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Chitosan Nanoparticles at the Biological Interface: Implications for Drug Delivery

期刊

PHARMACEUTICS
卷 13, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13101686

关键词

chitosan nanoparticles; biological; cellular uptake; intracellular; biodistribution

资金

  1. NMIN (NanoMedicines Innovation Network), a member of the Networks of Centres of Excellence Canada program [2019-T1-09]

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Chitosan, with its unique properties, is a valuable choice for nanoparticulate drug delivery applications, but its interactions at cellular and systemic levels require further study. The positive charge of chitosan allows for efficient attachment to cells, enhancing cellular uptake.
The unique properties of chitosan make it a useful choice for various nanoparticulate drug delivery applications. Although chitosan is biocompatible and enables cellular uptake, its interactions at cellular and systemic levels need to be studied in more depth. This review focuses on the various physical and chemical properties of chitosan that affect its performance in biological systems. We aim to analyze recent research studying interactions of chitosan nanoparticles (NPs) upon their cellular uptake and their journey through the various compartments of the cell. The positive charge of chitosan enables it to efficiently attach to cells, increasing the probability of cellular uptake. Chitosan NPs are taken up by cells via different pathways and escape endosomal degradation due to the proton sponge effect. Furthermore, we have reviewed the interaction of chitosan NPs upon in vivo administration. Chitosan NPs are immediately surrounded by a serum protein corona in systemic circulation upon intravenous administration, and their biodistribution is mainly to the liver and spleen indicating RES uptake. However, the evasion of RES system as well as the targeting ability and bioavailability of chitosan NPs can be improved by utilizing specific routes of administration and covalent modifications of surface properties. Ongoing clinical trials of chitosan formulations for therapeutic applications are paving the way for the introduction of chitosan into the pharmaceutical market and for their toxicological evaluation. Chitosan provides specific biophysical properties for effective and tunable cellular uptake and systemic delivery for a wide range of applications.

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