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Gastric retentive delivery system

Future Potential for Gastric Retentive Delivery Systems 195... [Pg.173]

Physiological Rationale for Gastric Retentive Delivery System Design GI Motility... [Pg.175]

In summary, the advantages of our approach to studying gastric retention are twofold. First, hydrogel response to the gastric environment can be noninvasively visualized in real-time. Second, a more efficient and justifiable approach to the development of long-term oral drug delivery systems can be achieved. [Pg.247]

Hwang, S.J., Park, H., and Park, K., Gastric retentive drug-delivery systems, Crit. Rev. Ther. Drug Carr. Syst., 15 243-284 (1998). [Pg.191]

Singh, B.N., and K.H. Kim. 2000. Floating drug delivery systems an approach to oral controlled drug delivery via gastric retention. J Control Release 63 235. [Pg.81]

Soppimath, K.S. 2001. Microspheres as floating drug-delivery systems to increase gastric retention of drugs. Drug Metab Rev 33 149. [Pg.81]

This chapter discusses the GI physiology that defines the limits of gastric retentive technology and a more detailed analysis of the different approaches to design gastric retentive drug delivery systems. [Pg.175]

Hwang S-J, Park H, Park K. Gastric retentive drug delivery systems. Grit Rev Ther Drug Carrier Syst 1998 15 243—284. [Pg.211]

The literature on floating drug delivery systems with special focus on the principal mechanism of floatation to achieve gastric retention... [Pg.223]


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