscopy (IR), and in vitro dissolution rate and stability studies were conducted to investigate various characteristics of different crystalline forms of the drug. Methods of preparation and nature of the solvents used in this study were found to have greater roles in changing the physicochemical properties of IBF.

Calorimetry, Differential Scanning↗