The 2-5 nm Fe(III) oxo-hydroxide core of ferritin is less ordered and readily bioavailable compared to its pure synthetic analogue, ferrihydrite. We report the facile synthesis of tartrate-modified, nano-disperse ferrihydrite of small primary particle size, but with enlarged or strained lattice structure (~ 2.7 Å for the main Bragg peak versus 2.6 Å for synthetic ferrihydrite). Analysis indicated that co-precipitation conditions can be achieved for tartrate inclusion into the developing ferrihydrite particles, retarding both growth and crystallization and favoring stabilization of the cross-linked polymeric structure. In murine models, gastrointestinal uptake was independent of luminal Fe(III) reduction to Fe(II) and, yet, absorption was equivalent to that of ferrous sulphate, efficiently correcting the induced anemia. This process may model dietary Fe(III) absorption and potentially provide a side effect-free form of cheap supplemental iron. From the Clinical Editor Small size tartrate-modified, nano-disperse ferrihydrite was used for efficient gastrointestinal delivery of soluble Fe(III) without the risk for free radical generation in murine models. This method may provide a potentially side effect-free form iron supplementation.
A nano-disperse ferritin-core mimetic that efficiently corrects anemia without luminal iron redox activity
J. Powell,S. Bruggraber,N. Faria,Lynsey K. Poots,N. Hondow,T. Pennycook,G. Latunde-Dada,R. Simpson,Andy P. Brown,Dora I A Pereira
Published 2014 in Nanomedicine : nanotechnology, biology, and medicine
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- Publication year
2014
- Venue
Nanomedicine : nanotechnology, biology, and medicine
- Publication date
2014-10-01
- Fields of study
Medicine, Materials Science
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- Source metadata
Semantic Scholar, PubMed
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