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Pharm Dev Technol ; 25(7): 845-854, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32174213

ABSTRACT

Pioglitazone (PGZ) is an oral antidiabetic agent that increases cell resistance to insulin, thereby decreasing blood glucose levels. PGZ is a class II drug. Because of its pH-dependent solubility, it precipitates at the intestinal pH, resulting in an erratic and incomplete absorption following oral administration, which causes fluctuations in its plasma concentration. A nanoparticle drug delivery system offers a solution to enhance the dissolution rate of this poorly water-soluble drug. PGZ nanoparticles were formulated by the wet milling technique using a planetary ball mill. The effects of the steric stabilizer (Pluronic F-127, PL F-127), electrostatic stabilizer (sodium deoxycholate, SDC), and number of milling cycles were optimized using a Box-Behnken factorial design. The results showed that the ratio of PL F-127: SDC significantly affected the zeta potential and the dissolution efficiency (DE%) of PGZ. The optimized PGZ nanoparticle formulation enhanced the dissolution to reach 100% after 5 min. The in-vivo results showed significant enhancement in Cmax (1.3-fold) compared to that of the raw powder, and both AUC0-24 and AUC0-∞ were significantly (p < 0.05) enhanced. In conclusion, PGZ nanoparticle formulation had enhanced dissolution rate in the alkaline media, which improved its drug bioavailability relative to that of the untreated drug.


Subject(s)
Chemistry, Pharmaceutical/methods , Hypoglycemic Agents/chemical synthesis , Nanoparticles/chemistry , Pioglitazone/chemical synthesis , Animals , Drug Evaluation, Preclinical/methods , Drug Stability , Hypoglycemic Agents/pharmacokinetics , Male , Nanoparticles/metabolism , Pioglitazone/pharmacokinetics , Random Allocation , Rats , Rats, Wistar , X-Ray Diffraction/methods
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