4.4 Article

Development of olmesartan medoxomil optimized nanosuspension using the Box-Behnken design to improve oral bioavailability

期刊

DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY
卷 43, 期 7, 页码 1186-1196

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/03639045.2017.1304955

关键词

Olmesartan medoxomil; the Box-Behnken design; high pressure homogenization; lyophilization; pharmacokinetics; oral bioavailability

资金

  1. AICTE, New Delhi, India

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The aim of the present investigation was to enhance the oral bioavailability of olmesartan medoxomil by improving its solubility and dissolution rate by preparing nanosuspension (OM-NS), using the Box-Behnken design. In this, four factors were evaluated at three levels. Independent variables include: concentration of drug (X-1), concentration of surfactant (X-2), concentration of polymer (X-3) and number of homogenization cycles (X-4). Based on preliminary studies, the size (Y-1), zeta potential (ZP) (Y-2) and % drug release at 5min (Y-3) were chosen as dependent responses. OM-NS was prepared by high pressure homogenization method. The size, PDI, ZP, assay, in vitro release and morphology of OM-NS were characterized. Further, the pharmacokinetic (PK) behavior of OM-NS was evaluated in male wistar rats. Statistically optimized OM-NS formulation exhibited mean particle size of 492nm, ZP of -27.9mV and 99.29% release in 5min. OM-NS showed more than four times increase in its solubility than pure OM. DSC and XRD analyses indicated that the drug incorporated into OM-NS was in amorphous form. The morphology of OM-NS was found to be nearly spherical with high dispersity by scanning electron microscopic studies. The PK results showed that OM lyophilized nanosuspension (NS) exhibited improved PK properties compared to coarse powder suspension and marketed tablet powder suspension (TS). Oral bioavailability of lyophilized NS was increased by 2.45 and 2.25 folds when compared to marketed TS and coarse powder suspension, respectively. Results of this study lead to conclusion that NS approach was effective in preparing OM formulations with enhanced dissolution and improved oral bioavailability.

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