The tasks of achieving efficient delivery of drugs that have poor bioavailability or narrow absorption window have plagued the pharmaceutical research scientists for decades. Thus, much research has been dedicated to the development of novel polymeric based gastroretentive drug delivery systems that may optimize the bioavailability and subsequent therapeutic efficacy of such drugs. An effective approach of achieving this is through the prolongation of the gastric residence time employing several gastroretentive drug delivery mechanisms. Of these various approaches tried, gastric floating drug delivery systems have lower bulk density than gastric fluids and therefore remain buoyant on the stomach contents. These systems are generally not affected by the gastric emptying rate. They are gaining importance due to improvement in the bioavailability and their convenience of large scale manufacture because many of these dosage forms are tablets.
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Dr. Venkata Srikanth Meka is a lecturer in Pharmaceutical Technology, School of Pharmacy in International Medical University (IMU), Malaysia. Prior to returning to IMU, Srikanth was a research associate at Unichem Laboratories, Goa, India. He completed his doctor of philosophy (Ph.D) from Andhra University, Visakhapatnam, India.
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Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The tasks of achieving efficient delivery of drugs that have poor bioavailability or narrow absorption window have plagued the pharmaceutical research scientists for decades. Thus, much research has been dedicated to the development of novel polymeric based gastroretentive drug delivery systems that may optimize the bioavailability and subsequent therapeutic efficacy of such drugs. An effective approach of achieving this is through the prolongation of the gastric residence time employing several gastroretentive drug delivery mechanisms. Of these various approaches tried, gastric floating drug delivery systems have lower bulk density than gastric fluids and therefore remain buoyant on the stomach contents. These systems are generally not affected by the gastric emptying rate. They are gaining importance due to improvement in the bioavailability and their convenience of large scale manufacture because many of these dosage forms are tablets. 116 pp. Englisch. Codice articolo 9783659271229
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Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The tasks of achieving efficient delivery of drugs that have poor bioavailability or narrow absorption window have plagued the pharmaceutical research scientists for decades. Thus, much research has been dedicated to the development of novel polymeric based gastroretentive drug delivery systems that may optimize the bioavailability and subsequent therapeutic efficacy of such drugs. An effective approach of achieving this is through the prolongation of the gastric residence time employing several gastroretentive drug delivery mechanisms. Of these various approaches tried, gastric floating drug delivery systems have lower bulk density than gastric fluids and therefore remain buoyant on the stomach contents. These systems are generally not affected by the gastric emptying rate. They are gaining importance due to improvement in the bioavailability and their convenience of large scale manufacture because many of these dosage forms are tablets. Codice articolo 9783659271229
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Kartoniert / Broschiert. Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Meka Venkata SrikanthDr. Venkata Srikanth Meka is a lecturer in Pharmaceutical Technology, School of Pharmacy in International Medical University (IMU), Malaysia. Prior to returning to IMU, Srikanth was a research associate at Uniche. Codice articolo 5144675
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Paperback. Condizione: Fine. Design and Evaluation of Gastric Floating Drug Delivery Systems by Meka Venkata Srikanth. Published by Lap Lambert Academic Publishing in 2012. Paperback. ISBN:9783659271229. Collectible item in very fine condition. Codice articolo 3659271229
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