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Biomedical subjects

J M Ginés

Publications and source records attributed to J M Ginés.

7 recordsLinked to original sources

Characterization of ibuproxam binary and ternary dispersions with hydrophilic carriers.

This work investigates the possibility of increasing the dissolution properties of ibuproxam (a poorly water-soluble anti-inflammatory drug) using hydrophilic carriers such as polyvinylpyrrolidone (PVP), polyethylene glycol (PEG), or urea, alone or in combination. Phase-solubility studies showed that the carrier solubilizing power was in the order PEG>PVP>urea and evidenced a synergistic effect in drug solubility improvement when using carrier combinations. Binary and ternary systems, at 20/80 or 20/40/40 (w/w) drug/carrier(s) ratios, prepared by coevaporation of their ethanolic solutions or by cogrinding physical mixtures in a high-energy vibrational micromill, were characterized by differential scanning calorimetry (DSC), hot stage microscopy (HSM), and scanning electron microscopy (SEM) analyses. The results of dissolution tests (USP paddle method), in terms of Dissolution Efficiency, indicated that ternary systems were up to 35% more effective than the corresponding binary preparations and coevaporated products were up to 45% more efficacious than the corresponding coground ones. The IBUX-PEG-PVP coevaporated was the best product, allowing a more than three-times increase in Dissolution Efficiency with respect to drug alone; moreover, t50% (> 60 min for pure ibuproxam) was < 10 min, and 90% dissolution was achieved after 30 min, whereas only 40% was obtained after 60 min for pure drug. The best performance of this system was attributed to a joined effect of the strong amorphizing power of PVP (as demonstrated by solid state analyses) with the high solubilizing efficacy of PEG (as emerged from phase-solubility studies). The drug dissolution rate from solid dispersions remained practically unchanged after one-year storage at room temperature in closed containers.

Anti-Inflammatory Agents, Non-Steroidal↗

Study of glimepiride-b-cyclodextrin complex.

The interaction of glimepiride with b-cyclodextrin (b-CD) has been studied by several analytical techniques, including 1H NMR, infrared spectroscopy (FTIR), powder x-ray diffractometry (XRD), thermal analysis (DSC) and scanning electron microscopy (SEM). The existence of an inclusion complex was proved in solution by phase solubility techniques and 1H NMR, and in the solid state by DSC, FTIR and XRD, being isolated by sealed heating and freeze drying procedures.

Calorimetry, Differential Scanning↗

Ethyl cellulose polymer microspheres for controlled release of norfluazon.

The pesticide norfluazon has been microencapsulated using ethyl cellulose to develop controlled-release formulations that decrease its mobility through the soil and protect it from photodegradation. Ethyl cellulose microspheres loaded with norfluazon were prepared by the solvent-evaporation method. To obtain the microspheres, certain conditions (pesticide/polymer ratio, percentage of emulsifying agent and solvent) were varied. The shape and size of the microspheres obtained were studied by scanning electron microscopy. Other parameters, such as solids recovery, encapsulation efficiency and pesticide loading, were also studied. The release rate of norfluazon from the different microspheres was slower than that of pure norfluazon. In particular, microspheres obtained with o-xylene, which provided the largest diameter, retarded the initial release of the pesticide relative to microspheres obtained with chloroform, or to pure norfluazon. Moreover, the studies showed that the pesticide/polymer ratio controlled the release of norfluazon, which was slower when this ratio was low. Release rates conformed to a generalised kinetic equation for a diffusion-controlled release mechanism, and the time taken for 50% of the active ingredient to be released into water, t50, was calculated.

Acrylic Resins↗

Leaching of 2,4-D from a soil in the presence of beta-cyclodextrin: laboratory columns experiments.

This study reports on the effect of the presence of beta-cyclodextrin (beta-CD) on the adsorption and mobility of the pesticide 2,4-dichlorophenoxyacetic acid (2,4-D) through soil columns. The previous application of beta-CD to the soil produced a retarded leaching of 2,4-D through the soil column, due probably to herbicide adsorption on the soil through beta-CD adsorbed. However, the application of beta-CD solution to the soil column where 2,4-D had been previously adsorbed, led to the complete desorption of the herbicide, due to the formation of water-soluble 1:1 inclusion complexes between 2,4-D and beta-CD. Beta-CD can be viewed as a microscopic organic-phase extractant. It can be an advantage to remove from soil pesticides which are able to form inclusion complexes with cyclodextrins, making them possible candidates for use in in situ remediation efforts.

2,4-Dichlorophenoxyacetic Acid↗

Study of omeprazole-gamma-cyclodextrin complexation in the solid state.

The possibility of obtaining inclusion complexes between omeprazole (OME) and gamma-cyclodextrin (gamma-CD) by kneading, spray-drying, coprecipitation, and freeze-drying was evaluated. All these methods lead to the isolation of a true inclusion compound, as evidenced by differential scanning calorimetry (DSC), infrared spectroscopy, and X-ray diffractometry on powder (PXRD). Moreover, PXRD and scanning electron microscopy (SEM) afforded data concerning crystallinity and surface characteristics of the solid phases obtained. In all cases, a significant increase of the release rate with respect to the drug alone was found, and it was attributed to the formation of an inclusion compound. Among the solid phases obtained, the comprecipitated product presented the highest dissolution rate.

Anti-Ulcer Agents↗

Effects of the host cavity size and the preparation method on the physicochemical properties of ibuproxam-cyclodextrin systems.

The effect of cyclodextrin (Cd) complexation on ibuproxam (IBUX) dissolution properties was studied by evaluating both the influence of Cd cavity size and the preparation method used for obtaining solid inclusion complexes. Binary systems of IBUX with natural Cds, prepared using different techniques (kneading, sealed-heating, spray-drying), were studied by differential scanning calorimetry (DSC), hot-stage microscopy (HSM), Fourier transform infrared (FTIR) spectroscopy, scanning electron microscopy (SEM), and their dissolution behavior was evaluated according to the dispersed amount method. The nature and the dissolution performance of the end product appeared to be related to both steric factors of host molecule and preparation method of the solid system. The alpha Cd cavity size was less suitable for accommodating the IBUX molecule, whereas spray-drying and sealed-heating methods led to a true inclusion complex of IBUX in the beta Cd and gamma Cd cavity. In contrast, the kneading method did not lead in any case to a real inclusion complex. Spray-dried systems with beta Cd and gamma Cd were the most effective in achieving the enhancement of the IBUX dissolution rate.

Anti-Inflammatory Agents, Non-Steroidal↗

Dissolution properties and in vivo behaviour of triamterene in solid dispersions with polyethylene glycols.

The applicability of the solid dispersion technique as a method for enhancing the GI absorption of a drug has been explored in order to procure better dissolution characteristics and better bioavailability for triamterene. The physicochemical characterization of the systems has shown the absence of chemical reaction between the drug and the polymers during the solid dispersion elaboration process (melting carrier method). In vitro release profiles have been studied and quantified in terms of dissolution efficiency over the first 30 min (DE30) and dissolution percentage over the first 30 min (DP30). The results have shown that there were no significant differences between the three polyethylene glycols (PEGs) under test. The in vivo effectiveness of the different preparations was also investigated by means of the urinary volumetric excretion (UVE)--pharmacologic effect--and by the estimation of Ke, tmax, and MRT-pharmacokinetic parameters. At end, an analysis of the relative bioavailabilities between formulations has been performed.

Animals↗