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Department of Pharmaceutics

Research

Our research plan for the next 5 years (2019-2023):

Main research activities

Several active research groups in the department are engaged with different aspects of pharmaceutics. The research is directed towards high quality innovative topics aiming to publish applied articles.

The research plan in the period from 2019 till 2023 is still focusing on three distinct areas:

  1. Nanotechnology as a promising area of pharmaceutical science is a target for formulation of many drugs.
  2. Preformulation studies to improve the characteristics of drugs and/or dosage forms and development of more acceptable dosage forms.
  3. Targeted drug delivery systems

 

 

# Title Research Year
511 17. Excellent absorption enhancing characteristics of No Donors for improving the intestinal absorption of poorly absorbable compound compared with conventional absorption enhancers. 2006
512 High density of octaarginine stimulates macropinocytosis leading to efficient intracellular trafficking for gene expression. 2006
513 17. Excellent absorption enhancing characteristics of No Donors for improving the intestinal absorption of poorly absorbable compound compared with conventional absorption enhancers. 2006
514 Uptake pathways and subsequent intracellular trafficking in nonviral gene delivery. 2006
515 18. Colon-Specific delivery and enhanced colonic absorption of [Asu1,7]-eel calcitonin using chitosan capsules containing various additives. 2006
516 Cellular uptake and subsequent intracellular trafficking of R8-liposomes introduced at low temperature. 2006
517 Enhancement of the dissolution and permeation rates of meloxicam by formation of its freeze-dried solid dispersions in polyvinylpyrrolidone K-30. 2006
518 18. Colon-Specific delivery and enhanced colonic absorption of [Asu1,7]-eel calcitonin using chitosan capsules containing various additives. 2006
519 Positively charged polyethylenimines enhance nasal absorption of the negatively charged drug, low molecular weight heparin. 2006
520 Enhancement of the dissolution and permeation rates of meloxicam by formation of its freeze-dried solid dispersions in polyvinylpyrrolidone K-30. 2006