A novel preparation method for organogels: high-speed homogenization and micro-irradiation.

AAPS PharmSciTech

Faculty of Pharmacy, Department of Pharmaceutical Technology, Ege University, 35100, Bornova, Izmir, Turkey.

Published: March 2013

AI Article Synopsis

  • The study developed organogels using Carbopol 974P NF in PEG 400 through high-speed homogenization and microwave heating, with Triclosan as a test drug.
  • The optimal gel matrices were achieved at 3% and 4% concentrations of Carbopol, which enhanced the elastic properties and exhibited shear-thinning behavior.
  • Microwave heating was found to effectively maintain the microbiological activity of Triclosan while significantly reducing preparation time and energy, making this technique potentially beneficial for industrial applications.

Article Abstract

The aim of this work was to prepare organogels of Carbopol 974P NF (C974) in PEG 400 by using a novel technique, high-speed homogenization followed by microwave heating. Triclosan (TCS) was used as a model drug. C974, at concentrations ranging between 2% and 4%, was dispersed in 25 ml of PEG 400, and the dispersion was homogenised for 5 min at 24,000 rpm. The dispersion was either heated at 80°C in water bath under mechanic stirring at 200 rpm or exposed to micro-irradiation (1,200 W/1 h) for 2 min. The formulations prepared with both methods performed a well-structured gel matrix characteristic at 3% and 4% of C974 concentrations. As the concentrations of the polymer increased, the elastic properties also increased. The viscosity profiles indicated a shear-thinning system. DSC data revealed that TCS was dissolved in gel. Skin accumulation ability of TCS had been improved by these novel organogels regardless of the preparation method. TCS was still microbiologically effective after the microwave process was applied. It was determined that microwave heating is a suitable method to obtain C974 organogels. This novel production technique developed might be promising especially in industrial scale when the dramatic reduction in the preparation time and energy were considered.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581656PMC
http://dx.doi.org/10.1208/s12249-013-9922-8DOI Listing

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