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Biomedical subjects

Stéphane Gibaud

Publications and source records attributed to Stéphane Gibaud.

4 recordsLinked to original sources

Melarsoprol-cyclodextrins inclusion complexes.

Melarsoprol, a water-insoluble drug, is mainly used in the treatment of trypanosomiasis and has demonstrated an in vitro activity on myeloid and lymphoid leukemia derived cell lines. It is marketed as a very poorly tolerated non-aqueous solution (Arsobal). The aim of our work was to develop melarsoprol-cyclodextrin complexes in order to improve the tolerability and the bioavailability of melarsoprol. Phase-solubility analysis showed A(L)-type diagrams with beta-cyclodextrin (betaCD), randomly methylated beta-cyclodextrin (RAMEbetaCD) and hydroxypropyl-beta-cyclodextrin (HPbetaCD), which suggested the formation of 1:1 inclusion complexes. The solubility enhancement factor of melarsoprol (solubility in 250 mM of cyclodextrin/solubility in water) was about 7.2x10(3) with both beta-cyclodextrin derivatives. The 1:1 stoichiometry was confirmed in the aqueous solutions by the UV spectrophotometer using Job's plot method. The apparent stability constants K(1:1), calculated from mole-ratio titration plots, were 57 143+/-4 425M(-1) for RAMEbetaCD and 50 761+/-5 070 M(-1) for HPbetaCD. Data from 1H-NMR and ROESY experiments provided a clear evidence of inclusion complexation of melarsoprol with its dithiaarsane extremity inserted into the wide rim of the cyclodextrin torus. Moreover, RAMEbetaCD had a pronounced effect on the drug hydrolysis and the dissolution rate of melarsoprol. However, the cytotoxic properties of melarsoprol on K562 and U937 human leukemia cell lines was not modified by complexation.

Antineoplastic Agents↗

Poly(epsilon-caprolactone) and Eudragit microparticles containing fludrocortisone acetate.

Substitutive hormonal therapies have to be administered for long periods. Thus, the development of sustained-release forms, as microparticle suspensions, is interesting in order to improve patient compliance by reducing dosing frequencies and side effects. The aim of this work was to compare different formulations of fludrocortisone microparticles for the treatment of mineralocorticoid insufficiency. The study was done with different polymers (poly(epsilon-caprolactone), Eudragit RS and Eudragit RL) and different processes (O/W solvent evaporation methods and S/O/W evaporation methods). The use of a suspension of micronized drug in dichloromethane as dispersed phase (S/O/W method) significantly improved the process. Whereas low concentrations of FLU dissolved in the dispersed phase led to smooth-surface homogeneous microparticles and poor incorporation efficiency (5.8-7.3%); suspensions of FLU led to microparticles with numerous crystals on their surfaces (S/O/W microparticles) and high incorporation efficiency (about 79%). However, the best release profiles were obtained with microparticles prepared with 7.5 mg/ml of dichloromethane, near saturation. Moreover, the use of mixtures of poly(epsilon-caprolactone), Eudragit RS and RL did not improve the release profiles.

Chemistry, Pharmaceutical↗

Slow-release melarsoprol microparticles.

The present study compares two methods of preparation of microparticles of melarsoprol for the treatment of the human trypanosomiasis. Melarsoprol is poorly soluble in water and in organic media. Microparticles were formulated with modified O/W and W/O/W methods, Poly(epsilon -caprolactone) microparticles were prepared either with a suspension-in-oil-in-water (S/O/W) solvent evaporation method or by complexation of melarsoprol with methyl ss-cyclodextrin followed by a water-in-oil-in-water (W(CD)/O/W) solvent evaporation method. Results showed a poor incorporation of melarsoprol (2.89 +/- 0.20 microg mg(-1)) using the W(CD)/O/W process, while the S/O/W process allowed achieving 161 +/- 5 microg mg(-1) and seemed to be very effective for the preparation of a sustained release form of melarsoprol. Moreover S/O/W microparticles showed a slow release of the drug in 70% of phosphate buffer pH 7.4, 0.1 M and 30% of propylene glycol (about 50% in 2 h and 80% after 7 h).

Chemistry, Pharmaceutical↗

Preparation of 3,4-diaminopyridine microparticles by solvent-evaporation methods.

The present study compares two methods of preparation of microparticles of 3,4-diaminopyridine (3,4-DAP) for the treatment for multiple sclerosis and Lambert-Eaton myasthenia syndrome. Poly( epsilon -caprolactone) microparticles were prepared with a solvent-evaporation W/O method. The 3,4-DAP was dispersed in dichloromethane, leading to a suspension. The dispersion and the solidification of the dichloromethane droplets in an aqueous phase have led to microparticles of 55.3+/-34.7 microm. The incorporation of the drug by milligram of powder was very low (1.91 micrograms/mg) and the scanning electron microscopy (SEM) did not show any crystal but marks of dissolved crystals were observed on the polymeric surface. EudragitRS microspheres containing 3,4-DAP were prepared by a solvent-evaporation technique using light mineral oil as continuous phase. The drug and the polymer were completely dissolved in an acetone solution, used as discontinuous phase. This formulation have led to a higher incorporation of the drug (88.25 micrograms/mg). The particle size was 91.8+/-44.3 microm. The observation, by SEM, shows many crystals on the surface and inside the microparticles. A slow-release of the drug in a phosphate buffer pH 7.4 was observed (50% in 60 min and about 70% in 4 h).

4-Aminopyridine↗