OceanRep
Adjustment of triple shellac coating for precise release of bioactive substances with different physico-chemical properties in the ileocolonic region.
Theismann, Eva-Maria, Keppler, Julia Katharina, Knipp, Jörg-Rainer, Fangmann, Daniela, Appel, Esther, Gorb, Stanislav, Waetzig, Georg H., Schreiber, Stefan, Laudes, Matthias and Schwarz, Karin (2019) Adjustment of triple shellac coating for precise release of bioactive substances with different physico-chemical properties in the ileocolonic region. International Journal of Pharmaceutics, 564 . pp. 472-484. DOI 10.1016/j.ijpharm.2019.04.039.
Full text not available from this repository.Abstract
Formulations for the controlled release of substances in the human terminal ileum and colon are essential to target the gut microbiome and its interactions with the intestinal mucosa. In contrast to pharmaceutical enteric coatings, reliable food-grade alternatives are still scarce. Shellac coatings have been used for various active ingredients, but their stability is affected by the physicochemical properties of the encapsulated substances. It is well known, that shellac release can be modulated by an acidic subcoating. Here, we hypothesized that a triple shellac coating with an adjusted intermediate coating (acidic or alkaline) can be effectively used to counteract the differences in pH value of various encapsulated substances, allowing a precise targeting of the desired release pH value. First, the system was tested with riboflavin 5′-monophosphate sodium salt dihydrate (RMSD) as a characteristic model substance. Secondly, it was transferred to nicotinic acid (NA) and nicotinamide (NAM) as bioactive compounds with different physio-chemical properties: NAM, an alkaline crystalline and highly water-soluble substance, led to a premature release from conventional shellac microcapsules, whereas RMSD and NA with their medium solubility and neutral to acidic pH properties delayed the shellac dissolution. A precise modulation of the release profile of each substance was possible by the addition of different intermediate subcoatings: an acidic layer with citric acid counteracted the premature release of the alkaline and highly soluble NAM. In contrast, an alkaline sodium bicarbonate intermediate subcoating enhanced shellac swelling and delayed the release of NA and RMSD. In conclusion, the novel triple-layer shellac coating provides a much higher adaptability and reliability for nutritional formulations aiming at a targeted release in the ileocolonic region.
Document Type: | Article |
---|---|
Keywords: | Enteric Coating, Fluidized-bed, Shellac, Subcoat, Targeted release, Colon |
Research affiliation: | Kiel University > Kiel Marine Science OceanRep > The Future Ocean - Cluster of Excellence Kiel University |
Refereed: | Yes |
Open Access Journal?: | No |
Publisher: | Elsevier |
Date Deposited: | 07 Aug 2019 10:05 |
Last Modified: | 02 Jan 2020 12:16 |
URI: | https://oceanrep.geomar.de/id/eprint/47405 |
Actions (login required)
![]() |
View Item |
![](/images/clear.gif)
Copyright 2023 | GEOMAR Helmholtz-Zentrum für Ozeanforschung Kiel | All rights reserved
Questions, comments and suggestions regarding the GEOMAR repository are welcomed
at bibliotheksleitung@geomar.de !