Ferritin variants: inspirations for rationally designing protein nanocarriers
Ferritin, a natural iron storage protein, is endowed with a unique structure, the ability to self-assemble and excellent physicochemical properties. Beyond these, genetic manipulation can easily tune the structure and functions of ferritin nanocages, which further expands the biomedical applications...
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Veröffentlicht in: | Nanoscale 2019-07, Vol.11 (26), p.12449-12459 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Ferritin, a natural iron storage protein, is endowed with a unique structure, the ability to self-assemble and excellent physicochemical properties. Beyond these, genetic manipulation can easily tune the structure and functions of ferritin nanocages, which further expands the biomedical applications of ferritin. Here, we focus on human H-ferritin, a recently discovered ligand of transferrin receptor 1, to review its derived variants and related structures and properties. We hope this review will provide new insights into how to rationally design versatile protein cage nanocarriers for effective disease treatment.
Ferritin is endowed with a unique structure and the ability to self-assemble. Besides, genetic manipulation can easily tune the structure and functions of ferritin nanocages, which further expands the biomedical applications of ferritin. |
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ISSN: | 2040-3364 2040-3372 |
DOI: | 10.1039/c9nr03823j |