2-2--(hydroxynitrosohydrazono)bis-ethanamine has been researched along with Sexual-Dysfunction--Physiological* in 1 studies
1 other study(ies) available for 2-2--(hydroxynitrosohydrazono)bis-ethanamine and Sexual-Dysfunction--Physiological
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Characterization of nitric oxide-releasing microparticles for the mucosal delivery.
For the treatment of female sexual arousal disorder (FSAD), we developed microparticles made of PLGA containing nitric oxide (NO) donor (DETA NONOate) to efficiently deliver NO to vaginal mucosa. The NO-releasing microparticles were prepared by various emulsion methods. SEM and DSC studies were performed to examine the microparticles. The release studies were conducted under various conditions to optimize the loading dose in the microparticles. NO diffusivity through vaginal epithelial cells was evaluated and pharmacological activity of NO-releasing microparticles was examined by assessment of intracellular cGMP level in vaginal cells. Through the modified double emulsion solvent evaporation method (w/o/w(a)), the acid labile DETA NONOate was stabilized during the fabrication process and homogenous morphology and high entrapment efficiency were achieved. DETA NONOate was protected under the acidic conditions of the vagina and NO was released from the microparticles in a controlled manner. A significant amount of NO produced from DETA NONOate penetrated through the vaginal epithelial cells. The intracellular cGMP level increased with the treatment of NO-releasing microparticles in vaginal cells. These findings suggest that NO-releasing microparticles could improve the vaginal blood perfusion and open up the possibilities of novel treatment of FSAD. Topics: Biocompatible Materials; Cell Line; Cyclic GMP; Dose-Response Relationship, Drug; Drug Carriers; Female; Humans; Hydrogen-Ion Concentration; Lactic Acid; Molecular Structure; Mucous Membrane; Nitric Oxide; Nitric Oxide Donors; Nitroso Compounds; Particle Size; Polyglycolic Acid; Polylactic Acid-Polyglycolic Acid Copolymer; Sexual Dysfunction, Physiological; Surface Properties; Temperature; Vagina | 2010 |