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Department of Industrial Pharmacy

Researches

The department research plan participates in solving problems that face the pharmaceutical industry in the vicinity of Asyut City and others. Staff members are also supervising and teaching post-graduate students, Diploma, MSc. and Ph.D. students, and the proposed advanced and novel specializations in pharmaceutical sciences for the next 5 years plan listed below:

  1. Targeted drug delivery using Micro-/Nan particulate technologies (Polymeric particles, micro-emulsions, liposomes, etc.)
  2. Enhancing peptide and protein drug delivery via the oral and pulmonary routes.
  3. Controlled release formulation of drugs.
  4. Enhancing drug dissolution and bioavailability.
  5. Gastro-retentive technology.
  6. Transdermal drug delivery.
# Title Research Year
71 Mixed liposome approach for ratiometric and sequential delivery of paclitaxel and gemcitabine 2018
72 Novel Targeted Lipid Nanoparticles Loaded with Synergistic Chemotherapy- Gene therapy Combination for Effective Treatment of Hepatocellular Carcinoma 2018
73 High-Shear Granulation Process: Influence of Processing Parameters on Critical Quality Attributes of Acetaminophen Granules and Tablets Using Design of Experiment Approach 2017
74 High-Shear Granulation Process: Influence of Processing Parameters on Critical Quality Attributes of Acetaminophen Granules and Tablets Using Design of Experiment Approach 2017
75 Spray freeze drying as an alternative technique for lyophilization of polymeric and lipid-based nanoparticles 2017
76 High-Shear Granulation Process: Influence of Processing Parameters on Critical Quality Attributes of Acetaminophen Granules and Tablets Using Design of Experiment Approach 2017
77 Adsorption and co-adsorption; promising approaches for enhancement of glibenclamide dissolution 2017
78 High Shear Granulation Process: Assessing Impact of Formulation Variables on Granules and Tablets Characteristics of High Drug Loading Formulation Using Design of Experiment Methodology 2017
79 Solid dispersion technology, a contemporary overview on a well established technique 2017
80 Adsorption and co-adsorption; promising approaches for enhancement of glibenclamide dissolution 2017