Skip to main content
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
1 Exploration of the safety and solubilization, dissolution, analgesic effects of common basic excipients on the NSAID drug ketoprofen 2023
2 LIPID NANOPARTICLES TECHNOLOGY IN VACCINES; SHAPING THE FUTURE OF PROPHYLACTIC MEDICINE 2023
3 Silver nanoparticles coated with polymers: synthesis, characterization and loading with rousvastatin calcium 2023
4 Impact of the functional coating of silver nanoparticles on their in vivo performance and biosafety 2023
5 Captopril Polyvinyl Alcohol/Sodium Alginate/Gelatin-Based Oral Dispersible Films (ODFs) with Modified Release and Advanced Oral Bioavailability for the Treatment of Pediatric Hypertension 2023
6 Chitosan-capped silver nanoparticles with potent and selective intrinsic activity against the breast cancer cells 2023
7 Synthesis and characterization of magnetic Ag–Fe3O4@polymer hybrid nanocomposite systems with promising antibacterial application 2023
8 Non-coding RNA-directed therapeutics in lung cancer: Delivery technologies and clinical applications 2023
9 Design-of-experiment approach to quantify the effect of nano-sized silica on tableting properties of microcrystalline cellulose to facilitate direct compression tableting of binary blend containing a low-dose drug 2022
10 Design and optimization of PEGylated silver nanoparticles for efficient delivery of Doxorubicin to cancer cells 2022