: Ferritin (Ft) is a protein with a peculiar three-dimensional architecture. It is characterized by a hollow cage structure and is responsible for iron storage and detoxification in almost all living organisms. It has attracted the interest of the scientific community thanks to its appealing features, such as its nano size, thermal and pH stability, ease of functionalization, and low cost for large-scale production. Together with high storage capacity, these properties qualify Ft as a promising nanocarrier for the development of delivery systems for numerous types of biologically active molecules. In this paper, we introduce the basic structural and functional aspects of the protein, and summarize the methods employed to load bioactive molecules within the ferritin nanocage.

Bioactive Molecules Delivery through Ferritin Nanoparticles: Sum Up of Current Loading Methods / Lucignano, Rosanna; Ferraro, Giarita. - In: MOLECULES. - ISSN 1420-3049. - 29:17(2024). [10.3390/molecules29174045]

Bioactive Molecules Delivery through Ferritin Nanoparticles: Sum Up of Current Loading Methods

Lucignano, Rosanna
Primo
;
Ferraro, Giarita
Ultimo
2024

Abstract

: Ferritin (Ft) is a protein with a peculiar three-dimensional architecture. It is characterized by a hollow cage structure and is responsible for iron storage and detoxification in almost all living organisms. It has attracted the interest of the scientific community thanks to its appealing features, such as its nano size, thermal and pH stability, ease of functionalization, and low cost for large-scale production. Together with high storage capacity, these properties qualify Ft as a promising nanocarrier for the development of delivery systems for numerous types of biologically active molecules. In this paper, we introduce the basic structural and functional aspects of the protein, and summarize the methods employed to load bioactive molecules within the ferritin nanocage.
2024
Bioactive Molecules Delivery through Ferritin Nanoparticles: Sum Up of Current Loading Methods / Lucignano, Rosanna; Ferraro, Giarita. - In: MOLECULES. - ISSN 1420-3049. - 29:17(2024). [10.3390/molecules29174045]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/974126
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