Efavirenz (EFZ) is one of the most used drugs in the treatment of AIDS and is the first antiretroviral choice. However, since it has low solubility, it does not exhibit suitable bioavailability, which interferes with its therapeutic action and is classified as a class II drug according Biopharmaceutical Classification System (low solubility and high permeability). Among several drug delivery systems, the multicomponent systems with cyclodextrins and hydrophilic polymers are a promising alternative for increasing the aqueous solubility of the drug. The present study aimed to develop and characterize in a ternary system of EFZ, MβCD and PVP K30. The results showed that the solid ternary system provided a large increase in the dissolution rate which was greater than 80% and was characterized by DSC, TG, XRD, FT-IR and SEM. The use of the ternary system (EFZ, MβCD and PVP K30 1%) proved to be a viable, effective and safe delivery of the drug. The addition of the hydrophilic polymer appeared to be suitable for the development of a solid oral pharmaceutical product, with possible industrial scale-up and with low concentration of CDs (cyclodextrins).
Background:Efavirenz is the most used medication in the treatment of Acquired Immunodeficiency Syndrome
(AIDS). The limited number of pediatric antiretroviral formulations approved by regulatory agencies is the most significant
obstacle to adequate and efficient pharmacotherapy for this group of patients. The efavirenz has excellent therapeutic potential, but has low aqueous solubility/bioavailability.Methods: To minimize these limitations, multicomponent systems with β-cyclodextrin and polyvinylpyrrolidone K-30 were
obtained. Due to the limited number of pediatric antiretroviral formulations, the development of a pediatric orodispersible
tablet is an alternative seen as easy to administer, since it disintegrates rapidly in the oral cavity. The multicomponent systems were obtained by the method of kneading and characterized by solubility test, X-ray diffraction, differential scanning
calorimetry and infrared absorption spectroscopy by Fourier transform. The orodispersible tablets were prepared by direct
compression. The quality control of hardness, friability, disintegration, and dissolution were performed. The influence of the
components of the formulation on the characteristics of the tablets was evaluated through a 22
factorial design added with
three central points, to compare the effect of the dependent variables on the responses.Results:An increase in drug solubility was observed, with a decrease in crystallinity. Besides that, presented an excellent
dissolution profile, with more than 83% of the drug's content dissolved in less than 15 minutes. Presented satisfactory disintegration time and friability.Conclusion: It was observed that reduced concentrations of mannitol decrease the hardness and disintegration time of the
formulations. The orodispersible tablet composed of efavirenz: β-cyclodextrin: polyvinylpyrrolidone, favors greater absorption and bioavailability. It has several advantages for pediatric patients, as the dosage form disintegrates quickly in the
mouth and does not require water for administration, and which improves patient compliance with treatment.
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