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Novel multi-layer APPPA microcapsules for oral delivery: preparation condition, stability and permeability.
Indian J Biochem Biophys ; 2009 Dec; 46(6): 491-497
Article Dans Anglais | IMSEAR | ID: sea-135232
ABSTRACT
Oral therapy utilizing cell microencapsulation has shown promise in the treatment of many diseases. Current obtainable microcapsule membranes, however, show inadequate stability in the gastrointestinal (GI) environment, thus restricting the general application of live cells for oral therapy. To overcome this limitation, we have previously developed a novel multi-layer alginate/poly-L-lysine/pectin/poly-L-lysine/alginate microcapsule (APPPA) with demonstrated improvement on membrane stability over the frequently reported alginate/poly-L-lysine/alginate (APA) microcapsules. In this study, we further examined the effects of preparation conditions on microcapsule formation, and assessed the membrane strength and GI stability. Results showed that increased membrane strength of the APPPA microcapsules was attained by using pectin with low degree of esterification as the mid-layer material, saline as the solvent for the preparation solutions and washing medium, and 0.1 M CaCl2 as the gelling solution for alginate cores. Resistance of this membrane to the simulated GI fluids was also investigated. Permeability of and release profiles from the APPPA microcapsules were found comparable to the APA microcapsules. These findings suggested that the multi-layer APPPA microcapsule formulation may have potential in oral delivery of proteins, live bacterial cells and other biomedical applications.
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Texte intégral: Disponible Indice: IMSEAR (Asie du Sud-Est) Sujet Principal: Sodium / Chlorure de calcium / Bovins / Capsules / Chlorure de sodium / Perméabilité des membranes cellulaires / Administration par voie orale / Pectine / Tube digestif / Préparation de médicament langue: Anglais Texte intégral: Indian J Biochem Biophys Année: 2009 Type: Article

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Texte intégral: Disponible Indice: IMSEAR (Asie du Sud-Est) Sujet Principal: Sodium / Chlorure de calcium / Bovins / Capsules / Chlorure de sodium / Perméabilité des membranes cellulaires / Administration par voie orale / Pectine / Tube digestif / Préparation de médicament langue: Anglais Texte intégral: Indian J Biochem Biophys Année: 2009 Type: Article