• Title of article

    Preparation of basil seed mucilage aerogels loaded with paclitaxel nanoparticles by the combination of phase inversion technique and gas antisolvent process

  • Author/Authors

    Ghoreishi ، Mohammad - Isfahan University of Technology , Akbari ، Iman - Isfahan University of Technology , Hedayati ، Ali - Isfahan University of Technology

  • Pages
    10
  • From page
    179
  • To page
    188
  • Abstract
    Objective(S): In this work, paclitaxel (PX), a promising anticancer drug, was loaded in the basil seed mucilage (BSM) aerogels by implementation of supercritical carbon dioxide (SCCO2) technology. Then, the effects of operating conditions were studied on the PX mean particle size (MPS), particle size distribution (PSD) and drug loading efficiency (DLE). Methods: The employed SCCO2 process in this research is the combination of phase inversion technique and gas antisolvent (GAS) process. The effect of DMSO/water ratio (4 and 6 (v/v)), pressure (1020 MPa), CO2 addition rate (1–3 mL/min) and ethanol concentration (510%) were studied on MPS, PSD and DLE. Scanning electron microscopy (SEM) and Zetasizer were used for particle analysis. DLE was investigated by utilizing the highperformance liquid chromatography (HPLC). Results: Nanoparticles of paclitaxel (MPS of 82–131 nm depending on process variables) with narrow PSD were successfully loaded in BSM aerogel with DLE of 28–52%. Experimental results indicated that higher DMSO/water ratio, ethanol concentration, pressure and CO2 addition rate reduced MPS and DLE. Conclusions: A modified semi batch SCCO2 process based on the combination of gas antisolvent process and phase inversion methods using DMSO as cosolvent and ethanol as a secondary solvent was developed for the loading of an anticancer drug, PX, in ocimum basilicum mucilage aerogel. The experimental results determined that the mean particle size, particle size distribution, and drug loading efficiency be controlled with operating conditions.
  • Keywords
    Aerogels , Basil seed mucilage (BSM) , Paclitaxel , Gas antisolvent process (GAS) , Supercritical drying
  • Journal title
    Nanomedicine Research Journal
  • Serial Year
    2017
  • Journal title
    Nanomedicine Research Journal
  • Record number

    2478666