4.7 Review

Design of Tailor-Made Biopolymer-Based Capsules for Biological Application by Combining Porous Particles and Polysaccharide Assembly

Journal

PHARMACEUTICS
Volume 15, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/pharmaceutics15061718

Keywords

polysaccharide; porous particles; polyelectrolyte capsules; drug delivery systems; biological application

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This review focuses on the design and application of polysaccharide-based capsules, which can be used as a versatile platform for drug delivery purposes. By utilizing porous particles as a template and using the layer-by-layer technique, biopolyelectrolyte capsules can be fabricated. The major steps of capsule design, including fabrication, coating, removal of the template, characterization, and application in the biomedical field are discussed.
Various approaches have been described in the literature to demonstrate the possibility of designing biopolymer particles with well-defined characteristics, such as size, chemical composition or mechanical properties. From a biological point of view, the properties of particle have been related to their biodistribution and bioavailability. Among the reported core-shell nanoparticles, biopolymer-based capsules can be used as a versatile platform for drug delivery purposes. Among the known biopolymers, the present review focuses on polysaccharide-based capsules. We only report on biopolyelectrolyte capsules fabricated by combining porous particles as a template and using the layer-by-layer technique. The review focuses on the major steps of the capsule design, i.e., the fabrication and subsequent use of the sacrificial porous template, multilayer coating with polysaccharides, the removal of the porous template to obtain the capsules, capsule characterisation and the application of capsules in the biomedical field. In the last part, selected examples are presented to evidence the major benefits of using polysaccharide-based capsules for biological purposes.

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