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Design and studies of some new controlled-release formulations
Details
Controlled drug delivery technology represents one of the most rapidly advancing areas of pharmaceutical science. The applications of controlled drug delivery applications include both sustained (over days/weeks/moths/years) delivery and targeted (e.g. to a tumor, diseased and blood vessel) delivery on a one-time or sustained basis. Polymer-based drug delivery systems are used to optimize the therapeutic properties of drugs and render them safer, effective and reliable. Such delivery systems offer numerous advantages compared to conventional dosages forms which include improved efficacy, reduced toxicity, and improved patient compliance and convenience. Generally, all controlled release systems aim to improve the effectiveness of drug therapy. This improvement can increase the therapeutic activity compared to the side effects, reducing the number of drug administrations required during treatment. Moreover, the attached drugs can be targeted to specific organs, tissues or cells. On the other hand, polymeric drugs and macromolecules used as drug carriers can be easily synthesized at low cost, freely water-soluble,non-toxic and non-immunogenic.
Autorentext
The author is an Assistant Professor at Chemistry Department, Faculty of Science, Tanta University, Tanta, Egypt, since February 27, 2005 till now. He was a Postdoctoral at Yamagata University, Japan, (2008-2009), and ICS-UNIDO Fellow, Pisa University, Italy (2008). He was a research scholar at Virgina Commonwealth University , VA, USA (2002-2004).
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783659144998
- Sprache Englisch
- Auflage Aufl.
- Genre Chemie
- Größe H220mm x B220mm
- Jahr 2012
- EAN 9783659144998
- Format Kartonierter Einband (Kt)
- ISBN 978-3-659-14499-8
- Titel Design and studies of some new controlled-release formulations
- Autor Mohamed El-Newehy , Fouad Abdel-Hay , El-Refaie Kenawy
- Untertitel Design of Some New Controlled-Release Formulations
- Herausgeber LAP Lambert Academic Publishing
- Anzahl Seiten 244