Article ID Journal Published Year Pages File Type
2503536 International Journal of Pharmaceutics 2011 7 Pages PDF
Abstract

This work reports the fabrication of layer-by-layer (LbL) microcapsules that provide a simple mean for controlling the burst and subsequent release of bioactive agents. Red blood cell (RBC) ghosts were loaded with fluorescently labeled dextran and lysozyme as model compounds via hypotonic dialysis with an encapsulation efficiency of 27–31%. It is demonstrated that these vesicles maintain their shape and integrity and that a uniform distribution of the encapsulated agents within these carriers is achieved. The loaded vesicles were then successfully coated with the biocompatible polyelectrolytes, poly-l-arginine hydrochloride and dextran sulfate. It is demonstrated that the release profiles of the encapsulated molecules can be regulated over a wide range by adjusting the number of polyelectrolyte layers. In addition, the LbL shell also protects the RBC ghost from decomposition thereby potentially preserving the bioactivity of encapsulated drugs or proteins. These microcapsules, consisting of an RBC ghost coated with a polyelectrolyte multilayer, provide a simple mean for the preparation of loaded LbL microcapsules eliminating the core dissolution and post-loading of bioactive agents, which are required for conventional LbL microcapsules.

Graphical abstractLayer-by-layer (LbL) microcapsules based on red blood cell ghosts provide a simple mean for the preparation of loaded microcapsules. The LbL shell protects the capsules from decomposition and allows adjusting the release profiles of the encapsulated molecules.Figure optionsDownload full-size imageDownload as PowerPoint slide

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Health Sciences Pharmacology, Toxicology and Pharmaceutical Science Pharmaceutical Science
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